WO2020045069A1 - パーティション - Google Patents
パーティション Download PDFInfo
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- WO2020045069A1 WO2020045069A1 PCT/JP2019/031732 JP2019031732W WO2020045069A1 WO 2020045069 A1 WO2020045069 A1 WO 2020045069A1 JP 2019031732 W JP2019031732 W JP 2019031732W WO 2020045069 A1 WO2020045069 A1 WO 2020045069A1
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- WIPO (PCT)
- Prior art keywords
- partition
- unit
- air
- space
- state
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F1/00—Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
- F24F1/02—Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
- F24F1/03—Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by mounting arrangements
- F24F1/0314—Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by mounting arrangements mounted on a wall
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F1/00—Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
- F24F1/02—Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
- F24F1/03—Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing characterised by mounting arrangements
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04B—GENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
- E04B2/00—Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
- E04B2/74—Removable non-load-bearing partitions; Partitions with a free upper edge
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04B—GENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
- E04B2/00—Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
- E04B2/74—Removable non-load-bearing partitions; Partitions with a free upper edge
- E04B2/7401—Removable non-load-bearing partitions; Partitions with a free upper edge assembled using panels without a frame or supporting posts, with or without upper or lower edge locating rails
- E04B2/7405—Removable non-load-bearing partitions; Partitions with a free upper edge assembled using panels without a frame or supporting posts, with or without upper or lower edge locating rails with free upper edge, e.g. for use as office space dividers
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24D—DOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
- F24D3/00—Hot-water central heating systems
- F24D3/18—Hot-water central heating systems using heat pumps
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/50—Control or safety arrangements characterised by user interfaces or communication
- F24F11/56—Remote control
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/50—Control or safety arrangements characterised by user interfaces or communication
- F24F11/56—Remote control
- F24F11/58—Remote control using Internet communication
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/62—Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
- F24F11/63—Electronic processing
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/70—Control systems characterised by their outputs; Constructional details thereof
- F24F11/72—Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/70—Control systems characterised by their outputs; Constructional details thereof
- F24F11/72—Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
- F24F11/79—Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling the direction of the supplied air
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
- F24F13/02—Ducting arrangements
- F24F13/0218—Flexible soft ducts, e.g. ducts made of permeable textiles
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
- F24F13/02—Ducting arrangements
- F24F13/06—Outlets for directing or distributing air into rooms or spaces, e.g. ceiling air diffuser
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
- F24F13/08—Air-flow control members, e.g. louvres, grilles, flaps or guide plates
- F24F13/10—Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24D—DOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
- F24D2220/00—Components of central heating installations excluding heat sources
- F24D2220/10—Heat storage materials, e.g. phase change materials or static water enclosed in a space
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2120/00—Control inputs relating to users or occupants
- F24F2120/10—Occupancy
- F24F2120/14—Activity of occupants
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2120/00—Control inputs relating to users or occupants
- F24F2120/20—Feedback from users
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2203/00—Devices or apparatus used for air treatment
- F24F2203/10—Rotary wheel
- F24F2203/1048—Geometric details
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2221/00—Details or features not otherwise provided for
- F24F2221/12—Details or features not otherwise provided for transportable
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2221/00—Details or features not otherwise provided for
- F24F2221/17—Details or features not otherwise provided for mounted in a wall
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B30/00—Energy efficient heating, ventilation or air conditioning [HVAC]
- Y02B30/12—Hot water central heating systems using heat pumps
Definitions
- Patent Document 1 Japanese Patent Application Laid-Open No. 2000-83782
- measures such as partitioning the space for use may be taken.
- Patent Document 1 Japanese Patent Laid-Open No. 2000-83782
- the partition according to the first aspect includes a first structure, a variable partition, and an air environment adjusting unit.
- the deformable partition is connected to the first structure.
- the deformable partition has a first end connected to the first structure and a second end distal to the first end.
- the deformable partition deforms so as to partition a predetermined space from an adjacent space.
- the air environment adjustment unit is disposed on at least one of the first structure and the deformable partition.
- the air environment adjustment unit has at least one of a cooling unit that cools air, a heating unit that heats air, and an airflow generation unit that generates an airflow.
- a comfortable space can be easily created for the user who is separated from the surroundings by the partition.
- the partition according to the second aspect is the partition according to the first aspect, and the deformable partition can be changed between a first state and a second state.
- the deformable partition in the first state is accommodated inside the first structure, wound around the outer periphery of the first structure, or folded near the first structure.
- the second state is a state where the maximum value of the area when the deformable partition is viewed in all directions in the horizontal direction is larger than the first state.
- the deformable partition when used, takes the second state, so that a relatively large predetermined space can be partitioned from the adjacent space by the partition.
- the partition when not in use, the partition can be accommodated in a small space by the deformable partition taking the first state.
- the partition according to the third aspect is the partition according to the second aspect, and the deformable partition can take a plurality of second states having different forms.
- the space can be divided into a plurality of different shapes according to needs, which is highly convenient.
- the partition according to the fourth aspect is the partition according to the third aspect, wherein the deformable partition has a first surface and a second surface disposed on the opposite side to the first surface.
- the deformable partition part can take a first form convex on the first surface side and a second form convex on the second surface side as a second state.
- the space can be divided into different shapes according to needs, which is highly convenient.
- the partition according to the fifth aspect is the partition according to the fourth aspect, wherein the air environment adjustment unit includes at least an airflow generation unit.
- the airflow generation unit generates a different airflow depending on whether the deformable partition takes the first mode or the second mode as the second state.
- the partition according to the sixth aspect is any of the partitions according to the second aspect to the fourth aspect, and the air environment adjustment unit includes at least an airflow generation unit that blows air from an air outlet arranged in the first structure. .
- the outlet is located near the first end of the deformable partition.
- the partition according to the seventh aspect is the partition according to the sixth aspect, wherein the outlet blows air along at least a part of the surface of the deformable partition in the second state.
- the deformable partition is also used as an airflow guide, it is possible to accurately adjust the air environment of the space partitioned by the partition.
- the partition according to an eighth aspect is the partition according to any one of the second aspect to the fourth aspect, wherein the air environment adjustment unit includes at least an airflow generation unit that blows air from an air outlet arranged in the deformable partition unit. .
- the partition according to the ninth aspect is the partition according to the eighth aspect, wherein the airflow generation unit further includes a wind direction adjusting mechanism for adjusting a wind direction.
- the partition according to the tenth aspect is any of the partitions according to the second aspect to the ninth aspect, and the first structure has a columnar shape extending in the first direction as the axial direction.
- the first structure When the first structure is installed so that the first direction is the vertical direction, in the second state, the first end and the second end of the deformable partition are at the same height, and It is arranged at a position horizontally separated.
- the first structure When the first structure is installed so that the first direction is horizontal, in the second state, the first end and the second end of the deformable partition are arranged at different heights. You.
- the degree of freedom of the shape of the space partitioned by the partition is high.
- the partition according to the eleventh aspect is any of the partitions according to the first aspect to the tenth aspect, wherein the air environment adjustment unit causes the first fluid to flow inside the deformable partition unit.
- the partition of the twelfth aspect is the partition of the eleventh aspect, wherein the first fluid is air.
- the partition according to the thirteenth aspect is any of the partitions according to the first to tenth aspects, wherein at least one of the cooling unit and the heating unit includes a heat storage material.
- the partition according to a fourteenth aspect is the partition according to any one of the first aspect to the twelfth aspect, wherein the air environment adjustment unit includes a cooling unit that cools air with a heat pump provided in the first structure, and a first structure. It has at least one of a heating unit that heats air with a heat pump provided in the body. Waste heat generated when cooling air with a heat pump and heating air with a heat pump is A) The heat is exhausted to the first space where the influence of the waste heat on the temperature of the predetermined space is small, or to the second space where it is determined that there is no human based on the detection result of the human detection sensor of the partition. Or B) Heat is stored in the heat storage material provided in the first structure.
- the partition is placed at a relatively free position while suppressing the influence of waste heat on people, and the air is cooled / heated using a heat pump to easily create a comfortable temperature-controlled space. Can be.
- the partition according to the fifteenth aspect is any of the partitions according to the first to fourteenth aspects, and further includes a storage battery that supplies power to the air environment adjustment unit. Partitions are portable.
- the partition according to the sixteenth aspect is any of the partitions according to the first to ninth aspects, and the first structure has a columnar shape extending in the vertical direction.
- the first structure has legs for self-support.
- the legs can prevent the first structure from overturning, and the safety is high.
- the partition according to the seventeenth aspect is any of the partitions according to the first aspect to the sixteenth aspect, and further includes a wakefulness grasping unit and a control unit.
- the awakening degree grasping section grasps the degree of awakening of a person in a predetermined space.
- the control unit is configured to control at least the air environment adjustment unit, the emission unit that emits the aromatic substance provided in the partition, and the lighting device provided in the partition according to the arousal level of the person grasped by the awakening degree grasping unit. Control one.
- the partition according to the eighteenth aspect is any one of the partitions according to the first aspect to the sixteenth aspect, and further includes a communication unit and a control unit.
- the communication unit communicates with an external device that stores information about a person in a predetermined space.
- the control unit is based on information about a person in a predetermined space received from the external device via the communication unit, or based on a command generated based on information on a person in the predetermined space where the external device received via the communication unit. Control the air environment adjustment unit.
- the partition according to the nineteenth aspect is any of the partitions according to the first aspect to the eighteenth aspect, wherein the airflow generation unit includes a filter that removes dust in the air.
- the cleanliness of the air blown out of the partition can be improved.
- FIG. 2 is a schematic perspective view of the partition according to the first embodiment, in which a deformable partition is in a second state.
- FIG. 2 is a schematic perspective view of the partition of FIG. 1 with the deformable partition in a first state.
- FIG. 2 is a schematic perspective view of the partition of the first embodiment in which the deformable partition is in a second state having a shape different from that of FIG. 1.
- FIG. 2 is an example of a block configuration diagram of a partition in FIG. 1.
- FIG. 2 is another example of a block configuration diagram of the partition in FIG. 1.
- FIG. 2 is another example of a block configuration diagram of the partition in FIG. 1.
- It is a schematic block diagram of the air conditioner of the partition of FIG.
- FIG. 2 is a schematic plan view of the partition in FIG.
- FIG. 6 shows a schematic cross-sectional view of the first structure.
- FIG. 7 is a schematic cross-sectional view of a first structure according to another example, which has a different shape of the outlet from the first structure in FIG. 6.
- FIG. 2 is a schematic perspective view of a charging device for charging a storage battery in the partition of FIG. 1.
- FIG. 2 is a schematic plan view of a first structure of the partition of FIG. 1 in a state where legs are extended, as viewed from above.
- FIG. 10 is a schematic side view for explaining the structure of a leg of the first structure in FIG. 9.
- FIG. 14B is a schematic enlarged view of the periphery of an outlet formed in a partition of the partition in FIG. 14A.
- FIG. 15 is a schematic side view of a partition having a deformable partition in a second state when the first structure is horizontally installed according to Modification Example 1D.
- FIG. 9 is a schematic perspective view of a partition according to a second embodiment, in which a deformable partition is in a second state.
- FIG. 17 is a diagram illustrating an arrangement of heat storage units in the partition of FIG. 16.
- FIG. 17 is an example of a block configuration diagram of a partition in FIG. 16.
- FIG. 13 is a schematic perspective view of a partition according to a third embodiment, in which a deformable partition is in a second state.
- FIG. 20 is an example of a block configuration diagram of a partition in FIG. 19.
- FIG. 14 is a schematic perspective view of a partition according to a fourth embodiment, in which a deformable partition is in a second state. It is a schematic structure figure of a partition air conditioner concerning a 4th embodiment.
- FIGS. 1 to 3 are schematic perspective views illustrating partitions in which the state and the shape of a partition section 200 described later are different from each other.
- 4A to 4C are examples of the block configuration diagram of the partition 1.
- FIG. FIG. 5 is a schematic configuration diagram of the air conditioner 300 included in the partition 1.
- FIG. 6 is a schematic plan view of the partition 1, in which two different forms of the partition part 200 are drawn by a solid line and a two-dot chain line. Note that FIG. 6 is a schematic cross-sectional view of a first structure 100 described later to show the internal structure thereof.
- FIG. 7 is a schematic cross-sectional view of a first structure 100 ′ in which the shape of an air outlet formed is different from that of the first structure 100 of FIG. 6.
- FIG. 8 is a schematic perspective view of a charging device 12 for charging a storage battery 10 of the partition 1 described later.
- FIG. 9 is a schematic plan view of the first structure 100 of the partition 1 in a state where leg portions 120 described later are extended, as viewed from above.
- FIG. 10 is a schematic side view for explaining the structure of the leg 120 of the first structure 100.
- the partition 1 is a device that partitions the space Sa and the adjacent space Sn adjacent to the space Sa by the partition unit 200 (see FIG. 1).
- Partition 1 is preferably a portable device.
- the partition 1 is a device used in an office or the like, for example, although the place of use is not limited.
- the partition 1 is used in an open office and can create a semi-private space Sa at a desired position in the open office.
- a person who works or the like in the space Sa is less likely to be affected by the movement of a person in the adjacent space Sn or a sound generated in the adjacent space Sn due to the shielding and soundproofing function of the partitioning section 200, and is easily concentrated on the work and the like.
- the shielding / soundproof function of the partition portion 200 can suppress adverse effects on human activities in the adjacent space Sn.
- the shape of the partition portion 200 is variable as described later.
- the partition 1 can create a space Sa having a shape according to conditions such as restrictions on the installation space, the number of people using the space Sa, and the contents of work performed in the space Sa.
- the partition 1 since the partition 1 has a variable shape, the partition 1 can be stored in a relatively small space by deforming the partition 200 into a compact shape when not in use.
- the partition 1 has an air environment adjusting function (cooling function, heating function and air blowing function). Therefore, the partition 1 can create a space Sa having high comfort with respect to the air environment.
- the partition 1 mainly includes the first structure 100, a partition unit 200 as an example of a variable partition unit, and an air conditioner 300 as an example of an air environment adjustment unit (see FIGS. 4A to 4C). .
- the partition 1 preferably includes a storage battery 10 (see FIGS. 4A to 4C).
- the partition 1 preferably includes a control device 400.
- the partition 1 preferably includes a human detection sensor 20 (see FIGS. 4A to 4C).
- the partition 1 preferably includes a scent releasing device 30 (see FIGS. 4A to 4C).
- the partition 1 preferably includes a lighting device 40 (see FIGS. 4A to 4C).
- the air conditioner 300, the control device 400, the storage battery 10, the human detection sensor 20, the scent emission device 30, and the lighting device 40 are provided in the first structure 100. Therefore, in the description of the first structure 100, the air conditioner 300, the control device 400, the storage battery 10, the human detection sensor 20, the scent emission device 30, and the lighting device 40 will be described.
- the air conditioner 300, the control device 400, the storage battery 10, the human detection sensor 20, the scent emission device 30, and the lighting device 40 are installed in the partition 200 instead of the first structure 100 if structurally possible. May be done.
- the human detection sensor 20, the scent emission device 30, and the lighting device 40 may be attached to the partition 200 instead of the first structure 100.
- the partition section 200 is a member that partitions the space Sa and the adjacent space Sn in a state deformed to a second state described later (see FIG. 1).
- the space Sa faces one of the first surface 200a and the second surface 200b of the partition 200 described later, and the adjacent space Sn faces the other of the first surface 200a and the second surface 200b of the partition 200 described later. .
- the partition 200 is not limited, but is preferably an integrally configured member.
- the member integrally formed here is not limited to a member formed of a single component.
- the integrally formed member includes a member which is composed of a plurality of parts but is not disassembled into parts during normal use.
- the partition 200 is stored in the accommodated state (first state) described below, in addition to when the partition 200 is used in the expanded state (second state) as described later. And when the partition 200 is deformed between the accommodated state and the deployed state as described later.
- the integrally configured member includes a member that is not disassembled into parts unless an abnormality such as damage occurs when the partition part 200 is assembled from a plurality of parts.
- first end 210) of the partition 200 is connected to the first structure 100 (see FIG. 1).
- first structure 100 when the partition 1 is used, the first structure 100 is placed on the floor in an upright state (to extend in the vertical direction).
- terms indicating directions such as up, down, vertical, and horizontal are used based on a state in which the first structure 100 to which the partition 200 is connected is erected.
- the partition part 200 has a first end 210 on the side connected to the first structure 100 and a second end 220 on the distal side from the first end 210. It extends to the second end 220.
- the length from the first end 210 to the second end 220 is, for example, 2000 mm.
- the partition part 200 has substantially the same length (height) as the first structure 100 in the vertical direction. Although not limited, the height of the partition part 200 is, for example, 1200 mm.
- the partitioning section 200 is configured by, for example, a plurality of vertical frames 250 having high rigidity extending in the vertical direction and being connected by a deformable horizontal frame 260 extending in the horizontal direction (see FIGS. 1 and 3).
- the vertical frame 250 is made of, for example, metal or resin having high rigidity.
- the horizontal frame 260 is made of, for example, a flexible material.
- the partition part 200 has a first state (see FIG. 2) wound around the outer periphery of the first structure 100 and a second state (FIGS. 1 and 3) which is expanded to partition the space Sa from the adjacent space Sn. See also).
- the maximum value of the area when the partition 200 in the second state is viewed in the horizontal direction is larger than the maximum value of the area when the partition 200 in the first state is viewed in the horizontal direction.
- the first state is a state that the partition section 200 takes when the partition 1 is not used, and is also called a non-use state or a stored state.
- the second state is a state that the partition unit 200 takes when the partition 1 is used, and is also called a use state or an unfolded state.
- the partition part 200 can take a plurality of second states having different forms. Since the partitioning section 200 can take a plurality of forms as the second state, the user of the partition 1 can partition the space Sa into various shapes according to needs, which is highly convenient.
- the partitioning section 200 can assume a substantially C-shaped second state as shown in FIG. Further, in the present embodiment, the partitioning section 200 can take the second state of the wave shape as shown in FIG.
- the partitioning portion 200 has a first configuration (see a solid line in FIG. 6) that is convex on the first surface 200 a side and a second configuration (see FIG. 6) that is convex on the second surface 200 b side in plan view. (See dotted chain line) can be taken as the second state.
- the partitioning portion 200 has a first form that is convex on the first surface 200a side and a first form that is convex on the second surface 200b side when the partition 1 is viewed along the axial direction of the casing 110 of the first structure 100 described later.
- the convex second form can be taken as the second state.
- first surface 200a of the partition part 200 is arranged on one side of the partition part 200 extending from the first end 210 to the second end 220 (here, the upper side in the plan view of FIG. 6).
- the second surface 200b of the partition part 200 is a surface arranged on the opposite side to the first surface 200a of the partition part 200 (here, the surface arranged on the lower side in the plan view of FIG. 6).
- the shape of the partition part 200 shown by the solid line and the two-dot chain line in FIG. 6 is a shape that is convex only in one direction.
- the shape of the partition part 200 shown in FIG. 3 is a shape having protrusions at a plurality of positions, and has a portion that is convex toward the first surface 200a and a portion that is convex toward the second surface 200b.
- the first form and the second form are determined based on the direction of the protrusion closest to the first end 210. I do.
- the vertical frame 250 may be exposed as it is.
- the vertical frame 250 may be covered with a fabric such as a woven fabric, a knitted fabric, or a fabric.
- the first structure 100 has a columnar casing 110 extending in the first direction as an axial direction (see FIG. 1).
- the casing 110 has a cylindrical shape.
- the shape of the casing 110 is not limited to a cylindrical shape, and may be another shape such as an elliptical cylindrical shape or a polygonal cylindrical shape.
- the first structure 100 is installed such that the first direction, that is, the axial direction of the casing 110 is the vertical direction.
- the casing 110 accommodates various devices and various members inside.
- the casing 110 supports various devices and various members attached to the outer surface of the casing 110.
- the air conditioner 300, the control device 400, the human detection sensor 20, and the scent emission device 30 are at least partially housed inside the casing 110.
- the lighting device 40 is attached to the outer surface of the casing 110.
- the partition part 200 is connected to the casing 110 of the first structure 100.
- the first structure 100 supports the partition unit 200 to be independent so that the partition unit 200 is prevented from overturning.
- the casing 110 of the first structure 100 has a function as a core portion around which the partition portion 200 is wound when the partition 1 is stored.
- the casing 110 of the first structure 100 preferably has legs 120 for assisting the casing 110 to become independent.
- the casing 110 has three legs 120 as shown in FIG.
- the number of the legs 120 is not limited to three, and may be appropriately determined so as to perform the function of suppressing the falls of the legs 120.
- the leg 120 is a member whose main purpose is to suppress falling, and it is preferable that the partition 1 including the first structure 100 be able to stand alone without the leg 120.
- the leg 120 is swingably supported by the shaft 120a, and is configured to be rotatable around the shaft 120a.
- the leg part 120 is formed on the lower outer surface of the casing 110 as shown by a broken line in FIG. It is housed in the recess 110a.
- the partition 1 is used by expanding the partition 200 as shown in FIGS. 1 and 3, the leg 120 is rotated around the axis 120a so as to protrude outside the recess 110a, and the tip of the leg 120 is It comes into contact with the floor surface as shown by the solid line in FIG. 10 (illustration of the leg 120 is omitted in FIGS. 1 and 3).
- the leg 120 whose tip contacts the floor, supports the casing 110 so as to suppress tipping.
- leg 120 may be manually rotated about the axis 120a.
- the leg 120 may be rotated around the axis 120a by an opening / closing mechanism using a spring or the like or a motor operated by a switch (not shown) provided on the partition 1.
- the partition 1 is configured so that the air conditioner 300 and the like cannot be used unless the leg 120 is projected from the recess 110a (for example, if the leg 120 is not detected to be projected from the recess 110a by a sensor (not shown)). You may. With such a configuration, the occurrence of a fall accident of the partition 1 is particularly easily suppressed.
- the air conditioner 300 included in the partition 1 will be described.
- the air conditioner 300 is provided inside the casing 110 of the first structure 100.
- the air conditioner 300 is an example of an air environment adjustment unit.
- the air conditioner 300 is a heat pump type air conditioner.
- the air conditioner 300 is a device capable of performing cooling and heating. That is, the air conditioner 300 is a device capable of cooling or heating air by the use-side heat exchanger 330, as described later.
- the air conditioner 300 is a device that can blow air using the use side fan 350. Specifically, the air conditioner 300 causes the air taken in the casing 110 from the suction port 351 formed in the casing 110 to pass through the use-side heat exchanger 330 by generating an airflow by the use-side fan 350. This is a device that blows out from a blowout port 352 formed in the casing 110 (see FIGS. 4A to 4C).
- the air passing through the use side heat exchanger 330 is cooled or heated by the use side heat exchanger 330 when the heat pump is operating, and when the heat pump is not operating (when only the use side fan 350 is operating). ) Is neither cooled nor heated.
- the air conditioner 300 is not limited to a device capable of performing cooling and heating.
- the air conditioner 300 may be a cooling only machine capable of performing only cooling.
- the air conditioner 300 may be a heating-only machine that can perform only heating.
- the air conditioner 300 may not have the flow path switching mechanism 370 described later.
- the air conditioner 300 includes a refrigerant circuit in which devices such as a compressor 310, a flow path switching mechanism 370, a use side heat exchanger 330, an expansion mechanism 380, and a heat source side heat exchanger 340 are connected by piping. 320.
- the air conditioner 300 includes a use-side fan 350 that generates an airflow so that air passes through the use-side heat exchanger 330, and a heat-source-side fan that generates airflow so that air passes through the heat-source side heat exchanger 340. 360 (see FIG. 5).
- the operation of the air conditioner 300 is controlled by the control unit 390 (see FIG. 5).
- the compressor 310 is a device that sucks, compresses, and discharges low-pressure refrigerant in a refrigeration cycle.
- the compressor 310 is, for example, a compressor whose inverter is controlled and whose capacity is adjustable (the number of rotations of the motor is adjustable).
- the present invention is not limited to this, and the compressor 310 may be a fixed capacity compressor.
- the channel switching mechanism 370 is a mechanism that switches the flow direction of the refrigerant in the refrigerant circuit 320 according to the operation mode (cooling operation mode / heating operation mode).
- the flow path switching mechanism 370 is a four-way switching valve.
- the flow path switching mechanism 370 is not limited to the four-way switching valve, and may be configured to realize the following refrigerant flow switching by combining a plurality of solenoid valves and piping. Good.
- the flow path switching mechanism 370 switches the flow path of the refrigerant in the refrigerant circuit 320 so that the refrigerant discharged from the compressor 310 is sent to the heat source side heat exchanger 340. (See the solid line in the flow path switching mechanism 370 in FIG. 5). Specifically, in the cooling operation mode, the flow path switching mechanism 370 connects the suction pipe 320a and the second gas refrigerant pipe 320e.
- the suction pipe 320a is a pipe that connects the suction side of the compressor 310 and the flow path switching mechanism 370.
- the second gas refrigerant pipe 320e is a pipe connecting the gas side of the use side heat exchanger 330 and the flow path switching mechanism 370.
- the flow path switching mechanism 370 connects the discharge pipe 320b and the first gas refrigerant pipe 320c.
- the discharge pipe 320b is a pipe that connects the discharge side of the compressor 310 and the flow path switching mechanism 370.
- the first gas refrigerant pipe 320c is a pipe connecting the gas side of the heat source side heat exchanger 340 and the flow path switching mechanism 370.
- the flow path switching mechanism 370 switches the flow direction of the refrigerant in the refrigerant circuit 320 so that the refrigerant discharged from the compressor 310 is sent to the use side heat exchanger 330 (the flow path switching mechanism 370 in FIG. 5). (See broken line inside). Specifically, in the heating operation mode, the flow path switching mechanism 370 causes the suction pipe 320a to communicate with the first gas refrigerant pipe 320c and the discharge pipe 320b to communicate with the second gas refrigerant pipe 320e (broken line in FIG. 5). reference).
- the heat source side heat exchanger 340 is a heat exchanger that exchanges heat between air and a refrigerant flowing in the heat source side heat exchanger 340.
- the heat source side heat exchanger 340 functions as a radiator (condenser) during the cooling operation, and functions as an evaporator during the heating operation.
- the heat source side heat exchanger 340 is a cross-fin type fin-and-tube heat exchanger including, but not limited to, a heat transfer tube (not shown) and a number of fins (not shown).
- the heat source side fan 360 flows into the casing 110 from the intake port 361 formed in the casing 110 in which the air conditioner 300 is accommodated, and the heat source side heat exchanger 340 Is a device that generates a flow of air that flows through the exhaust port 362 formed in the casing 110 and flows out of the casing 110.
- the heat source side fan 360 is a propeller fan.
- the heat source side fan 360 may be another type of fan.
- the heat source side fan 360 is disposed downstream of the heat source side heat exchanger 340 in the flow direction of the air generated by the heat source side fan 360, but is not limited thereto.
- the heat source side heat exchanger 340 may be arranged on the upstream side.
- the intake port 361 is formed on, for example, a side surface of the casing 110.
- the intake port 361 is preferably provided with a filter 361a for removing dust in the air.
- the filter 361a may be provided on the downstream side of the intake port 361 and on the upstream side of the heat source side fan 360 and the heat source side heat exchanger 340 in the flow direction of the air generated by the heat source side fan 360.
- the exhaust port 362 is formed on the bottom surface of the casing 110 so as to be able to exhaust air to a space under the floor where the partition 1 is installed (see FIG. 4A).
- the waste heat (warm waste heat) generated in the heat source side heat exchanger 340 when the air is cooled in the use side heat exchanger 330 by the heat pump of the air conditioner 300 or the heat pump of the air conditioner 300 Waste heat (cold waste heat) generated in the heat source side heat exchanger 340 when heating air in the use side heat exchanger 330 can be discharged to the underfloor space.
- the underfloor space is an example of the first space S1 in which waste heat has a small effect on the temperature of the space Sa partitioned by the partition 1.
- the position of the exhaust port 362 of the casing 110 is not limited to the bottom surface of the casing 110, and the first space S1 is not limited to the underfloor space.
- the waste heat generated in the heat source side heat exchanger 340 is installed in the partition 1 according to an example of the first space S1 from an exhaust port 362 formed on the upper surface or the side surface of the casing 110 via an exhaust pipe (not shown). The heat may be exhausted to the space above the ceiling of the room or the ventilation duct.
- the mode of the exhaust heat of the waste heat generated in the heat source side heat exchanger 340 is not limited to the above-described embodiment.
- the exhaust port 362 may be provided on the upper surface or side surface of the casing 110, and the exhaust port 362 may be provided with a wind direction adjusting mechanism 362a that can change the direction by a motor or the like (see FIG. 4B).
- the wind direction adjusting mechanism 362a is, for example, a flap provided at the exhaust port 362.
- the wind direction adjusting mechanism 362a may be controlled so as to perform heat.
- control unit 390 uses the space on the ceiling side (the space above partition 1) as the second space without using the detection result of human detection sensor 20. It may be determined that the space is the two space S2, and the wind direction adjusting mechanism 362a may be controlled so that the air is exhausted to the space on the ceiling side.
- the partition 1 may have a nozzle (not shown) capable of changing the exhaust direction for exhausting the air that has passed through the heat source side heat exchanger 340, instead of the exhaust port 362 and the wind direction adjusting mechanism 362a.
- the control unit 390 which will be described later, may control the exhaust direction of the nozzle based on the detection result of the human detection sensor 20, which will be described later, so as to exhaust (heat) the space determined to be empty.
- the manner of treating waste heat generated in the heat source side heat exchanger 340 is not limited to the above-described manner.
- the heat storage material 342 may be provided in the casing 110 of the first structure 100 (see FIG. 4C).
- the air that has passed through the heat source side heat exchanger 340 is blown out from an exhaust port 362 formed in the casing 110 after the heat (warm heat, cold waste heat) is removed by the heat storage material 342. May be done.
- the heat stored in the heat storage material 342 may be processed after using the partition 1.
- the cooling process of the heat storage material 342 may be performed to remove the heat from the heat storage material 342 after using the partition 1.
- the expansion mechanism 380 is disposed in the liquid refrigerant pipe 320d that connects the liquid side of the heat source side heat exchanger 340 and the liquid side of the use side heat exchanger 330 ( (See FIG. 5).
- the expansion mechanism 380 is a mechanism that expands the refrigerant flowing from the heat source side heat exchanger 340 to the use side heat exchanger 330 or from the use side heat exchanger 330 to the heat source side heat exchanger 340.
- the expansion mechanism 380 is an electronic expansion valve whose opening can be adjusted, but is not limited to this, and may be, for example, a capillary tube or the like.
- the user-side heat exchanger 330 is a heat exchanger that exchanges heat between air and a refrigerant flowing in the user-side heat exchanger 330.
- the use-side heat exchanger 330 functions as an evaporator to cool the air during the cooling operation, and functions as a radiator (condenser) for the refrigerant during the heating operation to heat the air. That is, the use-side heat exchanger 330 functions as a cooling unit that cools the air during the cooling operation. Further, the use-side heat exchanger 330 functions as a heating unit that heats the air during the heating operation.
- the use-side heat exchanger 330 is a cross-fin type fin-and-tube heat exchanger including, but not limited to, a heat transfer tube (not shown) and a number of fins (not shown).
- the use-side fan 350 forms a part of the airflow generation unit 600 that generates an airflow.
- the airflow generation unit 600 blows air from the air outlet 352 disposed in the casing 110 of the first structure 100.
- the use-side fan 350 flows into the casing 110 from a suction port 351 formed in the casing 110 in which the air conditioner 300 is housed, passes through the use-side heat exchanger 330, and is formed in the casing 110.
- This is a device that generates a flow of air flowing out of the casing 110 from the outlet 352.
- the use side fan 350 is a propeller fan.
- the usage-side fan 350 may be another type of fan.
- the use-side fan 350 is disposed downstream of the use-side heat exchanger 330 in the flow direction of the air generated by the use-side fan 350, but is not limited thereto. , May be arranged upstream of the use side heat exchanger 330.
- the suction port 351 is not limited to a place, but is formed on a side surface of the casing 110, for example.
- the airflow generation unit 600 preferably includes a filter 351a provided at the suction port 351 for removing dust in the air. By providing the filter 351a, the cleanliness of the air blown out from the partition 1 can be improved.
- the outlet 352 is not limited to a place, but is formed on a side surface of the casing 110, for example.
- the outlet 352 is preferably arranged near the first end 210 of the partition 200 connected to the first structure 100.
- the airflow generation unit 600 is configured such that the partitioning unit 200 is configured so that the partition 200 is in the second state (the form convex on the first surface 200a side) and the second form (the form convex on the second surface 200b side). ) And produce different airflows depending on which one is taken.
- the description of generating different airflows includes a case where air is blown out using different outlets when a plurality of outlets 352 are present.
- the outlet 352 formed in the first structure 100 includes a first outlet 352 a arranged on the first surface 200 a side of the partition 200, and a partition 200. And a second air outlet 352b arranged on the second surface 200b side of the second air outlet.
- the first outlet 352 a and the second outlet 352 b are formed near the first end 210 of the partition 200.
- the first outlet 352a communicates with a first passage 352aa formed in the casing 110
- the second outlet 352b communicates with a second passage 352ba formed in the casing 110.
- the first passage 352aa is an air passage that guides the air that has passed through the heat source side heat exchanger 340 with the airflow generated by the use side fan 350 to the first outlet 352a.
- the second passage 352ba is an air passage that guides air that has passed through the heat-source-side heat exchanger 340 by the airflow generated by the use-side fan 350 to the second outlet 352b.
- the first passage 352aa and the second passage 352ba are passages partitioned from each other. Whether the air that has passed through the heat source side heat exchanger 340 flows through the first passage 352aa or the second passage 352ba can be switched by a passage switching damper (not shown) of the airflow generation unit 600. I have.
- the airflow generation unit 600 switches the flow path switching damper so that when the partition unit 200 takes the first mode, the second flow port 352b extends along the second surface 200b of the partition unit 200 in the first mode ( Air is blown out (along the second surface 200b) near the first end 210 of the partition 200 (see the solid arrow in FIG. 6).
- the airflow generation unit 600 switches the flow path switching damper so that when the partition unit 200 takes the second mode, the first flow port 352a extends along the first surface 200a of the second mode partition unit 200 ( Air is blown out (along the first surface 200a) in the vicinity of the first end 210 of the partition 200 (see the two-dot chain line arrow in FIG. 6).
- the flow path switching damper may be switched by a mechanical mechanism (not shown) that is driven in accordance with a change in the posture of the partition section 200 with respect to the first structure 100. Further, a change in the attitude of the partition portion 200 with respect to the first structure 100 may be detected by an angle sensor or the like (not shown), and the flow path switching damper may be driven and switched by a motor (not shown) in accordance with the detection result.
- the outlet 352 may be a single outlet formed so as to straddle the partition part 200 connected to the first structure 100 ′.
- the air outlet 352 is provided with a wind direction adjusting mechanism 354 of the airflow generation unit 600.
- the wind direction adjusting mechanism 354 is, for example, a flap.
- the wind direction adjusting mechanism 354 adjusts the horizontal wind direction.
- the wind direction adjusting mechanism 354 includes, for example, at least two flaps 355 and 356 (see FIG. 7).
- the flap 355 is arranged on the first surface 200a side of the partition 200 (see FIG. 7).
- the flap 356 is disposed on the second surface 200b side of the partition 200 (see FIG. 7).
- the airflow generation unit 600 rotates the flap 355 so as to close the air outlet 352, and rotates the flap 356 to the second surface 200b near the first end 210 of the partition 200. (Not shown).
- the airflow generation unit 600 blows air from the outlet 352 along the second surface 200b of the partition unit 200 in the first mode.
- the airflow generation unit 600 rotates the flap 356 so as to close the air outlet 352, and rotates the flap 355 to the first end 210 of the partition unit 200, as shown in FIG. It is rotated so as to be substantially parallel to the nearby first surface 200a.
- the airflow generation section 600 blows out air from the outlet 352 along the first surface 200a of the partition section 200 in the second mode.
- the positions of the flaps 355 and 356 may be switched by a mechanical mechanism (not shown) driven according to a change in the position of the partition 200 with respect to the first structure 100 '.
- the posture of the partition section 200 with respect to the first structure 100 ' is detected by an angle sensor or the like (not shown), and the posture of the flaps 355 and 356 may be switched by being driven by a motor (not shown) according to the detection result. .
- the partition 1 has a nozzle (nozzle having a wind direction adjusting mechanism, not shown) capable of changing the blowing direction, which blows out the air that has passed through the use side heat exchanger 330, instead of the outlet 352 and the wind direction adjusting mechanism 354. May be provided.
- the airflow generation unit 600 responds to a mechanical mechanism (not shown) driven in accordance with a change in the posture of the partition unit 200 with respect to the first structure 100 ′ or the posture of the partition unit 200 with respect to the first structure 100 ′.
- the direction of the nozzle may be changed by a driven motor (depending on whether the partition 200 takes the first configuration or the second configuration).
- a change in which of the first air outlet 352a and the second air outlet 352b air is blown out and a change in the attitude of the wind direction adjusting mechanism 354 and the nozzle need not be automatically adjusted.
- a user of the partition 1 operates an operation unit (not shown) provided in the partition 1 to operate a motor for driving the flow path switching damper, the wind direction adjusting mechanism 354, and the like, or manually operates the flow path switching damper.
- the outlets 352a and 352b for blowing air, the direction for blowing air from the outlet 352, and the like may be changed.
- control unit 390 is used. May control the wind direction adjusting mechanism 354 and the nozzle as follows.
- the control unit 390 controls the orientation of the wind direction adjustment mechanism 354 and the nozzle so that air blows toward the person, for example, based on the position of the person in the space Sa detected by the person detection sensor 20 described later. Is also good. Alternatively, on the contrary, the control unit 390 controls the wind direction adjusting mechanism 354 and the attitude of the nozzle based on the position of the person in the space Sa detected by the human detection sensor 20 described later so that the person does not hit the air. May be.
- the control unit 390 is electrically connected to the compressor 310, the flow path switching mechanism 370, the expansion mechanism 380, the heat source side fan 360, the use side fan 350, etc. of the air conditioner 300. And control the operation of these devices.
- the operation of the wind direction adjustment mechanisms 362a and 354 is controlled based on the detection result of the human detection sensor 20, and the posture of the partition unit 200 with respect to the first structure 100 detected by an angle sensor (not shown) or the like.
- the control unit 390 controls the human detection sensor 20, the angle sensor, the wind direction adjusting mechanisms 362a and 354, the flow path switching damper, and the like. Is also electrically connected. Then, the control unit 390 controls operations of the wind direction adjusting mechanisms 362a and 354, the flow path switching damper, and the like.
- the control unit 390 is realized by, for example, an MCU having a control operation device, a storage device, an input device, an output device, and the like.
- a processor such as a CPU can be used for the control arithmetic unit.
- the control operation device reads out a program stored in the storage device, and performs a predetermined operation according to the program. Further, the control operation device can write the operation result to the storage device and read the information stored in the storage device according to the program.
- the control unit 390 may be realized by software, may be realized by hardware, or may be realized by hardware and software.
- the control unit is controlled based on an operation on an operation unit (not shown) provided in the partition 1, a measurement value of various sensors (such as a temperature sensor) provided in the partition 1, a set temperature for cooling or heating, and the like.
- the 390 controls the operation of the compressor 310, the flow path switching mechanism 370, the expansion mechanism 380, the heat source side fan 360, the use side fan 350, and the like, so that the air conditioner 300 performs a cooling operation, a heating operation, and a blowing operation. Let it.
- the description of the control of the operation by the control unit 390 such as the above-described wind direction adjusting mechanisms 362a and 354 and the flow path switching damper is omitted here.
- the control unit 390 operates the compressor 310 and controls the refrigerant circuit 320 to operate the compressor 310, the heat source side heat exchanger 340, the expansion mechanism 380, the use side heat exchanger 330, and the compressor 310.
- the flow path switching mechanism 370 is controlled so that the refrigerant circulates in order.
- the control unit 390 appropriately controls the rotation speed of the compressor 310 and the opening degree of the expansion mechanism 380 according to the measurement value of a temperature sensor (not shown). Further, the control unit 390 operates the heat source side fan 360 and the use side fan 350.
- the control unit 390 operates the compressor 310 and controls the refrigerant circuit 320 to operate the compressor 310, the use side heat exchanger 330, the expansion mechanism 380, the heat source side heat exchanger 340, and the compressor 310.
- the flow path switching mechanism 370 is controlled so that the refrigerant circulates in order.
- the control unit 390 appropriately controls the rotation speed of the compressor 310 and the opening degree of the expansion mechanism 380 according to the measurement value of a temperature sensor (not shown). Further, the control unit 390 operates the heat source side fan 360 and the use side fan 350.
- control unit 390 operates only the use-side fan 350 with the compressor 310 stopped (without circulating the refrigerant in the refrigerant circuit 320).
- the partition 1 preferably includes the storage battery 10.
- the storage battery 10 is installed in the casing 110 of the first structure 100.
- the storage battery 10 supplies power to the air conditioner 300 as an example of the air environment adjustment unit.
- the storage battery 10 may supply power to a part or all of the control device 400, the human detection sensor 20, the scent emission device 30, and the lighting device 40.
- power may be supplied to the control device 400, the human detection sensor 20, the scent emission device 30, and the lighting device 40 from a battery different from the storage battery 10. Since the partition 1 has the storage battery 10, various devices such as the air conditioner 300 of the partition 1 can be used even when there is no power outlet near the place where the partition 1 is to be installed.
- the storage battery 10 be charged by setting the first structure 100 to the charging device 12 when not in use (see FIG. 8). For example, when the partition 1 with the partition 200 in the first state is set in the charging device 12, the storage battery 10 is charged in a non-contact manner.
- the charging method is not limited to non-contact charging, and the storage battery 10 may be charged by inserting a power cable (not shown) into a power outlet.
- the partition 1 does not need to include the storage battery 10 and may be a device that connects a power cable to a power outlet and uses it.
- the partition 1 includes the human detection sensor 20.
- the human detection sensor 20 is a sensor that detects the presence or absence of a person, the number of persons, and the like in a space (a space including the space Sa and the adjacent space Sn) where the partition 1 is installed.
- the human detection sensor 20 is a sensor used when the control device 400 described later grasps the degree of awakening of a person in the space Sa.
- the human detection sensor 20 for detecting the presence or absence of a human.
- the type of the human detection sensor 20 is not limited to the illustrated type, and may be appropriately selected.
- control device 400 described later uses the body temperature of the person in the space Sa detected by the infrared sensor, the heart rate of the person in the space Sa detected by the Doppler sensor, and the image captured by the camera. Thus, the degree of awakening of the person in the space Sa can be grasped.
- the partition 1 is configured to receive only a detection result from the external sensor similar to the human detection sensor 20 in the partition 1 (control device 400) instead of including the human detection sensor 20 itself. You may.
- the partition 1 preferably includes the scent releasing device 30.
- the scent release device 30 is an example of a release unit that releases an aromatic substance.
- the scent releasing device 30 releases the fragrance stored in the fragrance storage unit (not shown), for example, with respect to the flow of air generated by the use side fan 350.
- the scent releasing device 30 can deliver the scent to a position away from the scent releasing device 30.
- the present invention is not limited to this, and the scent emission device 30 may emit the scent to a position irrelevant to the flow of air generated by the use side fan 350.
- the scent release device 30 can release a plurality of types of scents. Further, it is preferable that the scent releasing device 30 can adjust the amount of the fragrance released.
- the scent release device 30 operates by operating an operation unit (not shown) provided in the partition 1 or in response to a command of a control device 400 described later, and releases a fragrance of a type and an amount corresponding to the operation or command. .
- the partition 1 includes the illumination device 40.
- the lighting device 40 preferably has a toning function and a dimming function.
- the illumination device 40 operates by operating an operation unit (not shown) provided in the partition 1 or in response to a command from a control device 400 described later, and emits light having a color / brightness corresponding to the operation or command.
- the control device 400 is a device that controls devices such as the air conditioner 300, the scent releasing device 30, and the lighting device 40.
- the control device 400 is electrically connected to the control unit 390 of the air conditioner 300, the scent emission device 30, and the lighting device 40 (see broken lines in FIGS. 4A to 4C). Further, the control device 400 is also electrically connected to the human detection sensor 20 (see broken lines in FIGS. 4A to 4C).
- the control device 400 is configured to be connectable to an external device 500 such as a mobile phone (smartphone), a tablet, a wearable device, or a notebook computer via a communication line NW such as the Internet.
- an external device 500 such as a mobile phone (smartphone), a tablet, a wearable device, or a notebook computer via a communication line NW such as the Internet.
- the external device 500 is a device that stores information on a user who uses the partition 1, that is, a person who is in the space Sa.
- the external device 500 is a device carried by a user who uses the partition 1.
- the external device 500 may be a server or the like in which information on a user who uses the partition 1 is stored.
- the control device 400 is realized by a computer.
- the control device 400 includes a control operation device, a storage device, an input device, an output device, and the like.
- a processor such as a CPU can be used for the control arithmetic unit.
- the control operation device reads out a program stored in the storage device, and performs a predetermined operation according to the program. Further, the control operation device can write the operation result to the storage device and read the information stored in the storage device according to the program. Note that some of the functions of control device 400 may be executed by a computer or the like communicably connected to control device 400.
- the control device 400 includes a device control unit 410, a wakefulness grasping unit 412, and a communication unit 430 as functional units.
- the device control section 410 and the arousal level grasping section 412 will be described later.
- Communication unit 430 is a functional unit for communication between control device 400 and external device 500.
- a user of the partition 1 (a person who is in the space Sa, a person who intends to use the space Sa, or a person who prepares the partition 1 for a person who is in the space Sa or a person who intends to use the space Sa) is an external device 500
- the personal information is transmitted from the external device 500 storing information about the person (hereinafter, referred to as person information), and the control device 400 transmits the person information via the communication unit 430.
- the storage device of the control device 400 has a person information storage area 420 for storing person information.
- the person information storage area 420 stores the person information transmitted from the external device 500.
- the personal information is transmitted from the external device 500, but is not limited to this.
- person information may be input from an input unit (not shown) provided in the partition 1 and stored in the person information storage area 420.
- the device control unit 410 controls the air conditioner 300 as an example of the air environment adjustment unit, the scent emission device 30 provided in the partition 1, which emits an aromatic substance, and the lighting device 40 provided in the partition 1. It is.
- the air conditioner 300, the scent emission device 30, and the lighting device 40 can be operated by a user or the like from an operation unit (not shown) provided in the partition 1.
- the device control unit 410 controls the air conditioner 300, the scent emission device 30, and the lighting device 40 as described below.
- the device control according to the degree of arousal of a person and the device control according to personal information described below may be selectable between execution and non-execution.
- the control device 400 has the arousal level grasping unit 412 as described above.
- the arousal level grasping unit 412 outputs the detection result of the person in the space Sa by the human detection sensor 20 (for example, heart rate, body temperature, image of the person (more specifically, blinking and expression of the person reflected in the image)). Based on this, the degree of arousal of a person in the space Sa (the level of awakening of the person) is grasped. As for the arousal level, the smaller the degree, the lower the wake-up level (strong drowsiness), and the higher the degree, the higher the wake-up level (slow drowsiness).
- the arousal level grasping unit 412 outputs an arousal level in response to inputs such as a heart rate, a body temperature, and the number of blinks recognizable from an image of a person, which are stored in the storage device of the control device 400.
- the degree of arousal of the person is grasped based on the detection result by the person detection sensor 20.
- the arousal level grasping unit 412 uses a learned model by machine learning so as to output the arousal level in response to an input of a heart rate, a body temperature, an image of a person, and the like, based on the detection result of the human detection sensor 20.
- the degree of arousal of a person may be grasped.
- the device control unit 410 controls at least one of the air conditioner 300, the scent emission device 30, and the lighting device 40 when the arousal level grasping unit 412 determines that the arousal level of the person is lower than the predetermined level. .
- the device control unit 410 performs control to lower the set temperature of the air conditioner 300.
- the device control unit 410 increases the cooling of the air conditioner 300 or weakens the heating of the air conditioner 300. Control.
- the device control unit 410 determines whether the air conditioner 300 that is stopped or performing the heating operation is in the cooling operation.
- the air conditioner 300 may be controlled so as to start the operation.
- the device control unit 410 provides the person with a reduced alertness based on the detection result of the human detection sensor 20.
- the air conditioner 300 may be controlled so as to blow cold air toward the air conditioner.
- the device control unit 410 replaces the control of the air conditioner 300 or controls the air conditioner 300.
- the fragrance releasing device 30 may be controlled so that a kind of fragrance substance that promotes awakening of a person is released.
- the device control unit 410 replaces the control of the air conditioner 300 or adds to the control of the air conditioner 300.
- the scent releasing device 30 may be controlled so as to increase the amount of the released fragrance substance.
- the device control unit 410 replaces the control of the air conditioner 300 and / or the scent emission device 30 with: Or, in addition to the control of the air conditioner 300 and / or the scent emission device 30, the lighting device 40 is turned on to turn off the lighting device 40 or illuminated so that the color or brightness is changed in order to promote awakening of a person. 40 may be controlled.
- the device control unit 410 preferably controls the air conditioner 300 based on the person information stored in the person information storage area 420 of the storage device of the control device 400.
- the device control unit 410 may replace the air conditioner 300 or add to the air conditioner 300 based on the person information stored in the person information storage area 420 of the storage device of the control device 400. At least one of the lighting device 30 and the lighting device 40 may be controlled.
- the person information stored in the person information storage area 420 includes schedule information, constitution information, and favorite information regarding air conditioning, fragrance, and lighting of the person (in other words, the user of the partition 1) in the space Sa. Including at least one.
- the people who are in the space Sa include not only those who are actually in the space Sa but also those who are going to use the space Sa.
- the schedule information is, for example, information on how many people use the space Sa and when.
- the information on the constitution is, for example, information such as coldness, dry skin, and the like.
- the information on the preference regarding air conditioning, scent, and lighting is, for example, the set temperature, the scent, the liking for cooling and heating. , Such as illumination color and brightness.
- the device control unit 410 controls, for example, the following air conditioner 300, scent emission device 30, and lighting device 40 based on the human information stored in the human information storage area 420, for example.
- the device control unit 410 starts the operation of the air conditioner 300 or the scent emission device 30 based on the schedule information, for example, a predetermined time earlier (for example, 10 minutes before) than the scheduled use time of the space Sa.
- the device control unit 410 may adjust the strength of cooling or heating of the air conditioner 300 based on the schedule information, for example, according to the number of people who use the space Sa.
- the device control unit 410 increases the awakening level of a person at a predetermined time (for example, at the start time of a meeting) based on the above-described awakening level of the person in addition to the schedule information.
- the control of the air conditioner 300, the scent emission device 30, and the lighting device 40 may be performed.
- the device control unit 410 may adjust the strength of cooling or heating of the air conditioner 300.
- the device control unit 410 controls the air conditioner 300, the scent emission device 30, and the lighting device 40 on the basis of the information on the physical constitution and the information on the preference of the air conditioning, the fragrance, and the lighting under the conditions according to the information.
- a command generated based on the human information may be transmitted from the external device 500 to the control device 400 instead of the human information.
- the command generated based on the human information is not the schedule information itself, but a command generated by the external device 500 based on the command to specify the time to start the operation of the air conditioner 300 or the cooling intensity of the air conditioner 300. And so on. Further, for example, the command generated based on the human information is not the information on the physical constitution itself but a command generated by the external device 500 based on the information and instructing the operation of the air conditioner 300.
- the partition 1 of the above embodiment includes a first structure 100, a partition 200, and an air conditioner 300.
- the partition 200 is an example of a variable partition.
- the air conditioner 300 is an example of an air environment adjustment unit.
- the partition part 200 is connected to the first structure 100.
- the partition part 200 has a first end 210 on the side connected to the first structure 100 and a second end 220 on the distal side from the first end 210.
- the partitioning section 200 is deformed so as to partition the space Sa with respect to the adjacent space Sn.
- the air conditioner 300 is arranged on at least one of the first structure 100 and the partition 200. In the present embodiment, the air conditioner 300 is disposed on the first structure 100.
- the air conditioner 300 includes a use-side heat exchanger 330 and an airflow generation unit 600.
- the use side heat exchanger 330 is an example of a cooling unit that cools air and a heating unit that heats air.
- the airflow generation unit 600 includes a use-side fan 350.
- a comfortable space can be easily created for the user who is separated from the surroundings by the partition 1.
- the partitioning section 200 can be transformed into a first state and a second state.
- the partition part 200 in the first state is wound around the outer periphery of the first structure 100.
- the second state is a state in which the maximum value of the area when the partition 200 is viewed in all directions in the horizontal direction is larger than the first state.
- the partitioning section 200 assumes the second state, so that the partition 1 can partition a relatively large space Sa from the adjacent space Sn.
- the partition 1 can be stored in a small space by taking the partition 200 into the first state.
- the partition 1 can be easily moved by setting the partition 200 in the compact first state.
- the partitioning section 200 can take a plurality of second states having different forms.
- the space can be divided into a plurality of different shapes according to needs, which is highly convenient.
- the partition part 200 has a first surface 200a and a second surface 200b arranged on the opposite side to the first surface 200a.
- One of the first surface 200a and the second surface 200b faces the space Sa, and the other of the first surface 200a and the second surface 200b faces the adjacent space Sn.
- the partitioning section 200 can take a first configuration that is convex on the first surface 200a side and a second configuration that is convex on the second surface 200b side as a second state.
- the space can be divided into different shapes according to needs, which is highly convenient.
- the airflow generation unit 600 of the air conditioner 300 generates a different airflow depending on whether the partitioning unit 200 takes the first state or the second mode as the second state.
- the airflow generating section 600 blows air along the second surface 200b of the partitioning section 200 in the first mode (see the solid line in FIG. 6).
- the airflow generation unit 600 blows out air along the first surface 200a of the partition 200 in the second configuration (see the two-dot chain line in FIG. 6).
- the airflow generation unit 600 of the air conditioner 300 causes air to be blown out from the air outlet 352 arranged in the first structure 100.
- the outlet 352 blows air along at least a part of the surface of the partition 200 in the second state.
- the partition part 200 is also used as an airflow guide, the air environment of the space partitioned by the partition 1 can be adjusted with high accuracy.
- the outlet 352 is preferably disposed near the first end 210 of the partition 200.
- the air conditioner 300 includes a cooling unit that cools air with a heat pump provided in the first structure 100, and a heating unit that heats air with a heat pump provided in the first structure 100.
- the use side heat exchanger 330 functioning as
- the waste heat generated when the air is cooled by the heat pump and when the air is heated by the heat pump is, for example, a first space S1 (for example, a space under the floor, a space above the ceiling, or the like) in which the waste heat has little effect on the temperature of the space Sa. , Ventilation duct).
- a first space S1 for example, a space under the floor, a space above the ceiling, or the like
- the waste heat has little effect on the temperature of the space Sa. , Ventilation duct
- the waste heat generated when cooling the air with the heat pump and when heating the air with the heat pump is a space in which it is determined that there is no person based on the detection result of the human detection sensor 20 of the partition 1 (second space S2). May be exhausted.
- the air that has exchanged heat with the heat source side heat exchanger 340 may be exhausted to the space (the second space S2) where it is determined that there is no person based on the detection result of the person detection sensor 20 of the partition 1.
- the waste heat generated when cooling the air with the heat pump and when heating the air with the heat pump may be stored in the heat storage material 342 provided in the first structure 100.
- the partition 1 is disposed at a relatively free position while suppressing the influence of waste heat on a person, and the air is cooled / heated by using a heat pump to easily create a comfortable temperature-controlled space. be able to.
- the partition 1 of the above embodiment includes a storage battery 10 that supplies power to at least the air conditioner 300. Partition 1 is portable.
- the first structure 100 has a columnar shape extending in the vertical direction.
- the first structure 100 has legs 120 for supporting self-support.
- the fall of the first structure 100 can be suppressed by the legs 120, and the safety is high.
- the partition 1 of the above embodiment includes a wakefulness grasping unit 412 and a device control unit 410.
- the awakening degree grasping unit 412 grasps the degree of awakening of the person in the space Sa.
- the device control unit 410 is provided in the air conditioner 300, the scent emission device 30 that emits an aroma substance provided in the partition 1, and the partition 1 according to the arousal level of the person recognized by the arousal level determination unit 412. At least one of the illuminating devices 40 that are present.
- the partition 1 of the above embodiment includes a communication unit 430 and a device control unit 410.
- the communication unit 430 communicates with the external device 500 that stores information (person information) about a person in the space Sa.
- the device control unit 410 may control the air conditioner 300 based on human information received from the external device 500 via the communication unit 430 or a command generated based on the human information by the external device 500 received via the communication unit 430. Control.
- the partition 200 is preferably deformable, but the control of the air conditioner 300, the fragrance releasing device 30, and the lighting device 40 by the control device 400 can be applied to a partition in which the partition does not deform.
- the airflow generation unit 600 of the air conditioner 300 includes a filter 351a that removes dust in the air.
- the filter 351a is provided in a suction port 351 formed in the casing 110.
- the cleanliness of the air blown out of the partition 1 can be improved.
- the partition 200 may be accommodated in the casing 110A of the first structure 100A in the first state.
- the partition part 200 is configured to be able to be pulled out from an opening (not shown) extending in the vertical direction provided on the outer wall of the casing 110A.
- the first structure 100A has a winding mechanism (not shown) of the partition part 200 using a spring or a motor.
- the first end 210 of the partitioning section 200 is connected to the core 110Aa disposed inside the casing 110A, not to the outer wall of the casing 110A (see FIG. 11).
- the core 110Aa is rotated by the winding mechanism, so that the partition part 200 in the second state is wound around the core 110Aa inside the casing 110A, It is housed inside 110A.
- the maximum value of the area when the partition 200 in the first state is viewed in all directions in the horizontal direction cannot be defined. Therefore, when the partition 200 is accommodated inside the first structure 100A, the maximum area when the first structure 100A is viewed from all directions in the horizontal direction is determined by dividing the maximum area of the partition 200 in the first state. It is regarded as the maximum value of the area when viewed from all directions. Also in the partition 1A, the maximum value of the area when the partition 200 in the second state is viewed in all directions in the horizontal direction is the area when the partition 200 in the first state is viewed in all directions in the horizontal direction. Greater than the maximum value of.
- the shape of the partition 200B of the partition 1B may be a bellows (folding screen) in which a plurality of plates 290 are connected by hinges (not shown). It should be noted that the number of plates 290 shown is merely an example, and may be smaller or larger than the number shown.
- the partition part 200B is a member integrally comprised although it is not limited.
- the partition part 200B is connected to the first structure 100.
- the partition part 200B has a first end 210B on the side connected to the first structure 100, and a second end 220B on the distal side from the first end 210B.
- the partition part 200B is deformed so as to partition the space Sa with respect to the adjacent space Sn.
- the partition part 200B can be transformed into a first state (non-use state, see FIG. 12) and a second state (use state, see FIG. 13).
- first state the partition part 200B is folded near the first structure 100.
- the second state is a state in which the maximum value of the area when the partition 200B is viewed from all directions in the horizontal direction is larger than the first state.
- the partition part 200B can take a plurality of second states having different forms.
- the partitioning portion 200B has a first configuration in which the plate 290 located closest to the first end 210B side and the plate 290 adjacent thereto are convex toward the first surface 200Ba side, and a plate 290 located closest to the first end 210B side.
- Plate 290 and a plate 290 adjacent to the plate 290 can be in a second state in which the plate 290 is convex toward the second surface 200Bb side.
- the airflow generation of the air conditioner 300 is also performed. It is preferable that the section 600 generates a different airflow depending on whether the partition section 200B takes the first state or the second form as the second state.
- the airflow generation section 600 sends air from the outlet 352 along the second surface 200Bb of the plate 290 located closest to the first end 210B of the partitioning section 200B. Blow out.
- the airflow generation unit 600 moves from the outlet 352 along the first surface 200Ba of the plate 290 located closest to the first end 210B of the partition 200B. Blow out the air.
- the airflow generation unit 600 of the air conditioner 300 blows out air from the outlet 352 formed in the first structure 100 or the nozzle provided in the first structure 100, but is not limited thereto. Not something.
- an air flow path 240C extending from the first end 210C to the second end 220C may be formed in the partition 200C of the partition 1C.
- the air conditioner 300 as an example of the air conditioning environment adjustment unit of the partition 1C allows the first fluid to flow inside the partition 200C.
- the first fluid is air.
- the partition portion 200C is an integrally formed member from the viewpoint of simplification of the structure and the like.
- the air flow path 240C is formed with a plurality of outlets 357 extending in a direction from the first end 210C to the second end 220C, for example, extending in a direction from the first end 210C to the second end 220C. It is formed by using the formed tube.
- the tube penetrates the vertical frame 250 in the case of the partition part 200 of the first embodiment and the plate 290 in the case of the partition part 200B of the modified example 1C from the first end side to the second end side of the partition part. Be placed.
- a plurality of tubes forming the flow path 240C may be arranged vertically.
- the tube is preferably made of a flexible material.
- the tube may be made of a relatively hard material.
- the air flow path 240C is taken in from the suction port 351 and communicates with an air flow path (not shown) in the casing 110C through which air flows through the use side heat exchanger 330 of the air conditioner 300. Then, the air supplied from the air passage in the casing 110C to the air passage 240C is blown out from the outlet 357.
- the airflow generation unit 600 blows air from the outlet 357 disposed in the partition 200C.
- the air since the air is blown out from the partition part 200C, it is easier to blow out the air so as to reach a position distant from the first structure 100C as compared with a case where the blowout port is provided in the first structure 100C.
- the airflow generation unit 600 preferably includes at least one of a horizontal wind direction adjustment mechanism 358 that adjusts a horizontal wind direction and a vertical wind direction adjustment mechanism 359 that adjusts a vertical wind direction, which are arranged at the outlet 357. (See FIG. 14B).
- the horizontal wind direction adjusting mechanism 358 and the vertical wind direction adjusting mechanism 359 are arranged, for example, on the downstream side of the outlet 357, but may be arranged on the upstream side of the outlet 357.
- the horizontal wind direction adjusting mechanism 358 has, for example, a flap 358a that rotates around an axis extending in the vertical direction.
- the vertical wind direction adjustment mechanism 359 has, for example, a flap 359a that rotates around an axis extending in the horizontal direction.
- the wind direction adjusting mechanisms 358 and 359 may be manually operated mechanisms, or may be mechanisms that automatically operate according to a human operation on an operation unit provided in the partition 1C or a detection result of the human detection sensor 20. You may.
- the partitioning section 200C can take a first form that is convex on the first surface 200Ca side and a second form that is convex on the second surface 200Cb side as a second state. 1C preferably generates different airflows depending on whether the partitioning section 200C assumes the second state as the second state.
- the partition 200C of the partition 1C communicates with an air flow passage 240C communicating with an air outlet 357 provided on the second surface 200Cb side and an air outlet (not shown) provided on the first surface 200Ca side. And an air flow path (not shown).
- the airflow generation unit 600 uses the flow path switching damper as described in the first embodiment, for example, to determine whether the partition unit 200C is in the second state in the first mode or the second mode.
- the air that has passed through the use-side heat exchanger 330 of the air conditioner 300 is supplied to the different flow paths of the partitioning section 200C according to.
- the airflow generation section 600 supplies the air that has passed through the use side heat exchanger 330 to the flow path 240C, and from the outlet 357 to the second surface 200Cb side. The air is blown out (see FIG. 14A).
- the partitioning section 200C has the second configuration, the air that has passed through the use-side heat exchanger 330 is supplied to a flow path that communicates with an outlet (not shown) provided on the first surface 200Ca side. Then, air is blown from the outlet provided on the first surface 200Ca side to the first surface 200Ca side.
- the partition 200C of the partition 1C may include a nozzle (a nozzle having a wind direction adjusting mechanism) that can change the blowing direction. Since the mode in which the nozzle that can change the blowing direction is used in place of the wind direction adjusting mechanisms 358 and 359 has already been described in the above embodiment, the description is omitted here.
- the partition 1 is used in a state in which the first structure 100 is set upright, but the present invention is not limited to this.
- the partition 1 may be used in a state where the first structure 100 is laid in the horizontal direction as shown in FIG.
- the first structure 100 is used in a state of being laid in the horizontal direction, it is preferable that the second end 220 side of the partition part 200 is supported by the support 270.
- the partition 1 may be configured to be usable in a state in which the first structure 100 is oriented in the vertical direction or in a state in which the first structure 100 is laid in the horizontal direction. That is, the first structure 100 of the partition 1 has a columnar shape extending in the first direction as the axial direction.
- the first structure 100 is installed so that the first direction is the vertical direction, in the second state, the first end 210 and the second end 220 of the partition part 200 are at the same height. And are arranged at positions separated in the horizontal direction (see FIGS. 1 and 3).
- the first end 210 and the second end 220 of the partition part 200 have different heights. (See FIG. 15).
- the degree of freedom of the shape of the space partitioned by the partition 1 is high.
- the partition 1 has the heat pump type air conditioner 300, but is not limited to this.
- the partition 1 may have a fan as an airflow generation unit (having no heating unit or cooling unit) instead of the air conditioner 300 as an air environment adjustment unit.
- the fan may be provided outside the casing 110 or at the partition 200.
- the partition 1 has the air conditioner 300.
- the partition 1D in FIG. 16 does not have the air conditioner 300 (see FIG. 18).
- the partition 1D is connected to the first structure 100D, and has a first end 210D on the side connected to the first structure 100D and a second end 220D on the distal side. .
- a heat storage unit 232D is provided in the partition unit 200D as a cooling unit and / or a heating unit of the air environment adjustment unit 230D.
- the heat storage section 232D is provided inside each vertical frame 250D, for example, as shown in FIG. 17, and the heat storage section 232D accommodates a heat storage material 232Da.
- heat storage unit 232D When it is desired to use heat storage unit 232D as a cooling unit, heat storage unit 232D is cooled by a cooling device when not in use. When the heat storage unit 232D is to be used as a heating unit, the heat storage unit 232D is heated by the heating device when not in use. When the heat storage unit 232D has both functions of a cooling unit and a heating unit, the heat storage unit 232D includes a heat storage material 232Da suitable for the function as a cooling unit and a function as a separate heating unit. It is preferable that the heat storage material 232Da suitable for the storage is accommodated. By providing the partition 200D with the function of the heat storage unit 232D, the air can be cooled / heated by the radiant heat of the heat storage material when the partition 1 is used.
- the storage battery 10 for supplying electric power to the air environment adjustment unit 230D is unnecessary. Further, in such a configuration, since the cooling / heating of the air by the air environment adjustment unit 230D cannot be controlled, the control device 400 does not need the control function of the air environment adjustment unit 230D.
- the partition 1D does not have the air conditioner 300, but the partition 1D has an air conditioner 300 as an air environment adjustment unit in addition to the heat storage unit 232D as a cooling unit and / or a heating unit of the air environment adjustment unit 230D.
- a fan as an airflow generation unit may be provided.
- the fan is provided, for example, inside or outside the casing 110D of the first structure 100D, or in the partition 200D.
- the fan may generate a flow of air along at least a portion of the surface of the partition 200D in the second state.
- the partition 1 has the air conditioner 300.
- the partition 1E in FIG. 19 does not have the air conditioner 300 (see FIG. 20).
- the partition 1E is connected to the first structure 100E, and has a first end 210E on the side connected to the first structure 100E and a first end 210E on the distal side. .
- the partition 1E is provided with an air environment adjustment unit 280E in the partition unit 200E instead of the air conditioner 300 as the air environment adjustment unit.
- the air environment adjustment unit 280E includes a Peltier element as the cooling unit 280Ea and an electric heater as the heating unit 280Eb of the air environment adjustment unit (see FIG. 20). With this configuration, at the time of use, air can be heated and cooled by radiant heat of the cooling unit 280Ea and the heating unit 280Eb.
- the Peltier element as the cooling unit 280Ea and the electric heater as the heating unit 280Eb from, for example, the storage battery 10 housed in the casing 110E.
- the cooling unit 280Ea and the heating unit 280Eb are provided on the first surface 200Ea of the partition 200E and the second surface 200Eb of the partition 200E, respectively.
- the device control unit 410 of the control device 400 that controls the operation of the air environment adjustment unit 280E performs the second operation when the partitioning unit 200E takes the first form that is convex toward the first surface 200Ea.
- the cooling unit 280Ea or the heating unit 280Eb on the surface 200Eb side has a second form convex to the second surface 200Eb side
- the cooling unit 280Ea or the heating unit 280Eb on the first surface 200Ea side is configured to operate. Is preferred.
- a fan as an airflow generation unit may be further provided in the partition 1E.
- the fan is provided inside or outside the casing 110E of the first structure 100E, or in the partition 200E.
- the fan may generate a flow of air along at least a portion of the surface of the partition 200E in the second state.
- FIG. 21 is a schematic perspective view of the partition 1F.
- FIG. 22 is a schematic configuration diagram of an air conditioner 300F included in the partition 1F.
- the partition 1F of the fourth embodiment has many points similar to the partition of the first embodiment, and therefore, explanations other than differences are basically omitted to avoid duplication of explanation. It should be noted that some or all of the features of the partitions described in the first to third embodiments and the modifications thereof can be applied to the partition 1F as appropriate without contradiction.
- the partition 1F includes a partition 200F, a first structure 100F, and an air conditioner 300F as shown in FIGS. 21 and 22.
- the partition 200F, the first structure 100F, and the air conditioner 300F are different from the partition 200, the first structure 100, and the air conditioner 300 of the partition 1 of the first embodiment mainly in the following points.
- the air conditioner 300F does not have the use side fan 350.
- the air conditioner 300F includes a first fluid circuit 700 connected to the use side heat exchanger 330.
- the use side heat exchanger 330 of the air conditioner 300F is, for example, a plate heat exchanger, although the type is not limited.
- the refrigerant flowing through the refrigerant circuit 320 exchanges heat with the first fluid flowing through the first fluid circuit 700, not with air.
- the first fluid is, for example, but not limited to, water or oil as a heat medium.
- the first fluid circuit 700 includes a pipe 720 provided inside the partition part 200F. FIG.
- the first fluid circuit 700 is provided with a pump 710.
- the pump 710 is arranged, for example, inside the first structure 100F.
- the first fluid circulates in the first fluid circuit 700, and the first fluid that has exchanged heat with the refrigerant in the use-side heat exchanger 330 flows inside the partition 200F.
- the partition 1F having such a structure, convection due to a temperature difference between the first fluid cooled or heated by the use side heat exchanger 330 and the room temperature, or cooling or heating by the use side heat exchanger 330 is performed.
- the radiation around the partition 200F can be cooled or heated by the radiation of the first fluid.
- the partition 1F forms a circulation path for the first fluid inside the partition 200F like an oil heater, and the first fluid is provided by an electric heater provided inside the first structure 100F or the partition 200F. By heating the first fluid, the first fluid may be circulated in the circulation channel. With this configuration, the air around the partition 200F can be heated.
- the first structure 100F of the partition 1F may further include an airflow generation unit that blows air from an outlet (not shown) arranged in the first structure 100F. It is preferable that the air outlet blows air along at least a part of the surface of the partition part 200F in the second state. Further, the airflow generation unit may be provided in the partition unit 200F.
- the partition 1F circulates the first fluid in the first fluid circuit 700 so that the first fluid flows inside the first structure 100F, and at least one of the surfaces of the partition 200F in the second state from the airflow generation unit. Air may be blown out along the part. With this configuration, cooling and heating of the air by the first fluid are easily promoted.
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Abstract
Description
A)廃熱が所定空間の温度に与える影響の小さな第1空間、又は、パーティションが有する人検知センサの検知結果に基づき人がいないと判断される第2空間に排熱される、
又は、
B)第1構造体内に設けられた蓄熱材に蓄熱される。
第1実施形態のパーティション1について、図1~図10を参照しながら説明する。
パーティション1について概説する。
以下に、仕切部200、第1構造体100、空調装置300、制御装置400、蓄電池10、人検知センサ20、香り放出装置30、及び照明装置40について説明する。
仕切部200は、後述する第2状態に変形された状態で、空間Saと隣接空間Snとを仕切る部材である(図1参照)。空間Saは、後述する仕切部200の第1面200a及び第2面200bの一方に面し、隣接空間Snは、後述する仕切部200の第1面200a及び第2面200bの他方に面する。
第1構造体100は、第1方向を軸方向として延びる、柱状形状のケーシング110を有する(図1参照)。本実施形態では、ケーシング110は、円柱形状である。ただしケーシング110の形状は、円柱形状に限定されるものではなく、楕円柱形状、多角形柱形状等、他の形状であってもよい。本実施形態では、パーティション1の使用時に、第1構造体100は、前記の第1方向、すなわちケーシング110の軸方向が上下方向になるように設置される。
パーティション1が有する空調装置300について説明する。空調装置300は、第1構造体100のケーシング110内に設けられる。空調装置300は、空気環境調整部の一例である。空調装置300は、ヒートポンプ式の空調装置である。
圧縮機310は、冷凍サイクルにおける低圧の冷媒を吸入し圧縮して吐出する装置である。圧縮機310は、例えば、インバータ制御される容量調節可能な(モータの回転数を調節可能な)圧縮機である。ただし、これに限定されるものではなく、圧縮機310は、容量一定の圧縮機であってもよい。
流路切換機構370は、運転モード(冷房運転モード/暖房運転モード)に応じて、冷媒回路320における冷媒の流れ方向を切り換える機構である。本実施形態では、流路切換機構370は四路切換弁である。ただし、流路切換機構370は、四路切換弁に限られるものではなく、複数の電磁弁及び配管を組み合わせることで、以下のような冷媒の流路の切り換えを実現できるように構成されてもよい。
熱源側熱交換器340は、空気と熱源側熱交換器340内を流れる冷媒とを熱交換させる熱交換器である。熱源側熱交換器340は、冷房運転時には放熱器(凝縮器)として機能し、暖房運転時には蒸発器として機能する。
熱源側ファン360は、空調装置300が収容されているケーシング110に形成されている吸気口361からケーシング110内に流入し、熱源側熱交換器340を通過して、ケーシング110に形成されている排気口362からケーシング110外へ流出する空気の流れを生成する装置である。
膨張機構380は、熱源側熱交換器340の液側と、利用側熱交換器330の液側と、を接続する液冷媒管320dに配置される(図5参照)。膨張機構380は、熱源側熱交換器340から利用側熱交換器330へと向かう、又は、利用側熱交換器330から熱源側熱交換器340へと向かう冷媒を膨張させる機構である。本実施形態では、膨張機構380は開度調節可能な電子膨張弁であるが、これに限定されるものではなく、例えばキャピラリチューブ等であってもよい。
利用側熱交換器330は、空気と利用側熱交換器330内を流れる冷媒とを熱交換させる熱交換器である。利用側熱交換器330は、冷房運転時には蒸発器として機能して空気を冷却し、暖房運転時には冷媒の放熱器(凝縮器)として機能して空気を加熱する。つまり、利用側熱交換器330は、冷房運転時には空気を冷却する冷却部として機能する。また、利用側熱交換器330は、暖房運転時には空気を加熱する加熱部として機能する。
利用側ファン350は、気流を生成する気流生成部600の一部を構成する。本実施形態では、気流生成部600は、第1構造体100のケーシング110に配置される吹出口352から空気を吹き出させる。
第1吹出口352aはケーシング110内に形成される第1通路352aaと連通し、第2吹出口352bはケーシング110内に形成される第2通路352baと連通する。第1通路352aaは、利用側ファン350が生成する気流で熱源側熱交換器340を通過した空気を第1吹出口352aへと導く空気の通路である。第2通路352baは、利用側ファン350が生成する気流で熱源側熱交換器340を通過した空気を第2吹出口352bへと導く空気の通路である。第1通路352aaと第2通路352baとは、互いに仕切られた通路である。熱源側熱交換器340を通過した空気が、第1通路352aaを流れるか第2通路352baを流れるかは、気流生成部600の有する流路切換ダンパ(図示せず)により切換可能に構成されている。そして、気流生成部600は、流路切換ダンパを切り換えることで、仕切部200が第1形態を取る時には第2吹出口352bから、第1形態の仕切部200の第2面200bに沿って(仕切部200の第1端部210の近傍において第2面200bに沿って)空気を吹き出す(図6の実線の矢印参照)。また、気流生成部600は、流路切換ダンパを切り換えることで、仕切部200が第2形態を取る時には第1吹出口352aから、第2形態の仕切部200の第1面200aに沿って(仕切部200の第1端部210の近傍において第1面200aに沿って)空気を吹き出す(図6の二点鎖線の矢印参照)。なお、流路切換ダンパは、第1構造体100に対する仕切部200の姿勢変化に伴って駆動される図示しない機械的な機構によって切り換えられてもよい。また、第1構造体100に対する仕切部200の姿勢変化を図示しない角度センサ等で検知され、その検知結果に応じて、流路切換ダンパは図示しないモータにより駆動されて切り換えられてもよい。
制御部390は、空調装置300の圧縮機310、流路切換機構370、膨張機構380、熱源側ファン360、及び利用側ファン350等と電気的に接続され、これらの機器の動作を制御する。また、上述のように、人検知センサ20の検知結果に基づいて風向調節機構362a,354の動作を制御したり、図示しない角度センサ等により検出される第1構造体100に対する仕切部200の姿勢変化に基づいて風向調節機構354や流路切換ダンパ等の動作を制御したりする場合には、制御部390は、人検知センサ20や角度センサ、風向調節機構362a,354や流路切換ダンパ等とも電気的に接続される。そして、制御部390は、風向調節機構362a,354や流路切換ダンパ等の動作を制御する。
パーティション1は、蓄電池10を備えることが好ましい。本実施形態では、蓄電池10は、第1構造体100のケーシング110内に設置される。
パーティション1は、人検知センサ20を備えることが好ましい。人検知センサ20は、パーティション1の設置される空間(空間Saや隣接空間Snを含む空間)の人の有無や人数等を検知するセンサである。また、人検知センサ20は、後述する制御装置400が空間Saに居る人の覚醒度を把握する際に用いられるセンサである。
パーティション1は、香り放出装置30を備えることが好ましい。香り放出装置30は、芳香物質を放出する放出部の一例である。香り放出装置30は、図示しない芳香物質貯留部に貯留された芳香物質を、例えば、利用側ファン350が生成する空気の流れに対して放出する。このように構成されることで、香り放出装置30は、香り放出装置30から離れた位置まで香りを届けることができる。ただし、これに限定されるものではなく、香り放出装置30は、利用側ファン350が生成する空気の流れとは関係のない位置に香りを放出してもよい。
パーティション1は、照明装置40を備えることが好ましい。照明装置40は、調色機能及び調光機能を有することが好ましい。
制御装置400は、空調装置300や、香り放出装置30や、照明装置40等の機器を制御する装置である。制御装置400は、空調装置300の制御部390と、香り放出装置30及び照明装置40と電気的に接続されている(図4A~図4C中の破線参照)。また、制御装置400は、人検知センサ20とも電気的に接続されている(図4A~図4C中の破線参照)。また、制御装置400は、携帯電話(スマートフォン)、タブレット、ウェアブルデバイス、ノートパソコン等の外部機器500と、インターネット等の通信回線NWを介して接続可能に構成されている。ここでは、外部機器500は、パーティション1を使用する利用者、言い換えれば空間Saに居る人に関する情報を記憶する機器である。例えば、外部機器500は、パーティション1を使用する利用者が携帯している機器である。また、例えば、外部機器500は、パーティション1を使用する利用者に関する情報が記憶されているサーバ等であってもよい。
<人の覚醒度に応じた機器制御>
制御装置400は、上述のように覚醒度把握部412を有する。覚醒度把握部412は、空間Saに居る人の人検知センサ20による検知結果(例えば、心拍数、体温、人の画像(より具体的には、画像に写った人の瞬きや表情))に基づいて、空間Saに居る人の覚醒度(人の目覚めのレベル)を把握する。覚醒度は、その度合いが小さいほど目覚めのレベルが低く(眠気が強く)、その度合いが大きいほど目覚めのレベルが高い(眠気が弱い)。なお、覚醒度把握部412は、制御装置400の記憶装置に記憶されている、心拍数や、体温や、人の画像から認識できる瞬きの回数等の入力に対して覚醒度を出力するアルゴリズム(プログラム)を用いて、人検知センサ20による検知結果に基づいて人の覚醒度を把握する。また、覚醒度把握部412は、心拍数、体温、人の画像等の入力に対して覚醒度を出力するように機械学習による学習済みモデルを用いて、人検知センサ20による検知結果に基づいて人の覚醒度を把握してもよい。
<個人情報に応じた機器制御>
機器制御部410は、好ましくは、制御装置400の記憶装置の人情報記憶領域420に記憶されている人情報に基づいて、空調装置300を制御する。また、機器制御部410は、制御装置400の記憶装置の人情報記憶領域420に記憶されている人情報に基づいて、空調装置300に代えて、又は、空調装置300に加えて、香り放出装置30及び照明装置40の少なくとも一方を制御してもよい。
(3-1)
上記実施形態のパーティション1は、第1構造体100と、仕切部200と、空調装置300と、を備える。仕切部200は、可変形仕切部の一例である。空調装置300は、空気環境調整部の一例である。仕切部200は、第1構造体100に接続される。仕切部200は、第1構造体100と接続される側の第1端部210と、第1端部210とは遠位側の第2端部220とを有する。仕切部200は、空間Saを隣接空間Snに対して仕切るように変形する。空調装置300は、第1構造体100及び仕切部200の少なくとも一方に配置される。本実施形態では、空調装置300は、第1構造体100に配置される。空調装置300は、利用側熱交換器330及び気流生成部600を有する。利用側熱交換器330は、空気を冷却する冷却部及び空気を加熱する加熱部の一例である。気流生成部600には、利用側ファン350を含む。
上記実施形態のパーティション1では、仕切部200は、第1状態と、第2状態と、に変形可能である。第1状態の仕切部200は、第1構造体100の外周に巻き回される。第2状態は、仕切部200を水平方向に全方位から見たときの面積の最大値が、第1状態に比べて大きな状態である。
上記実施形態のパーティション1では、仕切部200は、形態の異なる複数の第2状態を取ることが可能である。
上記実施形態のパーティション1では、仕切部200は、第1面200aと第1面200aとは反対側に配置される第2面200bとを有する。第1面200a及び第2面200bの一方は空間Saに面し、第1面200a及び第2面200bの他方は隣接空間Snに面する。仕切部200は、第1面200a側に凸の第1形態と、第2面200b側に凸の第2形態と、を第2状態として取ることが可能である。
上記実施形態のパーティション1では、空調装置300の気流生成部600は、仕切部200が第2状態として第1形態と第2形態とのいずれを取るかに応じて、異なる気流を生成する。
上記実施形態のパーティション1では、空調装置300の気流生成部600は、第1構造体100に配置される吹出口352から空気を吹き出させる。吹出口352は、第2状態の仕切部200の表面の少なくとも一部に沿って空気を吹き出す。
上記実施形態のパーティション1では、空調装置300は、第1構造体100内に設けられるヒートポンプで空気を冷却する冷却部、及び、第1構造体100内に設けられるヒートポンプで空気を加熱する加熱部、として機能する利用側熱交換器330を有する。
上記実施形態のパーティション1では、少なくとも空調装置300に対して電力を供給する蓄電池10を備える。パーティション1は、可搬式である。
上記実施形態のパーティション1では、第1構造体100は、上下方向を軸方向として延びる柱状形状を有する。第1構造体100は、自立支援用の脚部120を有する。
上記実施形態のパーティション1は、覚醒度把握部412と、機器制御部410と、を備える。覚醒度把握部412は、空間Saにいる人の覚醒度を把握する。機器制御部410は、覚醒度把握部412の把握した人の覚醒度に応じて、空調装置300、パーティション1に設けられている芳香物質を放出する香り放出装置30、及びパーティション1に設けられている照明装置40、の少なくとも1つを制御する。
上記実施形態のパーティション1は、通信部430と、機器制御部410と、を備える。通信部430は、空間Saにいる人に関する情報(人情報)を記憶する外部機器500と通信を行う。機器制御部410は、外部機器500から通信部430を介して受信した人情報、又は、通信部430を介して受信した外部機器500が人情報に基づいて生成した指令に基づいて、空調装置300を制御する。
上記実施形態のパーティション1では、空調装置300の気流生成部600は、空気中の塵埃を除去するフィルタ351aを含む。フィルタ351aは、ケーシング110に形成された吸込口351に設けられる。
以下に、上記実施形態の変形例を示す。変形例は、互いに矛盾しない範囲で適宜組み合わされてもよい。
上記実施形態の仕切部200は、第1状態(非使用状態)において、第1構造体100の外周に巻き回されるが、仕切部200は、第1状態において、第1構造体100の外周に巻き回されるように構成されなくてもよい。
上記実施形態のパーティション1の仕切部200は、ケーシング110に巻きつけることが可能なロール状であるが、仕切部200の形状はロール状に限定されない。
上記実施形態では、空調装置300の気流生成部600は、第1構造体100に形成された吹出口352や、第1構造体100に設けられたノズルから空気を吹き出すが、これに限定されるものではない。
上記実施形態では、パーティション1は、第1構造体100を上下方向に立てた状態で利用されるが、これに限定されるものではない。例えば、パーティション1は、図15のように、第1構造体100を水平方向に寝かせた状態で利用されてもよい。なお、第1構造体100を水平方向に寝かせた状態で利用する場合には、仕切部200の第2端部220側を支柱270で支えるように構成されることが好ましい。
上記実施形態では、パーティション1は、ヒートポンプ式の空調装置300を有するが、これに限定されるものではない。パーティション1は、空気環境調整部として、空調装置300に代えて、(加熱部や冷却部を有さない)気流生成部としてのファンを有していてもよい。ファンは、ケーシング110の外部、又は、仕切部200に設けられてもよい。
パーティション1の仕切部200の収納の態様は、例示したロール状や、蛇腹式(折りたたみ式)に限定されるものではなく、テレスコープ式等の形態であってもよい。
第2実施形態のパーティション1Dについて説明する。なお、第2実施形態のパーティション1Dは、第1実施形態のパーティションと同様での点も多いので、相違点以外の説明は、その多くを省略する。なお、パーティション1Dには、第1実施形態及びその変形例で説明したパーティションの特徴の一部又は全部を、矛盾のない範囲で適宜適用可能である。
第3実施形態のパーティション1Eについて説明する。なお、第3実施形態のパーティション1Eは、第1実施形態のパーティションと同様での点も多いので、相違点以外の説明は、その多くを省略する。なお、パーティション1Eには、第1及び第2実施形態及びその変形例で説明したパーティションの特徴の一部又は全部を、矛盾のない範囲で適宜適用可能である。
図21及び図22を参照しながら、第4実施形態のパーティション1Fについて説明する。図21は、パーティション1Fの概略斜視図である。図22は、パーティション1Fに含まれる空調装置300Fの概略構成図である。
10 蓄電池
20 人検知センサ
30 香り放出装置(放出部)
40 照明装置
100,100’,100A,100C,100D,100E,100F 第1構造体
120 脚部
200,200B,200C,200D,200E,200F 仕切部(可変型仕切部)
200a,200Ba,200Ca,200Ea 第1面
200b,200Bb,200Cb,200Eb 第2面
210,210B,210C,210D,210E 第1端部
220,220B,220C,220D,220E 第2端部
230D 空気環境調整部
232D 蓄熱部(加熱部/冷却部)
232Da 蓄熱材
280E 空気環境調整部
280Ea 冷却部
280Eb 加熱部
300,300F 空調装置(空気環境調整部)
330 利用側熱交換器(冷却部/加熱部)
342 蓄熱材
351a フィルタ
352 吹出口
357 吹出口
358 水平方向風向調節機構(風向調節機構)
359 上下方向風向調節機構(風向調節機構)
410 機器制御部(制御部)
412 覚醒度把握部
430 通信部
500 外部機器
600 気流生成部
S1 第1空間
S2 第2空間
Sa 空間(所定空間)
Sn 隣接空間
Claims (19)
- 第1構造体(100,100’,100A,100C,100D,100E,100F)と、
前記第1構造体に接続され、前記第1構造体と接続される側の第1端部(210,210B,210C,210D,210E)と前記第1端部とは遠位側の第2端部(220,220B,220C,220D,220E)とを有し、所定空間(Sa)を隣接空間(Sn)に対して仕切るように変形する可変形仕切部(200,200B,200C,200D,200E,200F)と、
前記第1構造体及び前記可変形仕切部の少なくとも一方に配置され、空気を冷却する冷却部(330,232D,280Ea)、空気を加熱する加熱部(330,232D,280Eb)、及び気流を生成する気流生成部(600)の少なくとも1つを有する空気環境調整部(300,230D,280E,300F)と、
を備えたパーティション(1,1A,1B,1C,1D,1E,1F)。 - 前記可変形仕切部は、前記第1構造体の内部に収容される、又は前記第1構造体の外周に巻き回される、又は前記第1構造体の近傍で折り畳まれる第1状態と、前記可変形仕切部を水平方向に全方位から見たときの面積の最大値が、前記第1状態に比べて大きな第2状態と、に変形可能である、
請求項1に記載のパーティション。 - 前記可変形仕切部は、形態の異なる複数の前記第2状態を取ることが可能である、
請求項2に記載のパーティション。 - 前記可変形仕切部は、第1面(200a,200Ba,200Ca,200Ea)と前記第1面とは反対側に配置される第2面(200b,200Bb,200Cb,200Eb)とを有し、
前記可変形仕切部は、前記第1面側に凸の第1形態と、前記第2面側に凸の第2形態と、を前記第2状態として取ることが可能である、
請求項3に記載のパーティション。 - 前記空気環境調整部は、前記気流生成部を少なくとも有し、
前記気流生成部は、前記可変形仕切部が前記第2状態として前記第1形態と前記第2形態とのいずれを取るかに応じて異なる気流を生成する、
請求項4に記載のパーティション。 - 前記空気環境調整部は、前記第1構造体に配置される吹出口(352)から空気を吹き出させる前記気流生成部を少なくとも有し、
前記吹出口は、前記可変形仕切部の前記第1端部の近傍に配置される、
請求項2から4のいずれか1項に記載のパーティション。 - 前記吹出口は、前記第2状態の前記可変形仕切部の表面の少なくとも一部に沿って空気を吹き出す、
請求項6に記載のパーティション。 - 前記空気環境調整部は、前記可変形仕切部に配置される吹出口(357)から空気を吹き出させる前記気流生成部を少なくとも有する、
請求項2から4のいずれか1項に記載のパーティション。 - 前記気流生成部は、風向を調節する風向調節機構(358,359)を更に有する、
請求項8に記載のパーティション。 - 前記第1構造体は、第1方向を軸方向として延びる柱状形状を有し、
前記第1方向が上下方向になるように前記第1構造体が設置される場合には、前記第2状態において、前記可変形仕切部の前記第1端部と前記第2端部とは、同一高さであって水平方向に離れた位置に配置され、
前記第1方向が水平方向になるように前記第1構造体が設置される場合には、前記第2状態において、前記可変形仕切部の前記第1端部と前記第2端部とは、異なる高さに配置される、
請求項2から9のいずれか1項に記載のパーティション。 - 前記空気環境調整部は、前記可変形仕切部の内部に第1流体を流す、
請求項1から10のいずれか1項に記載のパーティション。 - 前記第1流体は空気である、
請求項11に記載のパーティション。 - 前記冷却部(232D)及び前記加熱部(232D)の少なくとも一方は、蓄熱材(232Da)を有する、
請求項1から10のいずれか1項に記載のパーティション。 - 前記空気環境調整部は、前記第1構造体内に設けられるヒートポンプで空気を冷却する前記冷却部(330)、及び、前記第1構造体内に設けられるヒートポンプで空気を加熱する前記加熱部(330)の少なくとも一方を有し、
前記ヒートポンプで空気を冷却する際及び前記ヒートポンプで空気を加熱する際に生じる廃熱は、
A)前記廃熱が前記所定空間の温度に与える影響の小さな第1空間(S1)、又は、前記パーティションが有する人検知センサ(20)の検知結果に基づき人がいないと判断される第2空間(S2)に排熱される、
又は、
B)前記第1構造体内に設けられた蓄熱材(342)に蓄熱される、
請求項1から12のいずれか1項に記載のパーティション。 - 前記空気環境調整部に対して電力を供給する蓄電池(10)を更に備え、
前記パーティションは可搬式である、
請求項1から14のいずれか1項に記載のパーティション。 - 前記第1構造体は、上下方向を軸方向として延びる柱状形状を有し、
前記第1構造体は、自立支援用の脚部(120)を有する、
請求項1から9のいずれか1項に記載のパーティション。 - 前記所定空間にいる人の覚醒度を把握する覚醒度把握部(412)と、
前記覚醒度把握部の把握した前記人の覚醒度に応じて、前記空気環境調整部(300,280E)、前記パーティションに設けられている芳香物質を放出する放出部(30)、及び前記パーティションに設けられている照明装置(40)、の少なくとも1つを制御する制御部(410)と、
を更に備える、
請求項1から16のいずれか1項に記載のパーティション。 - 前記所定空間にいる人に関する情報を記憶する外部機器(500)と通信を行う通信部(430)と、
前記外部機器から前記通信部を介して受信した前記所定空間にいる人に関する情報、又は、前記通信部を介して受信した前記外部機器が前記所定空間にいる人に関する情報に基づいて生成した指令に基づいて、前記空気環境調整部を制御する制御部(410)と、
を更に備える、
請求項1から16のいずれか1項に記載のパーティション。 - 前記気流生成部は、空気中の塵埃を除去するフィルタ(351a)を含む、
請求項1から18のいずれか1項に記載のパーティション。
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| JP2021173013A (ja) * | 2020-04-22 | 2021-11-01 | パナソニック株式会社 | パーティション |
| WO2021234770A1 (ja) * | 2020-05-18 | 2021-11-25 | 三菱電機株式会社 | 制御システム、設備機器システム及び設備機器の制御方法 |
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| JP7686506B2 (ja) * | 2020-10-06 | 2025-06-02 | 協立エアテック株式会社 | 空気清浄装置及びこれを用いた空気清浄システム |
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| KR200496560Y1 (ko) * | 2021-12-23 | 2023-02-24 | 임종섭 | 발열 칸막이 패널 |
| US11940168B2 (en) * | 2022-03-25 | 2024-03-26 | Motorola Mobility Llc | Device with optical heart rate sensor and corresponding methods |
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| CN112639231B (zh) | 2022-01-11 |
| EP3845717A1 (en) | 2021-07-07 |
| JP2020033865A (ja) | 2020-03-05 |
| CN112639231A (zh) | 2021-04-09 |
| EP3845717B1 (en) | 2026-03-18 |
| US11137150B2 (en) | 2021-10-05 |
| EP3845717A4 (en) | 2022-05-11 |
| AU2019326971A1 (en) | 2021-04-08 |
| US20210247078A1 (en) | 2021-08-12 |
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| AU2019326971B2 (en) | 2022-02-24 |
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