NL2005384C2 - Cooker hood and method of ventilating a kitchen. - Google Patents

Cooker hood and method of ventilating a kitchen. Download PDF

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Publication number
NL2005384C2
NL2005384C2 NL2005384A NL2005384A NL2005384C2 NL 2005384 C2 NL2005384 C2 NL 2005384C2 NL 2005384 A NL2005384 A NL 2005384A NL 2005384 A NL2005384 A NL 2005384A NL 2005384 C2 NL2005384 C2 NL 2005384C2
Authority
NL
Netherlands
Prior art keywords
air
air inlet
inlet
outlet
hood
Prior art date
Application number
NL2005384A
Other languages
Dutch (nl)
Inventor
Willem Andreas Pieter Bruggen
Erwin Cornelis Johannes Slappendel
Jan Willem Dik
Original Assignee
Intell Properties B V
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Intell Properties B V filed Critical Intell Properties B V
Priority to NL2005384A priority Critical patent/NL2005384C2/en
Priority to EP11767479.6A priority patent/EP2619508B1/en
Priority to PCT/NL2011/050643 priority patent/WO2012039618A1/en
Application granted granted Critical
Publication of NL2005384C2 publication Critical patent/NL2005384C2/en

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24CDOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
    • F24C15/00Details
    • F24C15/20Removing cooking fumes
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F7/00Ventilation
    • F24F7/04Ventilation with ducting systems, e.g. by double walls; with natural circulation
    • F24F7/06Ventilation with ducting systems, e.g. by double walls; with natural circulation with forced air circulation, e.g. by fan positioning of a ventilator in or against a conduit

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Ventilation (AREA)

Description

Cooker hood and method of ventilating a kitchen
The invention relates to a cooker hood and a method of ventilating a room using such a cooker hood. It more specifically relates to a cooker hood connectable to a 5 central mechanical ventilation (CMV) system.
Cooker hoods which are connectable to a central mechanical ventilation (CMV) system are known. The capacity of these cooker hoods is limited by the capacity of the CMV system. To improve the capacity, so-called hybrid cooker hoods are designed, 10 which comprise their own mechanical ventilation fan. A problem with these cooker hoods may be that once the mechanical fan is activated, it produces an air flow that cannot be handled by the CMV. This problem is solved by a cooker hood described in patent publication WO 2007/003757 which describes a cooker hood having a separate outlet at the top of the hood for letting out an air flow produced by the fan. The air flow 15 produces by the fan is separated from an air flow generated by a CMV. In this way, part of the exhaust air is re-circulated into the kitchen. The cooker hood comprises several valves for guiding the air flows depending on the mode of operation. If the fan is off, the outlet for re-circulating air is closed and another valve is moved to open a channel to the connected CMV system. It is believed that in this mode of operation a filter present at a 2 0 central region of the hood is cleaned by the less polluted air going through the filter during periods of non-cooking. The disadvantage of this hood is that the mechanical valve may get polluted by grease and filth and will limit the life time of the hood considerably. Furthermore, the filter is used to clean the air in both operating modes. This means that the filter cannot be too thick because the CMV must be able to suck air 2 5 through this filter in the non-cooking situation.
It is the object of the present invention to provide a cooker hood which solves at least one of the above mentioned problems.
This object is achieved by providing a cooker hood for ventilating a room, the hood comprising a first and second air inlet, a first air outlet for connecting the hood to a 30 channel of a central mechanical ventilation system, and a second air outlet for recirculation air into the room. Furthermore the hood comprises a first exhaust channel for leading air from the first air inlet to the first air outlet and a second exhaust channel for leading air from the second air inlet to the second air outlet. A fan is arranged in the 2 second exhaust channel for creating a flow through the second exhaust channel. The first and second air inlet are arranged at a bottom side of the cooker hood and the first air inlet covers a central area of the bottom and the second air inlet covers a perimeter area of the bottom.
5 The cooker hood according to the invention uses two separate channels for exhausting air by means of the CMV and by exhausting air by means of the fan. In this way two air flows are generated leading to a maximal exhaust of air without an overcapacity problem and without the need of moving valves and without disturbing the CMV system.
10 Furthermore, by arranging the second air inlet at a perimeter of the bottom area it is able to enhance and/or guide the air flow created by the CMV going through the central inlet. So before entering the hood, the fan generated air flow enhances the air flow of the CMV underneath the cooker hood.
In an embodiment the second air inlet is arranged at least partly around the first air 15 inlet. In this way it creates an air barrier which prevents air and gasses underneath the cooker hood at the mid region from escaping. This results in an optimal way of ventilating.
In an embodiment the first exhaust channel comprises an inlet filter arranged at the first air inlet. This filter prevents the CMV system from getting polluted with grease 2 0 and moisture.
In a further embodiment the second exhaust channel comprises a further inlet filter arranged at the second air inlet. This further inlet filter prevents the recirculation system from getting polluted with grease and moisture.
In an embodiment the second exhaust channel comprises an outlet filter arranged 25 at the second air outlet. As a result the air will be cleaned from moisture and odour before it is recirculated.
In an embodiment the first air inlet is substantially rectangular and the second air inlet is substantially U-shaped, said U-shaped second inlet at least partly surrounding the substantially rectangular shaped first inlet.
30 The invention also relates to a method of ventilating a room, such as a kitchen, using a cooker hood as described above.
3
Further details and advantages of the present invention will become clear to the reader after reading the description of the embodiments described below with reference to the accompanying drawings, in which:
Figure 1 schematically shows a cooker hood 1 according to an embodiment of the 5 invention;
Figure 2 is a schematic cross section of the cooker hood 1 of Figure 1;
Figure 3 shows a cut-out view of the embodiment of Figure 1 showing the components of the cooker hood from a different perspective;
Figure 4 shows a bottom view of the embodiment of Figure 1.
10
Figure 1 schematically shows a cooker hood 1 according to an embodiment of the invention. The cooker hood 1 comprises a box shaped housing 2 and a u-shaped wall 3 surrounding a duct 4. At the top of the duct 4 a first outlet 5 is shown which can be connected to a channel of a central mechanical ventilation (CMV) system, not shown. In 15 the wall 3 a second air outlet 5 is arranged in the form of a plurality of slots. At an opposite side of the cooker hood similar slots are present, not visible in Figure 1.
Figure 2 is a schematic cross section of the cooker hood 1 of Figure 1. Figure 2 shows an inlet filter 10 through which air will be drawn into the duct 4 by the CMV. Behind the duct 4 a fan 12 is installed for re-circulating air back into the kitchen. The re-20 circulated air enters the hood 1 via an inlet 13. Next, it reaches an inlet filter 14. The air is then sucked by way of the fan 12 upwards into a channel compartment before it reaches an outlet filter 16. Finally it passes through the air outlet slots 7 and is recirculated into the kitchen. In Figure 2 the recirculated air is indicated by small arrows indicating the direction of the air flow. The larger arrows indicate the air flow going via 2 5 the CMV channel.
According to the invention, the cooker hood 1 comprises two separate exhaust channels; a first exhaust channel for leading air from the first air inlet 10 to the first air outlet 5, also called the CMV outlet 5, and a second exhaust channel for leading air from the second air inlet 13 to the second air outlet 7 for recirculation.
30 Figure 3 shows a cut-out view of the embodiment of Figure 1 showing the components of the cooker hood from a different perspective. The inlet filters 10 and 14 may be grease filters made out of aluminium or the like. The outlet filter 16 in the 4 recirculation channel may be an odour filter comprising for example active carbon. The location of the outlet filter can differ from the location stated in the pictures.
Figure 4 shows a bottom view of the embodiment of Figure 1. As can be seen in this view, the air inlet 10 for leading air to the CMV is arranged as a rectangular area at 5 a central part of the bottom of the hood 1. The air inlet 13 for the re-circulated air is arranged at a perimetral part of the bottom of the hood 1. An arrow 20 shows the back side of the cooker hood 1 which is normally in contact with a wall. In this embodiment the air inlet 13 is a u-shaped slot arranged along three edges of the bottom of the hood 1, i.e. the two side edges and the front edge. As can bee seen, the u-shaped slot 13 is 10 spaced from the outer ends of the box shaped housing 2. Typical values for the distance between the outer ends and the slot 13 are between 5-20 cm. Other values are possible.
Instead of a slot at three edges, a slot is conceivable along all four sides of the bottom of the hood. In that case the slot may be a rectangular slot completely 15 surrounding the CMV air inlet 10. In the embodiment of Figure 4, the CMV air inlet 10 is covering approximately half of the region defined by the surrounding slot 13. I should be noted that the CMV air inlet 10 can be as large as to cover almost the complete enclosed region. However, if the CMV air inlet 10 is chosen too large, the velocity of the air through the CMV inlet may be too low. So, depending on the ventilation system 2 0 present, the dimensions of the CMV channel and the ventilation criteria in the kitchen, the air inlet will have an optimal dimension. The form of the CMV air inlet 10 does not need to be rectangular, other shapes are possible such as oval.
The cooker hood according to the invention can be operated in two modes. If the fan 12 is off, the air is ventilated through the first channel towards the CMV. In this 2 5 situation, the kitchen is ventilated via the cooker hood. The cooker hood will exhaust air and gasses coming from a cooking stove underneath the hood. If the produced gasses or smoke increases, the fan can be turned on to increase the capacity of the cooker hood. Preferably, the fan can be operated in several modes, such as low, medium, high, and as already mentioned above: 5ffD
30 If the fan is turned on, the air is exhausted through both the channels. Underneath the cooker hood 1, air will flow at different rates depending on the region under the hood, and depending on the operating state of the fan 12.
5
When the fan 12 is fully operating, an air barrier is created at the edges of the cooker hood 1. In Figure 4 the air barrier is indicated by small arrows indicating the direction of the air flow of the recirculated air. The larger arrows indicate the air flow going via the CMV channel. The air barrier itself exhausts air through the filters 14 and 5 16 so as to recirculate cleaned air back into the kitchen. Furthermore, the air barrier prevents air and gasses underneath the cooker hood at the mid region from escaping. Since the CMV air inlet 10 is continuously extracting air from underneath the cooker hood, an air column defined by the barrier, is exhausted to the CMV. This air column comprises relatively more grease and smoke the air in the air barrier since it originates 10 from pots and pans on the cooking stove which normally is aligned with the cooker hood 1. So the most polluted air is exhausted to the CMV which will blow the air outside. The less polluted air will pass the filter 16 and will be re-circulated. By re-circulating the air entering the hood via the inlet 13, a significant amount of energy is saved as compared to a hood that fully exhaust directly to the outside. Furthermore, the capacity of the hood 15 is significant more than that of a hood that fully exhausts towards a CMV system.
The cooker hood according to the invention comprises two separate channels which have their own mode of operation and their own function. No valves are needed for leading air flows in different ways to different channels and outlets. This will make 2 0 the configuration as such more robust.
Furthermore, the system works independently of the capacity of the CMV system and the capacity of the CMV system can be fully used.
It is emphasized that the present invention can be varied in many ways, of which 25 the alternative embodiments as presented are just a few examples. These different embodiments are hence non-limiting examples. The scope of the present invention, however, is only limited by the subsequently following claims.

Claims (7)

1. Afzuigkap (1) voor het ventileren van een vertrek omvattende: - een eerste luchtinlaat (10) en een tweede luchtinlaat (13); 5. een eerste luchtuitlaat (5) voor het verbinden van de afzuigkap met een kanaal van een centraal mechanisch ventilatiesysteem; - een tweede luchtuitlaat (7) voor het recirculeren van lucht in het vertrek; - een eerste uitlaatkanaal voor het leiden van lucht vanuit de eerste lichtinlaat naar de eerste lichtuitlaat; 10. een tweede uitlaatkanaal voor het leiden van lucht vanuit de tweede luchtinlaat naar de tweede luchtuitlaat; - een ventilator (12) aangebracht in het tweede uitlaatkanaal voor het creëren van een luchtstroom door het tweede uitlaatkanaal, waarbij de eerste en tweede luchtinlaat zijn ingericht aan een onderzijde van de 15 afzuigkap en waarbij de eerste luchtinlaat een centraal gebied van de onderzijde bestrijkt en de tweede luchtinlaat een omtreksgebied van de onderzijde bestrijkt.An extractor hood (1) for ventilating a room comprising: - a first air inlet (10) and a second air inlet (13); 5. a first air outlet (5) for connecting the extractor hood to a channel of a central mechanical ventilation system; - a second air outlet (7) for recirculating air in the room; - a first outlet channel for directing air from the first light inlet to the first light outlet; 10. a second outlet channel for directing air from the second air inlet to the second air outlet; - a fan (12) arranged in the second outlet channel for creating an air flow through the second outlet channel, wherein the first and second air inlet are arranged on a bottom side of the extractor hood and wherein the first air inlet covers a central area of the bottom side and the second air inlet covers a peripheral area from the bottom. 2. Afzuigkap volgens conclusie 1, waarbij de tweede lichtinlaat ten minste gedeeltelijk om de eerste luchtinlaat is ingericht. 202. Extractor hood as claimed in claim 1, wherein the second light inlet is arranged at least partially around the first air inlet. 20 3. Afzuigkap volgens één of meer van de voorgaande conclusies, waarbij het eerste uitlaatkanaal een inlaatfilter omvat dat is ingericht bij de eerste luchtinlaat.3. Extractor hood as claimed in one or more of the foregoing claims, wherein the first outlet channel comprises an inlet filter which is arranged at the first air inlet. 4. Afzuigkap volgens één of meer van de voorgaande conclusies, waarbij het 25 tweede uitlaatkanaal een verdere inlaatfilter omvat dat is ingericht bij de tweede luchtinlaat.4. Extractor hood as claimed in one or more of the foregoing claims, wherein the second outlet channel comprises a further inlet filter which is arranged at the second air inlet. 5. Afzuigkap volgens één of meer van de voorgaande conclusies, waarbij het tweede uitlaatkanaal een uitlaatfilter omvat dat is ingericht bij de tweede luchtuitlaat. 305. Extractor hood as claimed in one or more of the foregoing claims, wherein the second outlet channel comprises an outlet filter arranged at the second air outlet. 30 6. Afzuigkap volgens één of meer van de voorgaande conclusies, waarbij de eerste luchtinlaat in hoofdzaak rechthoekig is en de tweede luchtinlaat in hoofdzaak U vormig is, waarbij de U-vormige tweede luchtinlaat ten minste gedeeltelijk de in hoofdzaak rechthoekige eerste luchtinlaat omsluit.6. Extractor hood as claimed in one or more of the foregoing claims, wherein the first air inlet is substantially rectangular and the second air inlet is substantially U-shaped, the U-shaped second air inlet at least partially enclosing the substantially rectangular first air inlet. 7. Werkwijze voor het ventileren van een ruimte, zoals een keuken, met behulp 5 van een afzuigkap volgens één of meer van de voorgaande conclusies.7. Method for ventilating a room, such as a kitchen, with the aid of an extractor hood according to one or more of the preceding claims.
NL2005384A 2010-09-23 2010-09-23 Cooker hood and method of ventilating a kitchen. NL2005384C2 (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
NL2005384A NL2005384C2 (en) 2010-09-23 2010-09-23 Cooker hood and method of ventilating a kitchen.
EP11767479.6A EP2619508B1 (en) 2010-09-23 2011-09-23 Cooker hood and method of ventilating a kitchen
PCT/NL2011/050643 WO2012039618A1 (en) 2010-09-23 2011-09-23 Cooker hood and method of ventilating a kitchen

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
NL2005384 2010-09-23
NL2005384A NL2005384C2 (en) 2010-09-23 2010-09-23 Cooker hood and method of ventilating a kitchen.

Publications (1)

Publication Number Publication Date
NL2005384C2 true NL2005384C2 (en) 2012-03-26

Family

ID=44077860

Family Applications (1)

Application Number Title Priority Date Filing Date
NL2005384A NL2005384C2 (en) 2010-09-23 2010-09-23 Cooker hood and method of ventilating a kitchen.

Country Status (3)

Country Link
EP (1) EP2619508B1 (en)
NL (1) NL2005384C2 (en)
WO (1) WO2012039618A1 (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108194957A (en) * 2018-01-28 2018-06-22 昆山富凌能源利用有限公司 A kind of range hood being wholely set with kitchen range

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE1454643A1 (en) * 1964-06-11 1969-03-20 Siemens Elektrogeraete Gmbh Extractor hood
FR2131064A5 (en) * 1971-03-31 1972-11-10 Coste Caumartin Ets
EP1180648A1 (en) * 2000-08-09 2002-02-20 Aldes Aeraulique Motorized extracting hood for kitchen
WO2007003757A1 (en) * 2005-07-01 2007-01-11 Aldes Aeraulique Device for ventilating a kitchen and ventilating motorized hood

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE1454643A1 (en) * 1964-06-11 1969-03-20 Siemens Elektrogeraete Gmbh Extractor hood
FR2131064A5 (en) * 1971-03-31 1972-11-10 Coste Caumartin Ets
EP1180648A1 (en) * 2000-08-09 2002-02-20 Aldes Aeraulique Motorized extracting hood for kitchen
WO2007003757A1 (en) * 2005-07-01 2007-01-11 Aldes Aeraulique Device for ventilating a kitchen and ventilating motorized hood

Also Published As

Publication number Publication date
EP2619508B1 (en) 2018-11-28
WO2012039618A1 (en) 2012-03-29
EP2619508A1 (en) 2013-07-31

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Effective date: 20191001