WO2014124514A1 - Method and apparatus for installing and removing a flow restrictor from a differential pressure measurement device - Google Patents
Method and apparatus for installing and removing a flow restrictor from a differential pressure measurement device Download PDFInfo
- Publication number
- WO2014124514A1 WO2014124514A1 PCT/CA2013/050117 CA2013050117W WO2014124514A1 WO 2014124514 A1 WO2014124514 A1 WO 2014124514A1 CA 2013050117 W CA2013050117 W CA 2013050117W WO 2014124514 A1 WO2014124514 A1 WO 2014124514A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- seal
- opening
- fitting
- flow restrictor
- channel
- 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.)
- Ceased
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23P—METAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
- B23P17/00—Metal-working operations, not covered by a single other subclass or another group in this subclass
- B23P17/04—Metal-working operations, not covered by a single other subclass or another group in this subclass characterised by the nature of the material involved or the kind of product independently of its shape
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01F—MEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
- G01F1/00—Measuring the volume flow or mass flow of fluid or fluent solid material wherein the fluid passes through a meter in a continuous flow
- G01F1/05—Measuring the volume flow or mass flow of fluid or fluent solid material wherein the fluid passes through a meter in a continuous flow by using mechanical effects
- G01F1/34—Measuring the volume flow or mass flow of fluid or fluent solid material wherein the fluid passes through a meter in a continuous flow by using mechanical effects by measuring pressure or differential pressure
- G01F1/36—Measuring the volume flow or mass flow of fluid or fluent solid material wherein the fluid passes through a meter in a continuous flow by using mechanical effects by measuring pressure or differential pressure the pressure or differential pressure being created by the use of flow constriction
- G01F1/40—Details of construction of the flow constriction devices
- G01F1/42—Orifices or nozzles
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01F—MEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
- G01F15/00—Details of, or accessories for, apparatus of groups G01F1/00 - G01F13/00 insofar as such details or appliances are not adapted to particular types of such apparatus
- G01F15/005—Valves
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01L—MEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
- G01L13/00—Devices or apparatus for measuring differences of two or more fluid pressure values
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01F—MEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
- G01F15/00—Details of, or accessories for, apparatus of groups G01F1/00 - G01F13/00 insofar as such details or appliances are not adapted to particular types of such apparatus
- G01F15/14—Casings, e.g. of special material
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01F—MEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
- G01F15/00—Details of, or accessories for, apparatus of groups G01F1/00 - G01F13/00 insofar as such details or appliances are not adapted to particular types of such apparatus
- G01F15/18—Supports or connecting means for meters
-
- 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
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T137/00—Fluid handling
- Y10T137/0318—Processes
- Y10T137/0402—Cleaning, repairing, or assembling
- Y10T137/0491—Valve or valve element assembling, disassembling, or replacing
-
- 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
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T137/00—Fluid handling
- Y10T137/598—With repair, tapping, assembly, or disassembly means
- Y10T137/6109—Tool for applying or removing valve or valve member
- Y10T137/6113—Including sealing feature
Definitions
- This relates to an orifice fitting having a double block and bleed.
- Orifices plates are often used in flow lines to create a differential pressure, which is measured and used to calculate the flow rate through the pipeline. When removing the orifice plate from the flow line, care must be taken when the flow line is pressurized.
- Patent publication no. WO2012/120158 Patent publication no. WO2012/120158 (Pila Gonzalez et al.) entitled “Double Closure For Double- Chamber Differential Pressure Measurement Device” describes a device intended to allow the plate to be removed without interrupting flow through the flow line.
- an apparatus for installing and removing a flow restrictor from a differential pressure measurement device comprising a fitting connected in line with a fluid line, the fitting having a fitting opening for receiving the flow restrictor and a receptacle for retaining the flow restrictor.
- the apparatus comprises a seal housing extending away from the fitting opening of the fitting, the seal housing being sealed to the fitting opening of the fitting.
- the seal housing has a housing opening spaced from the fitting opening of the fitting and a channel connecting the housing opening to the fitting opening.
- the seal housing comprises a first seal that seals the fitting opening, a second seal spaced from the first seal along the channel, and a third seal that seals the housing opening, the distance between the second seal and the third seal being greater than the height of the flow restrictor in the direction of the channel that seals the housing opening, each of the first, second and third seals being selectively retractable between an extended, sealing position that seals and blocks the channel and a retracted, open position that unseals and unblocks the channel.
- a bleeder valve is positioned between the first and second seals and between the second and third seals for equalizing pressure between the channel and an exterior pressure.
- a series of rotating drivers is spaced along the channel, the rotating drives engaging the flow restrictor and moving the flow restrictor along the channel between the receptacle in the fitting and the housing opening of the seal housing.
- the flow restrictor may be an orifice plate.
- the channel may be a longitudinal channel that is sized to receive the width and thickness of the orifice plate.
- At least the first seal and the second seal may be retracted using a rotating actuator.
- At least one of the first seal and the second seal may be locked in the sealed position by a releasable lock.
- each rotating driver may comprise a profile that engages a corresponding profile on the flow restrictor.
- the series of rotating drivers may comprise a first rotating driver positioned between the first seal and the fitting opening of the fitting, a second rotating driver positioned between the first seal and the second seal, and a third rotating driver positioned between the second seal and the third seal.
- the apparatus may further comprise a first equalizer valve for equalizing pressure across the first seal and a second equalizer valve for equalizing pressure across the second seal.
- the apparatus may further comprise pressure gauges between the first and second seals and between the second and third seals for measuring the pressure in the channel.
- the third seal may be a seal bar clamped by pin connectors at the housing opening of the seal housing.
- the flow restrictor may comprise an orifice plate carried by a plate carrier.
- a method of removing a flow restrictor from a differential pressure measurement device comprising a fitting connected in line with a fluid line, the fitting having a receptacle retaining the flow restrictor and a fitting opening that provides access to the flow restrictor.
- the method comprises the steps of: providing a seal housing extending away from the fitting opening of the fitting, the seal housing being sealed to the fitting opening of the fitting and having a housing opening spaced from the fitting opening of the fitting and a channel connecting the housing opening to the fitting opening, the channel having a first seal, a second seal and a third seal spaced along the channel in a sealed position and a series of rotating drivers spaced along the channel; moving the first and second seals from the sealed position to an open, retracted position; moving the flow restrictor from the receptacle along the channel toward the third seal; moving the first and second seals to the sealed position and opening bleeder valves between the first and second seals and between the second and third seals to equalize the pressure in the channel and outside the channel; and opening the third seal and removing the flow restrictor from the channel.
- the method may further comprise the step of closing the second and third seals after removing the flow restrictor.
- the flow restrictor may be an orifice plate.
- the channel may be a longitudinal channel that is sized to receive the width and thickness of the orifice plate.
- At least one of the first seal and the second seal may be retracted and extended using a rotating actuator.
- the method may further comprise the step of releasing a releasable lock on at least one of the first seal and the second seal prior to retracting the respective seal from the sealed position.
- the rotating drivers comprise a profile that engages a corresponding profile on the flow restrictor.
- the series of rotating drivers may comprise a first rotating driver positioned between the first seal and the fitting opening of the fitting, a second rotating driver positioned between the first seal and the second seal, and a third rotating driver positioned between the second seal and the third seal.
- the method may further comprise the steps of opening a first equalizer valve that equalizes pressure across the first seal and a second equalizer valve that equalizes pressure across the second seal prior to opening the first and second seals
- opening the third seal may comprise releasing pin connectors that secure a seal bar at the housing opening of the seal housing.
- the method may further comprising reinstalling the flow restrictor by: moving the first and second seals to the sealed position; opening the third seal and inserting the flow restrictor into the channel; moving the flow restrictor down the channel past the third seal and closing the third seal; and opening the first and second seals and moving the flow restrictor into the receptacle of the fitting.
- the method may further comprise the step of opening a first equalizer valve that equalizes pressure across the first seal and a second equalizer valve that equalizes pressure across the second seal prior to opening the first and second seals prior to opening the first and second seals prior to moving the flow restrictor into the receptacle of the fitting.
- FIG. 1 is a side elevation view of the apparatus for installing and removing a flow restrictor from a differential pressure measurement device.
- FIG. 2 is a side elevation view in section of the apparatus with the flow restrictor installed in a differential pressure measurement device.
- FIG. 3 is an end elevation view in section of the apparatus with the flow restrictor installed in a differential pressure measurement device.
- FIG. 4 is a side elevation view in section of the apparatus with the flow restrictor at the top of the channel and the lower two seals open.
- FIG. 5 is an end elevation view in section of the apparatus with the flow restrictor at the top of the channel and the lower two seals open.
- FIG. 6 is an end elevation view in section of the apparatus with the flow restrictor at the top of the channel and the lower two seals closed.
- FIG. 7 is an end elevation view in section of the apparatus with the flow restrictor being removed.
- differential pressure measurement device 100 has a fitting 102 connected in line with a fluid line (not shown).
- Fitting 102 is shown as having a flange 103 at one end to be attached to a fluid line.
- the manner in which fitting 102 may be installed with a fluid line is well known in the art and will not be described further.
- Fitting 102 has a fitting opening 104 for receiving a flow restrictor 106 and a receptacle 108 for retaining flow restrictor 106.
- Fitting opening 104 is located in the sidewall of fitting 102, such that flow restrictor 106 is inserted through fitting opening 104 in a direction that is perpendicular to the direction of flow through fitting 102.
- flow restrictor 106 is an orifice plate that is rectangular and that has an aperture 112. The plate of flow restrictor 106 is oriented perpendicular to the direction of flow through fitting 102, such that the flow passes through aperture 112.
- Flow restrictor 106 is held by receptacle 108 such that aperture 112 is preferably centered within the inner bore of fitting 102 and may be adjusted by alignment pins 110 set in fitting 102 to ensure aperture 112 is properly positioned.
- Aperture 112 results in a pressure differential across flow restrictor 106, which may then be used to calculate the flow rate through the fluid line as is known in the art.
- the various designs and uses of differential pressure measurement devices 100 are known in the art and will not be discussed further. While the present description relates to a common design, it will be understood that modifications to what is shown and described may be used.
- apparatus 10 includes a seal housing 12 that extends away from fitting opening 104 of fitting 102.
- Seal housing 12 is sealed to fitting opening 104 of fitting 102 and has a housing opening 16 spaced from fitting opening 104 of fitting 102.
- a channel 18 connects fitting opening 104 to housing opening 16.
- channel 18 is a longitudinal channel that is sized to receive the width and thickness of the orifice plate, however it will be understood that channel 18 may be altered to accommodate different types of flow restrictors.
- seal housing 12 is actually made from three sections labelled 12a, 12b and 12c, where seal housing 12 is sealed to fitting opening 104 by integrally forming seal housing section 12a with fitting 102. Sections 12b and 12c are shows as being bolted together and onto section 12a. Alternatively, section 12a may be a separate piece and sealed to fitting opening 104 in another manner. Other modifications may be made by those skilled in the art.
- Seal housing 12 has a first seal 20 that seals fitting opening 104, a second seal 22 spaced from first seal 20 along channel 18, and a third seal 24 that seals housing opening 16.
- third seal 24 is a seal bar that is clamped by pin connectors 25 at housing opening 16 of seal housing 12. Third seal 24 can then be undamped and removed from housing opening 16 to provide access to channel 18.
- the distance between first seal 20 and third seal 24 is greater than the height of flow restrictor 106, measured in the direction of channel 18, such that flow restrictor 106 may be isolated from atmosphere (or other external pressure if not working at atmospheric pressure) and from the pressure in fitting 102.
- each seal 20, 22 and 24 is selectively retractable between an extended, sealing position shown in FIG. 3 and retracted, open positions variously shown in FIG. 5 - 7 that unseals and unblock channel 18. In the unblocked positions, seals 20, 22 and 24 permit flow restrictor 106 to move along channel 18 unhindered by the respective seals.
- first seal 20 and second seal 22 are retractable using rotating actuators 36 and 38, respectively.
- a releasable lock 39 may lock seal 20, 22 or 24 in the sealed position. Multiple locks may be provided to enable each of first seal 20, second seal 22 and third seal 24 to be locked individually.
- first seal 20 and second seal 22 may be sealed using a valve sealant grease compound injected by a grease gun 27 shown in FIG. 1. Valve sealant grease compound is injected through by the grease gun 27 and injected between the surfaces of a valve seat and valve strip where seals 20 and 22 reside. The grease gun 27 may not be necessary where elastomer o-rings are embedded into the valve seat.
- first driver 26 positioned below first seal 20
- second driver 28 positioned between first and second seals 20 and 22
- third driver 30 positioned between second and third seals 22 and 24.
- Drivers 26, 28 and 30 engage flow restrictor 106 in turn to move flow restrictor 106 along channel 18 between receptacle 108 in fitting 102 and housing opening 16 of seal housing 12.
- each of first driver 26, second driver 28 and third driver 30 have a profile 29 that engages a corresponding profile 114 on flow restrictor 106.
- Channel 18 may be considered to be the space along which flow restrictor 106 passes, or in other words, the opening provided by seals in the open position and the plate carriers. While in some examples the physical dimensions of the channel may be larger at certain points above or below each respective seal or plate carrier, the channel itself may be considered the space required to move the flow restrictor.
- housing opening 16 is preferably directly in line with channel 18 and seal opening 104, such that flow restrictor 106 moves directly from an installed position to a removed position.
- bleeder valves 32 and equalizer valves 34 are preferably used to equalize the pressure as flow restrictor 106 passes through seal housing 12. As shown, there is a bleeder valve 32 in fluid communication with the compartment formed by first seal 20 and second seal 22, as well as a bleeder valve 32 in communication with the compartment formed by second seal 22 and third seal 24. Bleeder valves 32 allow the pressure in seal housing 12 held by the respective seals to be slowly released prior to opening third seal 24. As shown, equalizer valves 34 are provided in conjunction with first and second seals 20 and 22. These valves permit pressure to be equalized across each seal 20 and 22, such that when they are opened, the risk of damage due to a pressure differential or sudden pressure drop is reduced.
- equalizer valve 34 carried by first seal 20 may be opened to equalize the pressure between first and seconds seals 20 and 22 or first and third seals 20 and 24 with the pressure in fitting 102 prior to opening first seal 20.
- Pressure gauges 40 are preferably incorporated to measure the pressure in channel 18.
- a pressure gauge be positioned to measure the pressure in the compartment formed by first seal 20 and second seal 22 and a second pressure gauge 40 positioned to measure the pressure in the compartment formed by second seal 22 and third seal 24.
- the triple chamber orifice fitting provides the operator with a second layer of safety over the dual chamber orifice fitting during the inspection and/or removal of the orifice plate. While the operator has the top chamber open to atmosphere for access to the orifice plate, the pressure is being blocked by the lower inner valve. Should this lower valve leak, with the mid chamber bleeder valve open, the pressure can build up stopping the possibility of a leak into the upper chamber. As can be seen, when the seal bar 24 is removed to remove the flow restrictor 106, the first seal 20 and the second seal 22 are closed and the bleeder valve 32 in the compartment created between first seal 20 and second seal 22 is open to bleed off any leaking through bleeder valve 32.
- the bleeder valve 32 may be open to atmosphere or to a fluid reservoir with a lower pressure. Either of these may be considered an external pressure. This design protects the operator during orifice plate removal against coming into contact with any gas pressure release.
- FIG. 1 through 7 An example of the operation of apparatus 10 will now be described with reference to FIG. 1 through 7. The steps outlined below are given as an example of a safe method, based on the design of the example shown in the drawings. It will be understood that the operation may be modified based on the preferences of the user and the particular design of apparatus 10.
- Apparatus 10 is in normal operation when, as shown in FIG. 1 and 2, orifice plate is concentric in the flow line, both the lower and upper inner valves are closed, the two equalizer valves are closed, the bleeder valves are closed, the middle and upper chambers are depressurized and the lower chamber is pressurized. Flow of the gas or liquid passing through the orifice plate creates the differential pressure which is measured and used for the calculation of the flow rate through the pipe line.
- flow restrictor 106 is made up of an orifice plate carried by a plate carrier, which has a seal that engages receptacle 108.
- drivers 26, 28 and 30 are operating gears, and are positioned within the chambers defined by the seals as described above.
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- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Fluid Mechanics (AREA)
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Measuring Fluid Pressure (AREA)
- Infusion, Injection, And Reservoir Apparatuses (AREA)
- Sliding Valves (AREA)
- Safety Valves (AREA)
- Flow Control (AREA)
Abstract
Description
Claims
Priority Applications (10)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| MYPI2015702623A MY183270A (en) | 2013-02-15 | 2013-02-15 | Method and apparatus for installing and removing a flow restrictor from a differential pressure measurement device |
| MX2015010533A MX360714B (en) | 2013-02-15 | 2013-02-15 | Method and apparatus for installing and removing a flow restrictor from a differential pressure measurement device. |
| US14/760,495 US9527171B2 (en) | 2013-02-15 | 2013-02-15 | Method and apparatus for installing and removing a flow restrictor from a differential pressure measurement device |
| BR112015019556-3A BR112015019556B1 (en) | 2013-02-15 | 2013-02-15 | method and apparatus for installing and removing a flow limiter from a differential pressure measuring device |
| SG11201505476SA SG11201505476SA (en) | 2013-02-15 | 2013-02-15 | Method and apparatus for installing and removing a flow restrictor from a differential pressure measurement device |
| CN201380072995.6A CN104995488B (en) | 2013-02-15 | 2013-02-15 | Method and apparatus for installing and removing a flow restrictor from a differential pressure measurement device |
| CA2897226A CA2897226C (en) | 2013-02-15 | 2013-02-15 | Method and apparatus for installing and removing a flow restrictor from a differential pressure measurement device |
| ES13875119.3T ES2674354T3 (en) | 2013-02-15 | 2013-02-15 | Method and apparatus for installing and removing a flow restrictor from a differential pressure measuring device |
| EP13875119.3A EP2956747B1 (en) | 2013-02-15 | 2013-02-15 | Method and apparatus for installing and removing a flow restrictor from a differential pressure measurement device |
| PCT/CA2013/050117 WO2014124514A1 (en) | 2013-02-15 | 2013-02-15 | Method and apparatus for installing and removing a flow restrictor from a differential pressure measurement device |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/CA2013/050117 WO2014124514A1 (en) | 2013-02-15 | 2013-02-15 | Method and apparatus for installing and removing a flow restrictor from a differential pressure measurement device |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2014124514A1 true WO2014124514A1 (en) | 2014-08-21 |
Family
ID=51353441
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CA2013/050117 Ceased WO2014124514A1 (en) | 2013-02-15 | 2013-02-15 | Method and apparatus for installing and removing a flow restrictor from a differential pressure measurement device |
Country Status (10)
| Country | Link |
|---|---|
| US (1) | US9527171B2 (en) |
| EP (1) | EP2956747B1 (en) |
| CN (1) | CN104995488B (en) |
| BR (1) | BR112015019556B1 (en) |
| CA (1) | CA2897226C (en) |
| ES (1) | ES2674354T3 (en) |
| MX (1) | MX360714B (en) |
| MY (1) | MY183270A (en) |
| SG (1) | SG11201505476SA (en) |
| WO (1) | WO2014124514A1 (en) |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US9310235B2 (en) | 2011-03-09 | 2016-04-12 | Fundacion Leading Innova | Double isolation for double chamber differential pressure meter |
| WO2016094524A1 (en) * | 2014-12-12 | 2016-06-16 | Daniel Measurement And Control, Inc. | Multi- double block and bleed system for an orifice fitting |
| WO2017015096A1 (en) * | 2015-07-22 | 2017-01-26 | Daniel Measurement And Control, Inc. | Double block and bleed system for an orifice fitting |
Families Citing this family (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN108931272B (en) * | 2017-05-27 | 2021-12-31 | 深圳市美好创亿医疗科技股份有限公司 | Porous differential pressure flow sensor and pulmonary function instrument |
| AU2020338966A1 (en) * | 2019-08-23 | 2022-03-31 | Fisher & Paykel Healthcare Limited | Liquid chamber for a breathing assistance apparatus |
| CN113340364B (en) * | 2021-06-22 | 2021-12-07 | 武汉新烽光电股份有限公司 | Input type ultrasonic flow monitor convenient to field use |
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|---|---|---|---|---|
| US4476730A (en) * | 1982-09-30 | 1984-10-16 | Grove Valve And Regulator Company | Orifice meter with pressure venting and equalizing safety device |
| WO2012120158A1 (en) * | 2011-03-09 | 2012-09-13 | Fundación Leading Innova | Double closure for double-chamber differential pressure measurement device |
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| US1938460A (en) | 1933-12-05 | Orifice fitting | ||
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| US4193574A (en) | 1978-10-27 | 1980-03-18 | Barnes Johney H | Well shut off device |
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-
2013
- 2013-02-15 WO PCT/CA2013/050117 patent/WO2014124514A1/en not_active Ceased
- 2013-02-15 US US14/760,495 patent/US9527171B2/en active Active
- 2013-02-15 ES ES13875119.3T patent/ES2674354T3/en active Active
- 2013-02-15 SG SG11201505476SA patent/SG11201505476SA/en unknown
- 2013-02-15 EP EP13875119.3A patent/EP2956747B1/en active Active
- 2013-02-15 BR BR112015019556-3A patent/BR112015019556B1/en active IP Right Grant
- 2013-02-15 CA CA2897226A patent/CA2897226C/en active Active
- 2013-02-15 MY MYPI2015702623A patent/MY183270A/en unknown
- 2013-02-15 CN CN201380072995.6A patent/CN104995488B/en active Active
- 2013-02-15 MX MX2015010533A patent/MX360714B/en active IP Right Grant
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| US4476730A (en) * | 1982-09-30 | 1984-10-16 | Grove Valve And Regulator Company | Orifice meter with pressure venting and equalizing safety device |
| WO2012120158A1 (en) * | 2011-03-09 | 2012-09-13 | Fundación Leading Innova | Double closure for double-chamber differential pressure measurement device |
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Cited By (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US9310235B2 (en) | 2011-03-09 | 2016-04-12 | Fundacion Leading Innova | Double isolation for double chamber differential pressure meter |
| WO2016094524A1 (en) * | 2014-12-12 | 2016-06-16 | Daniel Measurement And Control, Inc. | Multi- double block and bleed system for an orifice fitting |
| CN105698880A (en) * | 2014-12-12 | 2016-06-22 | 丹尼尔测量和控制公司 | Multi-Double Block and Bleed System for an Orifice Fitting |
| US10036512B2 (en) | 2014-12-12 | 2018-07-31 | Daniel Measurement And Control, Inc. | Multi-double block and bleed system for an orifice fitting |
| RU2694168C2 (en) * | 2014-12-12 | 2019-07-09 | ДЭНИЕЛ МЕЖЕМЕНТ энд КОНТРОЛ, ИНК. | Multiple double locking and outlet system for diaphragm attachment |
| CN105698880B (en) * | 2014-12-12 | 2019-10-22 | 丹尼尔测量和控制公司 | Multi-Double Shutoff Drain System for Orifice Fittings |
| WO2017015096A1 (en) * | 2015-07-22 | 2017-01-26 | Daniel Measurement And Control, Inc. | Double block and bleed system for an orifice fitting |
| US20170023166A1 (en) * | 2015-07-22 | 2017-01-26 | Daniel Measurement And Control, Inc. | Double block and bleed system for an orifice fitting |
| US10317003B2 (en) * | 2015-07-22 | 2019-06-11 | Daniel Measurement And Control, Inc. | Double block and bleed system for an orifice fitting |
Also Published As
| Publication number | Publication date |
|---|---|
| CA2897226A1 (en) | 2014-08-21 |
| US9527171B2 (en) | 2016-12-27 |
| CA2897226C (en) | 2017-09-26 |
| BR112015019556A2 (en) | 2017-07-18 |
| BR112015019556B1 (en) | 2020-11-10 |
| MX360714B (en) | 2018-11-14 |
| ES2674354T3 (en) | 2018-06-29 |
| CN104995488A (en) | 2015-10-21 |
| MX2015010533A (en) | 2015-11-16 |
| SG11201505476SA (en) | 2015-08-28 |
| US20150352674A1 (en) | 2015-12-10 |
| EP2956747A4 (en) | 2016-09-28 |
| MY183270A (en) | 2021-02-18 |
| EP2956747A1 (en) | 2015-12-23 |
| EP2956747B1 (en) | 2018-03-21 |
| CN104995488B (en) | 2018-12-07 |
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