EP3411652A1 - Système d'armoire frigorifique vitrée - Google Patents

Système d'armoire frigorifique vitrée

Info

Publication number
EP3411652A1
EP3411652A1 EP17703015.2A EP17703015A EP3411652A1 EP 3411652 A1 EP3411652 A1 EP 3411652A1 EP 17703015 A EP17703015 A EP 17703015A EP 3411652 A1 EP3411652 A1 EP 3411652A1
Authority
EP
European Patent Office
Prior art keywords
evaporator
heat exchanger
refrigeration
cabinet system
bypass heat
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.)
Granted
Application number
EP17703015.2A
Other languages
German (de)
English (en)
Other versions
EP3411652B1 (fr
Inventor
Lufei WANG
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Carrier Corp
Original Assignee
Carrier Corp
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 Carrier Corp filed Critical Carrier Corp
Publication of EP3411652A1 publication Critical patent/EP3411652A1/fr
Application granted granted Critical
Publication of EP3411652B1 publication Critical patent/EP3411652B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25BREFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
    • F25B5/00Compression machines, plants or systems, with several evaporator circuits, e.g. for varying refrigerating capacity
    • F25B5/02Compression machines, plants or systems, with several evaporator circuits, e.g. for varying refrigerating capacity arranged in parallel
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47FSPECIAL FURNITURE, FITTINGS, OR ACCESSORIES FOR SHOPS, STOREHOUSES, BARS, RESTAURANTS OR THE LIKE; PAYING COUNTERS
    • A47F3/00Show cases or show cabinets
    • A47F3/04Show cases or show cabinets air-conditioned, refrigerated
    • A47F3/0439Cases or cabinets of the open type
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25BREFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
    • F25B39/00Evaporators; Condensers
    • F25B39/02Evaporators
    • F25B39/028Evaporators having distributing means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28DHEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
    • F28D1/00Heat-exchange apparatus having stationary conduit assemblies for one heat-exchange medium only, the media being in contact with different sides of the conduit wall, in which the other heat-exchange medium is a large body of fluid, e.g. domestic or motor car radiators
    • F28D1/02Heat-exchange apparatus having stationary conduit assemblies for one heat-exchange medium only, the media being in contact with different sides of the conduit wall, in which the other heat-exchange medium is a large body of fluid, e.g. domestic or motor car radiators with heat-exchange conduits immersed in the body of fluid
    • F28D1/04Heat-exchange apparatus having stationary conduit assemblies for one heat-exchange medium only, the media being in contact with different sides of the conduit wall, in which the other heat-exchange medium is a large body of fluid, e.g. domestic or motor car radiators with heat-exchange conduits immersed in the body of fluid with tubular conduits
    • F28D1/047Heat-exchange apparatus having stationary conduit assemblies for one heat-exchange medium only, the media being in contact with different sides of the conduit wall, in which the other heat-exchange medium is a large body of fluid, e.g. domestic or motor car radiators with heat-exchange conduits immersed in the body of fluid with tubular conduits the conduits being bent, e.g. in a serpentine or zig-zag
    • F28D1/0477Heat-exchange apparatus having stationary conduit assemblies for one heat-exchange medium only, the media being in contact with different sides of the conduit wall, in which the other heat-exchange medium is a large body of fluid, e.g. domestic or motor car radiators with heat-exchange conduits immersed in the body of fluid with tubular conduits the conduits being bent, e.g. in a serpentine or zig-zag the conduits being bent in a serpentine or zig-zag
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/02Header boxes; End plates
    • F28F9/026Header boxes; End plates with static flow control means, e.g. with means for uniformly distributing heat exchange media into conduits
    • F28F9/027Header boxes; End plates with static flow control means, e.g. with means for uniformly distributing heat exchange media into conduits in the form of distribution pipes
    • F28F9/0275Header boxes; End plates with static flow control means, e.g. with means for uniformly distributing heat exchange media into conduits in the form of distribution pipes with multiple branch pipes
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D23/00General constructional features
    • F25D23/02Doors; Covers
    • F25D23/023Air curtain closures

Definitions

  • the present invention relates to the field of refrigeration equipment, and in particular, to a refrigeration display cabinet system.
  • Refrigerateration display cabinets are common in large markets, supermarkets, or fresh food markets, and they are mainly used for providing a low-temperature environment for commodities stored therein, thus improving the freshness and the storage life of the commodities.
  • the refrigeration display cabinets also have features such as being convenient for consumers to view and select commodities.
  • the refrigeration display cabinets may be designed in various forms such as a horizontal type and an upright type for selection.
  • FIG. 1 shows a common upright refrigeration display cabinet 100, which includes a cabinet body 110 and a display region 120enclosedby the cabinet body 110.
  • Several shelves may be disposed in the display region 120 and commodities are put on the shelves for placement and storage.
  • the front face of the display region 120 is not closed by the cabinet body 110, and an inlet/outlet for consumers to view and select commodities is reserved here.
  • a consumer may view commodities in the display region 120 via the inlet/outlet, and decides whether to buy according to the need.
  • the refrigeration function of the refrigeration display cabinet 100 is provided by an attached refrigeration system 200.
  • the refrigeration system 200 may include a built-in evaporator 210at a rear part of the cabinet body 110 and a built-in evaporator fan 211at a bottom part of the cabinet body 110.
  • the interior of the whole cabinet body 110 is of an air communication structure.
  • the air enters the cabinet body via the bottom part of the cabinet body 110, and flows through the evaporator 210 and thus be fully cooled.
  • the cooled air exchanges heat with the display region 120 via a wall surface of the cabinet body 110 on one hand, and on the other hand, directly enters the display region 120 via a vent hole opened on the wall surface of the cabinet body 110, to exchange heat with the commodities therein, thus achieving an effect of storing the commodities at a low temperature.
  • An objective of the present invention is to provide a refrigeration display cabinet system that can enhance refrigeration for an area with a relatively high temperature in a display region.
  • Another objective of the present invention is to provide another refrigeration display cabinet system that can enhance refrigeration for an area with a relatively high temperature in a display region.
  • a refrigeration display cabinet system including: a cabinet body; a display region enclosed by the cabinet body and having a display port in communication with the external through an air curtain; a refrigeration system including a compressor, a condenser, a throttling element, and an evaporator that sequentially communicate with each other via a pipeline; and a bypass heat exchanger, of which an inlet end and an outlet end are both connected to the evaporator; wherein the bypass heat exchanger is disposed to be in contact with the cabinet body, and exchanges heat with the display region.
  • a refrigeration display cabinet system including: a body; a display region enclosed by the cabinet body and having a display port in communication with the external through an air curtain; a refrigeration system including a compressor, a condenser, a throttling element, and an evaporator that sequentially communicate with each other via a pipeline; and a bypass heat exchanger, of which an inlet end and an outlet end are both connected to the evaporator; wherein a main body part of the bypass heat exchanger is integrated in the cabinet body, and exchanges heat with the display region.
  • FIG. 1 is a schematic diagram of a refrigeration display cabinet in the prior art
  • FIG. 2 is a schematic diagram of an embodiment of a refrigeration display cabinet according to the present invention.
  • FIG. 3 is a schematic diagram of an embodiment of a bottom part of a cabinet body of the refrigeration display cabinet according to the present invention.
  • FIG. 2 shows a refrigeration display cabinet system according to an embodiment of the present invention.
  • the refrigeration display cabinet system mainly includes a refrigeration display cabinet part for displaying and selling goods and a refrigeration system part for providing a refrigeration/freezing effect.
  • the refrigeration display cabinet 300 includes a cabinet body 310 and a display region 320 enclosed by the cabinet body 310.
  • the bottom, the rear, and the top of the display region 320 are closed by a corresponding bottom part 311, rear part 312, and top part 313 of the cabinet body 310 respectively, and the front side of the upright display cabinet is provided with a display port which is in communication with the external through an air curtain, for consumers to view and select commodities placed in the display region 320.
  • a refrigeration system 400 needed by the refrigeration display cabinet system may include a compressor, a condenser, a throttling element, and an evaporator 410 that sequentially communicate with each other through a pipeline.
  • all components of the refrigeration system 400 may be arranged in the cabinet body 310, thereby providing an integrated refrigeration system.
  • only the evaporator 410 of the refrigeration system 400 and an evaporator fan corresponding thereto are arranged in the cabinet body 310, to make sure that a refrigerating capacity needed by the refrigeration display cabinet 300 is provided.
  • the refrigeration system 400 of the present invention further includes a bypass heat exchanger 420, of which an inlet end and an outlet end are both connected to the evaporator 410, and thus can guide part of the refrigerant from the evaporator 410 to exchange heat with a specified position via the bypass heat exchanger 420, and guide the refrigerant back to the evaporator 410 after the heat exchange process is completed.
  • the bypass heat exchanger 420 may be disposed to be in contact with the cabinet body 310, and exchange heat with the display region 320 at this position.
  • the bypass heat exchanger 420 may be disposed on a wall surface, of the cabinet body310, which corresponds to an area with a relatively high temperature in the display region320, to specifically cool this area, thus improving the work efficiency of the refrigeration display cabinet.
  • bypass heat exchanger in principle, it should be arranged on the wall surface, in the area with a relatively high temperature, of the cabinet body as far as possible.
  • multiple aspects such as an actual available space, arrangement costs, simplicity and reliability of the display cabinet should also be considered comprehensively in an actual process.
  • several arrangement manners of the bypass heat exchanger are provided for reference.
  • the bypass heat exchanger 420 may be arranged in the bottom part 311 of the cabinet body 210, and contacts a top plate 311a of the bottom part from below, thus implementing heat exchange with the display region 320 at this position.
  • the connection between the top plate 311a and the bypass heat exchanger 420 may be implemented in multiple connection manners.
  • a clamping member may be disposed on the top plate 311a of the bottom part 311, and the bypass heat exchanger 420 is clamped to the top plate 311a of the bottom part 311 via the clamping member.
  • an adhesive member may be additionally included, and the bypass heat exchanger 420 is adhered, from bottom up, to the top plate 311a of the bottom part 311 via the adhesive member.
  • the adhesive member may be a liner with an adhesive provided on its periphery, the main body part of the bypass heat exchanger 420 is covered by the liner, and the bypass heat exchanger is adhered to the top plate 311a via the adhesive on the periphery of the liner.
  • bypass heat exchanger 420 a fixed connection between the bypass heat exchanger 420 and the top plate 311a is implemented on one hand, and on the other hand, downward heat transfer of the bypass heat exchanger 420 is substantially insulated, thus avoiding unnecessary frosting and moisture condensation, so that the refrigerating capacity is transferred upward via the top plate 311a as much as possible.
  • the specific implementation manner between the bypass heat exchanger and the evaporator mentioned in the above embodiment of the present invention as long as it can implement that the refrigerant in the evaporator is guided into the bypass heat exchanger at a suitable flow rate for heat exchange.
  • several arrangement manners of the bypass heat exchanger are provided for reference.
  • the evaporator may include several evaporation branches to reduce a flow pressure drop at the refrigerant side and improve the heat exchange effect, wherein a first evaporation branch is included.
  • the inlet end and the outlet end of the bypass heat exchanger are both connected to the first evaporation branch.
  • the first evaporation branch is selected on the basis of the following principle. That is, when the refrigeration display cabinet system works, the first evaporation branch accumulates the largest volume of liquid refrigerant among all the evaporation branches of the evaporator. In other words, the first evaporation branch has a poorer heat exchange environment, and thus a large volume of liquid refrigerant therein does not absorb enough heat and fully evaporate.
  • the refrigerating capacity acquired by the external environment from this evaporation branch is very limited, and in a severe case, phenomena such as frosting and freezing may even occur in a heat exchange pipeline of the evaporator at this position.
  • the connection of the bypass heat exchanger may achieve an effect of specifically heating the refrigeration display cabinet on one hand, and on the other hand, can further effectively avoid the frosting and freezing phenomena in the heat exchange pipeline at this position.
  • the first evaporation branch 414 is located at the lower portion of the evaporator 410.
  • the inlet end 420a and the outlet end 420b of the bypass heat exchanger 420 are both connected to the first evaporation branch 414, thus guiding part of the relatively large volume of liquid refrigerant accumulated in the first evaporation branch 414 to enter the main body part 420c of the bypass heat exchanger 420, and after heat exchange with the display region 320 is implemented in the main body part 420c via the top plate 311a, this part of liquid refrigerant is guided back to the first evaporation branch 414, thus returning to the regular refrigeration cycle.
  • the inlet end 420a and the outlet end 420b of the bypass heat exchanger 420 may also be connected into the evaporator 410 from an elbow joint of any heat exchange pipeline 412 of the evaporator 410.
  • a conventional finned heat exchanger is generally assembled by inserting one end to a long U-shaped pipe and welding an elbow on the other end. Therefore, the connection of the bypass heat exchanger 420 into the evaporator 410 via the elbow joint can effectively use the existing connection end at this position, which does not need to make too many improvements on existing components, is easy to implement, and is low in costs.
  • the inlet end 420a and the outlet end 420b of the bypass heat exchanger 420 may also be connected into the evaporator 410 from a joint between any heat exchange pipeline 412 of the evaporator 410 and a fin, and this can also achieve the technical effect of guiding part of the refrigerant into the bypass heat exchanger 420.
  • the inlet end 420a and the outlet end 420b of the bypass heat exchanger 420 may also be connected into the evaporator 410 from a branch pipe of any dispenser 411 of the evaporator 410. Because the dispenser 411 is located outside the evaporator 410, machining is easier by selecting this position as a connection port. It should be understood that a steam return pipe413 is not suitable to be used as a connection point of the bypass heat exchanger 420, because the refrigerant at this position generally has relatively low dryness and relatively poor heat transfer performance.
  • the inlet end 420a and the outlet end 420b of the bypass heat exchanger 420 may be directly welded to the evaporator 410.
  • This connection manner is operated quickly, is easy to machine, and has excellent connection tightness.
  • the inlet end 420a and the outlet end 420b of the bypass heat exchanger 420 may also be connected to the evaporator 410 through a pipe joint.
  • the bypass heat exchanger 420 may be produced and processed as a standard component, and the connection between the bypass heat exchanger 420 and the evaporator 410 can be implemented by using different pipe joints according to different actual application conditions.
  • FIG. 3 shows an implementation of a pipe joint430 including a hose.
  • the bypass heat exchanger 420 itself may also have multiple structure forms.
  • the embodiment in FIG. 3 provides a simple, feasible and efficient form. That is, the bypass heat exchanger 420 is designed as a single heat exchange tube in reciprocating arrangement, which not only facilitates the connection between the bypass heat exchanger 420 and the cabinet body 310 but also provides a heat exchange passage as long as possible, to enhance the heat transfer effect.
  • the embodiment of the present invention further includes several improvements on conventional components of the refrigeration display cabinet system.
  • the air may be allowed to circulate among the bottom part 311, the rear part 312, and the top part 313 of the cabinet body 310; besides, the air curtain is formed between the bottom part 311 and the top part 313, and causes cold air to flow from the top down. From this, the air flow system coordinates with the refrigeration system in the refrigeration display cabinet system. After being cooled by the refrigeration system at the bottom part 311 of the cabinet body 310, the cold air flows through the rear part 312 and the top part 313 sequentially, and flows downward from the top part 313 back to the bottom part, thus forming an air curtain at the display port of the display region 320.
  • the evaporator 410 may be disposed in the bottom part 311 or the rear part 312 of the cabinet body 310; both can achieve a desirable heat exchange effect with the air, without affecting the appearance of the display cabinet.
  • the refrigeration display cabinet system further includes an evaporator fan, which may be disposed in the bottom part 312 of the cabinet body 310, thereby driving the air to enter the cabinet body 310, and completing the whole circulation from the bottom up.
  • an evaporator fan which may be disposed in the bottom part 312 of the cabinet body 310, thereby driving the air to enter the cabinet body 310, and completing the whole circulation from the bottom up.
  • a vent hole may further be provided in the rear part 312 of the cabinet body 310, and the vent hole may be disposed corresponding to a goods display area in the display region 320, thereby ensuring a better refrigerating effect for commodities placed therein.
  • a specific implementation manner of the goods display area may be several shelves321 in the display region 320.
  • the air is suctioned into the bottom part 311 of the cabinet body 310 under the driving of the evaporator fan, and implements heat exchange with the evaporator 410 therein; the cooled air continues to flow to the rear part 312 of the cabinet body 310;one part of the air enters the display region 320 via the vent hole at this position and cools commodities on the shelves321; the other part of the air continues to flow upward to the top part 313 of the cabinet body 310, and flows downward from the front side of the top part 313 back to the bottom part 311, thereby forming an air curtain at the display port of the display region 320, to form effective insulation between the external environment and the inner side of the display region 320.
  • the high-temperature gaseous refrigerant flows into the condenser for cooling, and the cooled refrigerant enters the evaporator 410 after being throttled by the throttling element.
  • the remaining low-temperature liquid refrigerant for example, the refrigerant at the bottom of the evaporator
  • the remaining low-temperature liquid refrigerant that fails to fully exchange heat with the air that flows by
  • the top plate 311a of the bottom part 311 of the cabinet body 310 under the guidance of the bypass heat exchanger 420, directly contact the top plate 311a, provide the refrigerating capacity for the commodities in the display region 320to implement sufficient cooling of the commodities, and then flow back to the evaporator 410. All of the refrigerant will return to the compressor from the evaporator 410, to start a new round of refrigeration cycle.
  • the present invention further provides an implementation of another refrigeration display cabinet system.
  • Part of the structure of the refrigeration display cabinet system has a structural arrangement similar to that in the above embodiment. That is, the refrigeration display cabinet 300 also includes a cabinet body 310 and a display region 320 enclosed by the cabinet body 310.
  • the refrigeration system 400 also includes a compressor, a condenser, a throttling element, and an evaporator 410 that sequentially communicate with each other through a pipeline.
  • the two major systems have similar structures and arrangement requirements.
  • the distinguishing improvement thereof lies in that, a main body part 420c of a bypass heat exchanger 420 included in the refrigeration system 400 of the present invention is integrated in the cabinet body 310, to implement better heat exchange with the display region.
  • bypass heat exchanger 420 may be disposed in a wall surface, of the cabinet body310, which corresponds to an area with a relatively high temperature in the display region320, to specifically cool this area, thus improving the work efficiency of the refrigeration display cabinet.
  • the bypass heat exchanger in principle, it should be arranged in the wall surface, corresponding to the area with a relatively high temperature, of the cabinet body as far as possible.
  • multiple aspects such as an actual available space, arrangement costs, simplicity and reliability of the display cabinet should also be considered comprehensively in an actual process.
  • several arrangement manners of the bypass heat exchanger are provided for reference.
  • the main body part 420c of the bypass heat exchanger 420 may be integrated in a top plate 311a of a bottom part 311, and exchanges heat with the display region 320.
  • connection manners may be used to implement the connection between the main body part 420c of the bypass heat exchanger 420 and the cabinet body 310.
  • the main body part 420c of the bypass heat exchanger 420 may be integrated, in a foamed form, in the cabinet body 310, and only the inlet end 420a and the outlet end 420bthereof are exposed on the external side, to implement a connection with the evaporator 410.
  • the evaporator may include several evaporation branches, wherein a first evaporation branch is included.
  • the inlet end and the outlet end of the bypass heat exchanger are both connected to the first evaporation branch.
  • the first evaporation branch is selected on the basis of the following principle. That is, when the refrigeration display cabinet system works, the first evaporation branch accumulates the largest volume of liquid refrigerant among all the evaporation branches of the evaporator.
  • connection of the bypass heat exchanger may achieve an effect of specifically heating the refrigeration display cabinet on one hand, and on the other hand, can further effectively avoid the frosting and freezing phenomena in the heat exchange pipeline at this position.
  • the first evaporation branch 414 is located at the lower portion of the evaporator 410.
  • the inlet end 420a and the outlet end 420b of the bypass heat exchanger 420 are both connected to the first evaporation branch 414, thus guiding part of the relatively large volume of liquid refrigerant accumulated in the first evaporation branch 414 to enter the main body part 420c of the bypass heat exchanger 420, and after heat exchange with the display region 320 is implemented in the main body part 420c via the top plate 311a, this part of liquid refrigerant is guided back to the first evaporation branch 414, thus returning to the regular refrigeration cycle.
  • the inlet end 420a and the outlet end 420b of the bypass heat exchanger 420 may also be connected into the evaporator 410 from an elbow joint of any heat exchange pipeline 412 of the evaporator 410; and/or connected into the evaporator 410 from a joint between any heat exchange pipeline 412 of the evaporator 410 and a fin; and/or connected into the evaporator 410 from a branch pipe of any dispenser 411 of the evaporator 410.
  • the inlet end 420a and the outlet end 420b thereof may also be directly welded to the evaporator 410.
  • This connection manner is operated quickly, is easy to machine, and has excellent connection tightness.
  • the inlet end 420a and the outlet end 420b of the bypass heat exchanger 420 may also be connected to the evaporator 410 through a pipe joint.
  • the bypass heat exchanger 420 may be produced and processed as a standard component, and the connection between the bypass heat exchanger 420 and the evaporator 410 can be implemented by using different pipe joints according to different actual application conditions.
  • bypass heat exchanger 420 itself may be designed as a single heat exchange tube in reciprocating arrangement similarly, which not only facilitates the connection between the bypass heat exchanger 420 and the cabinet body 310 but also provides a heat exchange passage as long as possible, to enhance the heat transfer effect.

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)
  • Freezers Or Refrigerated Showcases (AREA)

Abstract

L'invention concerne un système d'armoire frigorifique vitrée comprenant un corps d'armoire ; une région de présentation entourée par le corps d'armoire et comportant une ouverture de présentation en communication avec l'extérieur à travers un rideau d'air ; un système frigorifique comportant un compresseur, un condenseur, un élément d'étranglement et un évaporateur en communication entre eux de manière séquentielle par l'intermédiaire d'une conduite ; et un échangeur de chaleur de dérivation dont une extrémité d'entrée et une extrémité de sortie sont toutes les deux reliées à l'évaporateur ; l'échangeur de chaleur de dérivation étant disposé de manière à être en contact avec le corps d'armoire et échangeant de la chaleur avec la région de présentation. Du fait qu'un fluide frigorigène de l'échangeur de chaleur de dérivation échange directement de la chaleur avec la région de présentation par l'intermédiaire d'une face de paroi du corps d'armoire, l'effet d'échange de chaleur sera bien meilleur par rapport au transfert indirect, à travers l'air, de la capacité frigorifique portée par le fluide frigorigène dans l'évaporateur à la région de présentation.
EP17703015.2A 2016-02-03 2017-01-23 Armoire de présentation réfrigérée Active EP3411652B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201610075233.7A CN107028432B (zh) 2016-02-03 2016-02-03 制冷展示柜系统
PCT/US2017/014533 WO2017136172A1 (fr) 2016-02-03 2017-01-23 Système d'armoire frigorifique vitrée

Publications (2)

Publication Number Publication Date
EP3411652A1 true EP3411652A1 (fr) 2018-12-12
EP3411652B1 EP3411652B1 (fr) 2022-03-23

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP17703015.2A Active EP3411652B1 (fr) 2016-02-03 2017-01-23 Armoire de présentation réfrigérée

Country Status (3)

Country Link
EP (1) EP3411652B1 (fr)
CN (1) CN107028432B (fr)
WO (1) WO2017136172A1 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN118031487B (zh) * 2024-04-15 2024-07-12 上海东方低碳科技产业股份有限公司 一种具有自适应功能的节能制冷设备

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Publication number Priority date Publication date Assignee Title
US2065538A (en) * 1930-07-31 1936-12-29 Gen Motors Corp Refrigerating apparatus
US2764875A (en) * 1955-01-26 1956-10-02 Whirlpool Seeger Corp Household refrigerators of the two temperature type
JPH0730992B2 (ja) * 1990-04-12 1995-04-10 三洋電機株式会社 花用冷却ショーケース
CN1125309C (zh) * 1996-10-02 2003-10-22 松下电器产业株式会社 翅片式热交换器
DE29910524U1 (de) * 1999-06-16 1999-09-02 TM Technischer Gerätebau GmbH, 89231 Neu-Ulm Kühltruhe zum Einbau, insbesondere in einem Omnibus
CN1753634A (zh) * 2003-02-26 2006-03-29 开利商业冷藏公司 具有改进空气幕的冷藏陈列商品柜
CN1909817A (zh) * 2004-01-06 2007-02-07 开利商业冷藏公司 具有改进空气幕的冷藏陈列商品柜
PL2129266T3 (pl) * 2006-12-21 2017-03-31 Carrier Corporation Szafa chłodnicza
JP5388969B2 (ja) * 2010-08-23 2014-01-15 三菱電機株式会社 熱交換器及びこの熱交換器が搭載された空気調和機
CN101984880B (zh) * 2010-10-29 2012-01-25 浙江大学 基于扩散吸收式制冷的恒温恒湿系统
CN204963308U (zh) * 2015-07-31 2016-01-13 合肥美的电冰箱有限公司 蒸发器组件及制冷设备

Also Published As

Publication number Publication date
CN107028432A (zh) 2017-08-11
EP3411652B1 (fr) 2022-03-23
WO2017136172A1 (fr) 2017-08-10
CN107028432B (zh) 2021-06-15

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