CN107421036A - Regenerative apparatus and air-conditioner set - Google Patents

Regenerative apparatus and air-conditioner set Download PDF

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Publication number
CN107421036A
CN107421036A CN201710705787.5A CN201710705787A CN107421036A CN 107421036 A CN107421036 A CN 107421036A CN 201710705787 A CN201710705787 A CN 201710705787A CN 107421036 A CN107421036 A CN 107421036A
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CN
China
Prior art keywords
accumulation
heat module
locating part
heat
regenerative apparatus
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
CN201710705787.5A
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Chinese (zh)
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CN107421036B (en
Inventor
兰建
覃家忠
张亚国
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Gree Electric Appliances Inc of Zhuhai
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Gree Electric Appliances Inc of Zhuhai
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Priority to CN201710705787.5A priority Critical patent/CN107421036B/en
Publication of CN107421036A publication Critical patent/CN107421036A/en
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Publication of CN107421036B publication Critical patent/CN107421036B/en
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F5/00Air-conditioning systems or apparatus not covered by F24F1/00 or F24F3/00, e.g. using solar heat or combined with household units such as an oven or water heater
    • F24F5/0003Exclusively-fluid systems
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/30Arrangement or mounting of heat-exchangers
    • 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
    • F28D20/00Heat storage plants or apparatus in general; Regenerative heat-exchange apparatus not covered by groups F28D17/00 or F28D19/00
    • 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
    • F28D20/00Heat storage plants or apparatus in general; Regenerative heat-exchange apparatus not covered by groups F28D17/00 or F28D19/00
    • F28D2020/0004Particular heat storage apparatus
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/14Thermal energy storage

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Other Air-Conditioning Systems (AREA)
  • Heat-Exchange Devices With Radiators And Conduit Assemblies (AREA)

Abstract

The present invention relates to a kind of regenerative apparatus and air-conditioner set, wherein, regenerative apparatus includes accumulation of heat module (1), first locating part (2) and the second locating part (3), one face of accumulation of heat module (1) through-thickness is sticked on the first locating part (2), second locating part (3) integrally pressing and across another face of accumulation of heat module (1) through-thickness, and second the end of locating part (3) be connected with the first locating part (2), first locating part (2) and the second locating part (3) limit the free degree of accumulation of heat module (1) through-thickness jointly.Such a fixed structure can simplify the installation fixed form of accumulation of heat module, improve assembly or disassembly efficiency;And first locating part and the second locating part on the basis of spacing, effective support can also be provided accumulation of heat module, the stability of accumulation of heat module installation is improved, is less likely to occur to rock during packaging, transport and use, ensures reliability of the regenerative apparatus in links.

Description

Regenerative apparatus and air-conditioner set
Technical field
The present invention relates to air-conditioning technical field, more particularly to a kind of regenerative apparatus and air-conditioner set.
Background technology
Regenerative apparatus can effectively realize the storage of heat, and then realize to put at any time and export heat, with profit Corresponding work is done with these heats.The internal material of storage heater part is the material of punching press compacting, causes storage heater part The problem of overall heavier, therefore its fixed form becomes key.
Accumulation of heat module fixed mode is fixed using bolt in the prior art, needs to use torque to pull in assembling process Hand is tightened, very inconvenient, and operating efficiency is low.And while by multiple bolt all directions frees degree, exist Bolt correspondence position is provided with the vibration damping rubber cushion for being similar to and being used during installation compressor, when accumulation of heat module is vibrated, each Certain resilient bias can be produced in planar degrees of freedom, when offset accumulation is larger it is possible that accumulation of heat module collides shell The phenomenon of body, cause the installation of accumulation of heat module unstable, but also the noise of unit can be increased, and influence other property of unit Energy.
The content of the invention
The purpose of the present invention is to propose to a kind of regenerative apparatus and air-conditioner set, it is possible to increase the stabilization that accumulation of heat module is fixed Property.
To achieve the above object, first aspect present invention provides a kind of regenerative apparatus, including accumulation of heat module, first spacing Part and the second locating part, a face of the accumulation of heat module through-thickness are sticked on first locating part, and described second Locating part integrally presses and across another face of the accumulation of heat module through-thickness, and the end of second locating part with The first locating part connection, first locating part and the second locating part limit the accumulation of heat module through-thickness jointly The free degree.
Further, first locating part includes supporting part and kink, and the supporting part limits the accumulation of heat module The free degree of through-thickness, the kink are located at end of the supporting part along accumulation of heat module width direction, the width Direction is that the supporting part is provided with support, the accumulation of heat module position perpendicular to the direction of the accumulation of heat module refrigerant pipe joint Between the kink and support, the kink and support limit the freedom of the accumulation of heat module in the width direction jointly Degree.
Further, the regenerative apparatus includes two accumulation of heat modules, and the supporting part is along the accumulation of heat module The both ends of width are respectively equipped with the oppositely extending kink, and the branch is equipped with the positive and negative of the supporting part Frame, two accumulation of heat modules are separately mounted to the tow sides of the supporting part.
Further, width of second locating part along the accumulation of heat module is set, second locating part Both ends are connected on the kink and support.
Further, the regenerative apparatus also includes being located at first locating part along accumulation of heat block length direction one end Substrate, the length direction are that the substrate is provided with positioning hole, described along the direction of the accumulation of heat module refrigerant pipe joint One end in accumulation of heat module along its length is provided with mounting interface, and bolt wears the positioning hole and the mounting interface by accumulation of heat Module is fixed on the substrate, to limit the free degree of the accumulation of heat module along its length.
Further, vibration-damped component is provided between the mounting interface and the substrate.
Further, the accumulation of heat module has multigroup refrigerant pipe joint, and every group of refrigerant pipe joint includes a gaseous state Refrigerant pipe joint and a liquid refrigerants pipe joint, parallel four are enclosed on cross section between refrigerant pipe joint described in adjacent sets Side shape, the supporting part are inclined relative to horizontal setting, so that the gaseous coolant pipe joint of each accumulation of heat module is located In in first level face, the liquid refrigerants pipe joint of each accumulation of heat module is in the second horizontal plane.
Further, regenerative apparatus also includes mounting bracket, and first locating part also includes connecting portion, on the connecting portion In the one end of the kink away from supporting part, the connecting portion is used to first locating part being fixed on mounting bracket.
Further, regenerative apparatus also includes being located at base of first locating part along accumulation of heat block length direction one end Plate, the mounting bracket include bottom plate, are located at the side plate of the bottom plate both sides and are located at the back plate of floor rear, the bottom plate, side The installing space to form the accumulation of heat module is enclosed between plate and back plate, two connecting portions are separately fixed at different side plates On, the back plate is obliquely installed as the substrate, the supporting part relative to the bottom plate.
To achieve the above object, second aspect of the present invention provides a kind of air-conditioner set, including described in above-described embodiment Regenerative apparatus.
Further, the regenerative apparatus is located at the indoor of air-conditioner set, and in parallel with the heat exchanger of the indoor set Set, for being defrosted to outdoor unit.
Based on above-mentioned technical proposal, the regenerative apparatus of the embodiment of the present invention, by a face of accumulation of heat module through-thickness It is sticked on the first locating part, the second locating part pressing and across another face of accumulation of heat module through-thickness and end and the One locating part connects, to limit the free degree of accumulation of heat module through-thickness jointly by the first locating part and the second locating part. Such a fixed structure can simplify the installation fixed form of accumulation of heat module, improve assembly or disassembly efficiency;And first locating part With the second locating part on the basis of limit function is provided, compared with the mode fixed only with bolt, additionally it is possible to accumulation of heat mould Block provides effective support, improves the stability of accumulation of heat module installation, is less likely to occur to shake during packaging, transport and use It is dynamic, ensure reliability of the regenerative apparatus in links.
Brief description of the drawings
Accompanying drawing described herein is used for providing a further understanding of the present invention, forms the part of the application, this hair Bright schematic description and description is used to explain the present invention, does not form inappropriate limitation of the present invention.In the accompanying drawings:
Fig. 1 is the exploded view of one embodiment of regenerative apparatus of the present invention;
Fig. 2 is the structural representation of one embodiment of accumulation of heat module fixing construction in regenerative apparatus of the present invention;
Fig. 3 is the structural representation of one embodiment of regenerative apparatus of the present invention.
Description of reference numerals
1st, accumulation of heat module;2nd, the first locating part;3rd, the second locating part;4th, vibration-damped component;5th, bolt;6th, mounting bracket;7th, support; 8th, substrate;11st, gaseous coolant pipe joint;12nd, liquid refrigerants pipe joint;13rd, mounting interface;21st, connecting portion;22nd, kink; 23rd, supporting part;31st, first connecting portion;32nd, limiting section;33rd, second connecting portion;61st, back plate;62nd, bottom plate;63rd, side plate.
Embodiment
The present invention described further below.In the following paragraphs, the different aspect of embodiment is defined in more detail.So The each side of restriction can combine with any other one side or many aspects, not can be combined unless explicitly stated otherwise.Especially, It is considered as that preferable or favourable any feature can be considered as preferable or favourable feature with other one or more Combination.
The term descriptions merely for convenience such as " first " that occurs in the present invention, " second ", there are same names to distinguish Different building blocks, be not offered as successively or primary-slave relation.
In the description of the invention, it is to be understood that term " on ", " under ", "left", "right", "front", "rear", " interior " The orientation or position relationship of instructions such as " outer " are based on orientation shown in the drawings or position relationship, are for only for ease of description originally Invention, rather than instruction or imply that signified device must have specific orientation, with specific azimuth configuration and operation, therefore It is not intended that limiting the scope of the invention.
As shown in Figure 1 to Figure 3, the present invention proposes a kind of regenerative apparatus, mainly to the peace of accumulation of heat module 1 in regenerative apparatus Dress fixed structure is improved, and subsequently in description, accumulation of heat module 1 is limited respectively along height essentially according to installation fixed structure The thinking of degree, width and the length direction free degree illustrates.The housing of common accumulation of heat module 1 is substantially in cuboid, housing Interior to be provided with heat exchanger tube, the both ends of heat exchanger tube are respectively equipped with gaseous coolant pipe joint 11 and liquid refrigerants pipe joint 12, gaseous coolant Pipe joint 11 and liquid refrigerants pipe joint 12 are referred to as refrigerant pipe joint, and refrigerant pipe joint vertically can be located in the side wall of housing, The direction that will be perpendicular to refrigerant pipe joint herein is defined as the width of accumulation of heat module 1, by along the direction of refrigerant pipe joint It is defined as the length direction of accumulation of heat module 1.Moreover, the face in the accumulation of heat module 1 subsequently mentioned refers both to the outside of accumulation of heat module 1 Face.
In a schematical embodiment, with reference to figure 1, the regenerative apparatus includes accumulation of heat module 1, the and of the first locating part 2 Second locating part 3, a face of the through-thickness of accumulation of heat module 1 are sticked on the first locating part 2, the overall pressure of the second locating part 3 Merge across another face of the through-thickness of accumulation of heat module 1, and the end of the second locating part 3 is connected with the first locating part 2, the One locating part 2 and the second locating part 3 limit the free degree of the through-thickness of accumulation of heat module 1 jointly.
Two faces of the first locating part 2 and the second locating part 3 respectively with the through-thickness of accumulation of heat module 1 connect in the embodiment Touch, the free degree of the through-thickness of accumulation of heat module 1 can be limited by way of face contacts, with the mode phase fixed only with bolt Than at least possessing one of following advantage:
(1) when regenerative apparatus is by external force, the mode fixed in the prior art only with bolt can only be held by bolt It is limited in one's ability by external force, the smaller load of sectional area of bolt.And the regenerative apparatus of the present invention then relies on the first locating part and second Locating part bears external force, larger with the contact area of accumulation of heat module, and two faces of accumulation of heat module through-thickness can be produced Reliable position-limiting action power, the stability of accumulation of heat module installation is improved, can to accumulation of heat module during packaging, transport and use By constraint, accumulation of heat module is less likely to occur to rock, it is ensured that reliability of the regenerative apparatus in links.
(2) because the first locating part and the second locating part and the contact area of accumulation of heat module increase, it is thus possible to accumulation of heat Module is accurately positioned, and is easily guaranteed that precision when mounted.
(3) such a fixed structure can simplify the installation fixed form of accumulation of heat module, improve assembly or disassembly efficiency.
As shown in Fig. 2 the first locating part 2 includes supporting part 23 and kink 22, supporting part 23 and kink 22 can all be adopted With platy structure, the first locating part 2 can be bent to form by whole plate.Wherein, a face of the through-thickness of accumulation of heat module 1 is sticked On supporting part 23, to limit the free degree of the through-thickness of accumulation of heat module 1, kink 22 is located at supporting part 23 along accumulation of heat module The end of 1 width, L-shaped structure is formed, angle and the shape of accumulation of heat module 1 between kink 22 and supporting part 23 are fitted Match somebody with somebody.In addition, supporting part 23 is provided with support 7, support 7 can also use platy structure, and be oppositely arranged with kink 22, accumulation of heat mould Block 1 is placed between kink 22 and support 7, and the distance between kink 22 and support 7 are adapted with the width of accumulation of heat module 1, Kink 22 and support 7 limit the free degree of accumulation of heat module 1 in the width direction jointly.
In the embodiment, two faces of supporting part 23 and support 7 respectively with accumulation of heat module 1 in the width direction contact, and also may be used The free degree of accumulation of heat module 1 in the width direction is limited by way of face contacts, it is accurately fixed that accumulation of heat module 1 can be carried out Position, and can two faces of accumulation of heat module 1 in the width direction be produced with reliable position-limiting action power, further improve accumulation of heat mould The stability that block 1 is installed.When mounted, only need to be by accumulation of heat Module-embedding to the space between supporting part 23 and support 7, with regard to energy The positioning of width is realized, installation difficulty can be reduced, improves efficiency of assembling.
Moreover, width limiting component is arranged on the first locating part 2 by the structure, by using unified positioning datum Positioning precision is improved, and the intensity of the first locating part 2 is higher, it is not easy to deform, it is possible to increase what accumulation of heat module 1 was installed can By property and steadiness.
Preferably, supporting part 23 can be provided the whole surface of one of side of the through-thickness of accumulation of heat module 1 Constraint, to improve the reliability for positioning and constraining.On the premise of supporting part 23 can be as stable reference for installation, second is spacing It is spacing that part 3 need to use the stripe board of predetermined width to carry out another face of the through-thickness of accumulation of heat module 1, can save material Material, also allows for installing.
On this basis, whole length edge extension of the kink 22 along supporting part 23, with to accumulation of heat module 1 along width The whole surface of the one of side in direction provides constraint, can improve the reliability of positioning and constraint.There is provided surely in kink 22 On the premise of concludeing a contract or treaty beam force, 7 need of support are designed as the platy structure of predetermined width, with to accumulation of heat module 1 in the width direction Another face carries out spacing.Preferably, the height of kink 22 and support 7 designs according to the thickness of corresponding side accumulation of heat module 1.
For realizing the spacing embodiment of width by kink 22 and support 7, the second locating part 3 is along accumulation of heat module 1 width is set, and the both ends of the second locating part 3 are connected on kink 22 and support 7.Due to edge on supporting part 23 It is respectively provided with two sides of the width of accumulation of heat module 1 and increases structure, can be made full use of and increase structure and realize the second locating part 3 Fixation, connection difficulty can be reduced.It is additionally, since and width limiting component is uniformly arranged on the first higher locating part 2 of intensity On, the intensity requirement to the second locating part 3 can be reduced, the second locating part 3 can use elongated plates.In addition, the edge of the second locating part 3 The length direction of accumulation of heat module 1 sets also feasible.
3 adoptable structure type of the second locating part is provided herein.With reference to shown in Fig. 1 and Fig. 3, the second locating part 3 includes First connecting portion 31, limiting section 32 and second connecting portion 33, limiting section 32 are used for the through-thickness for being pressed together on accumulation of heat module 1 Carry out spacing on face, limiting section 32 contacts with the forming face of accumulation of heat module 1.First connecting portion 31 is located at one end of limiting section 32 and court Bent to the direction away from accumulation of heat module 1, form L-shaped structure, first connecting portion 31 is connected by fastener with kink 22.The Two connecting portions 33 are located at the other end of limiting section 32, and the rake formed with limiting section 32 on obtuse angle, with accumulation of heat module 1 is mutually fitted Match somebody with somebody, second connecting portion 33 is connected with support 7 by fastener.Second locating part 3 is overall to be bent to form by platy structure.
In the regenerative apparatus shown in Fig. 3, including two accumulation of heat modules 1, in order to use same first locating part 2 simultaneously Two accumulation of heat modules 1 are installed, both ends of the supporting part 23 along the width of accumulation of heat module 1 are respectively equipped with oppositely extending kink 22, support 7 is equipped with the positive and negative of supporting part 23, so as to which two accumulation of heat modules 1 are separately mounted into the positive and negative of supporting part 23 Two sides.Such a structure can save parts count, make the installation of accumulation of heat module 1 more compact, improve the space inside regenerative apparatus Utilization rate.
Further, with reference to Fig. 1 and Fig. 2, regenerative apparatus of the invention also includes being located at the first locating part 2 along accumulation of heat module The substrate 8 of 1 length direction one end, substrate 8 are provided with positioning hole, and one end in accumulation of heat module 1 along its length connects provided with installation Mouth 13, bolt 5 wears positioning hole and mounting interface 13 and fixes accumulation of heat module 1 on the substrate 8, to limit accumulation of heat module 1 along length Spend the free degree in direction.
Preferably, one end is provided with two mounting interfaces 13 to accumulation of heat module 1 along its length, is respectively provided at the phase of accumulation of heat module 1 In adjacent widthwise edges and thickness edge, and the mounting interface 13 in widthwise edges is set away from supporting part 23, in thickness The mounting interface 13 spent on edge, so that each constrained is evenly distributed, improves the fastness of installation away from kink 22.
Preferably, vibration-damped component 4 is provided between mounting interface 13 and substrate 8.Vibration-damped component 4 can be to be provided with through hole along axis Column construction, the vibration being subject to for absorbing regenerative apparatus during packaging, transport and use, protection accumulation of heat module 1.Due to The present invention reduces bolted quantity, correspondingly the number of vibration-damped component 4 is also reduced, can while damping effect is played Reduce the offset of accumulation of heat module 1, while coordinate the reliable constraint along the width of accumulation of heat module 1 and thickness direction, can prevent from storing Thermal modules 1 touch periphery housing.
Specifically, mounting interface 13 is to be located at mounting hole on the lug of accumulation of heat module 1, by bolt 5 outside substrate 8 successively Through after positioning hole, vibration-damped component 4 and mounting hole, locked by nut, passed through between such accumulation of heat module 1 and substrate 8 Vibration-damped component 4 separates, and plays cushioning effect.
The through-thickness of accumulation of heat module 1 is provided with least two layers of heat exchanger tube, and every layer of heat exchanger tube is correspondingly provided with one group of refrigerant pipe and connect Head, every group of refrigerant pipe joint include a gaseous coolant pipe joint 11 and a liquid refrigerants pipe joint 12, adjacent sets refrigerant Parallelogram is enclosed between pipe joint on cross section.Installation for such a binary channels accumulation of heat module 1, as shown in figure 3, Supporting part 23 can be inclined relative to horizontal setting, so that the gaseous coolant pipe joint 11 of each accumulation of heat module 1 is in first In horizontal plane, the liquid refrigerants pipe joint 12 of each accumulation of heat module 1 is in the second horizontal plane.
So that the regenerative apparatus is used for air-conditioner set as an example, when air-conditioner set is in heating mode, due to each accumulation of heat mould Height residing for the gaseous coolant pipe joint 11 of block 1 is identical, and the gaseous state that heat exchanger tube is entered by each gaseous coolant pipe joint 11 is cold Matchmaker's amount is consistent, can make the heat throughout uniform absorption of accumulation of heat module 1, so as to improve the heat storage capacity of regenerative apparatus.Work as air conditioner When group is in defrost pattern, because the height residing for each liquid refrigerants pipe joint 12 is identical, then connect by each liquid refrigerants pipe The liquid refrigerants amount of first 12 entrance heat exchanger tube is consistent, can exclude the influence of Action of Gravity Field, can make the heat release of accumulation of heat module everywhere Amount is uniform, is optimal defrost effect.
If only installing an accumulation of heat module 1, accumulation of heat module 1 is preferably arranged on to the upper surface of supporting part 23, such energy The main by weight of accumulation of heat module 1 is enough born by supporting part 23, stable support force is provided for accumulation of heat module 1.Or this is stored The lower surface that thermal modules 1 are arranged on supporting part 23 is also optional mode.
If desired two accumulation of heat modules 1 are installed, as shown in figure 3, two accumulation of heat modules 1 are separately mounted into supporting part 23 Upper and lower surface, the supporting part 23 being obliquely installed are the slot milling of installation accumulation of heat module 1 thereunder.The area of supporting part 23 is more than The surface area of the accumulation of heat module 1 contacted, two such accumulation of heat module 1 can stagger installation in the direction of the width, so that two All gaseous coolant pipe joints 11 of accumulation of heat module 1 are in first level face, all liquid refrigerants of each accumulation of heat module 1 Pipe joint 12 is in the second horizontal plane, and first level face and the second horizontal plane are arranged at intervals in the height direction.In addition, also The whole height of regenerative apparatus can be reduced.
When supporting part 23 is obliquely installed, for the ease of the installation of the first locating part 2, as shown in figure 3, the accumulation of heat of the present invention Device also includes mounting bracket 6, and the first locating part 2 also includes connecting portion 21, and connecting portion 21 is located at kink 22 away from supporting part 23 One end, connecting portion 21 and side of the kink 22 away from accumulation of heat module 1 in obtuse angle, for the first locating part 2 to be fixed on into peace Shelve on 6.If installing two accumulation of heat modules 1, connecting portion 21 is correspondingly respectively provided with the end of two kinks 22, is formed The first locating part 2 be in antisymmetry structure.
Specifically, as shown in figure 3, mounting bracket 6 includes bottom plate 62, is located at the side plate 63 of the both sides of bottom plate 62 and is located at bottom plate 62 The back plate 61 of rear side, the installing space to form accumulation of heat module 1, two connecting portions are enclosed between bottom plate 62, side plate 63 and back plate 61 21 are separately fixed on different side plates 63, the first locating part 2 is integrally located between two side plates 63, and relative to bottom plate 62 Hanging to set, so as to the slot milling of accumulation of heat module 1 for the lower section of supporting part 23, supporting part 23 is obliquely installed relative to bottom plate 62.
Specifically, the flange to bend inwards is set on the top of side plate 63, and connecting portion 21 can be fixed by multiple fasteners On flange, the connecting portion 21 at the both ends of the first locating part 2 is horizontal.Back plate 61 is used as substrate 8, and accumulation of heat module 1 passes through Bolt 5 is fixed in back plate 61.
In addition, present invention also offers a kind of air-conditioner set, including the regenerative apparatus described in above-described embodiment.By for store Thermal modules 1, which are set, is fixedly mounted structure, and regenerative apparatus can be integrally arranged in air-conditioner set as independent module, in air conditioner Regenerative apparatus can be matched according to demand when group design or installation, or change installation site, it is possible to increase regenerative apparatus Versatility, it is easy to accomplish integration install.It is more stable to be additionally, since the installation of accumulation of heat module 1, was run in air-conditioner set It is less likely to occur the phenomenon that installation loosens when in journey by sustained vibration, reliability during air-conditioner set work can be improved.
In a preferred embodiment, regenerative apparatus is located at the indoor of air-conditioner set, and regenerative apparatus changes with indoor set Hot device is arranged in parallel, for being defrosted to outdoor unit.
When air-conditioner set is in heating mode, the high pressure gaseous refrigerant part of compressor discharge enters as condensation Heat release is condensed in the indoor set heat exchanger of device;Meanwhile another part gaseous coolant branches to each accumulation of heat module 1 by house steward In gaseous coolant pipe joint 11, and enter in heat exchanger tube and stored the heat transfer of gas to heat storage medium, in this process Middle gaseous coolant is converted into liquid refrigerants and flowed out from liquid refrigerants pipe joint 12.Flowed out from indoor set heat exchanger and regenerative apparatus Liquid refrigerants enters as in the outdoor unit heat exchanger of evaporator, and liquid refrigerants forms low-temp low-pressure gaseous coolant quilt by evaporation Compressor sucks.
In the process, due to being mixed with partially liq in the gaseous coolant that enters from gaseous coolant pipe joint 11, if respectively Individual gaseous coolant pipe joint 11 is highly inconsistent, will enter in gas-liquid mixed refrigerant it is fashionable, gaseous coolant upwards string walk, into position Put in higher joint;And liquid refrigerants produces gas-liquid lamination, position because Action of Gravity Field flows into the relatively low mouth of pipe in position Liquid refrigerants is easily gathered in relatively low joint, hinders pipeline unimpeded, is caused from the cold of each gaseous coolant pipe joint 11 entrance Matchmaker's amount is inconsistent, finally makes that the inside accumulation of heat of accumulation of heat module 1 is uneven, and heat storage capacity is relatively low.And the peace of one embodiment of the invention Dress form makes the highly consistent of each gaseous coolant pipe joint 11, then the liquid refrigerants entered by each gaseous coolant pipe joint 11 Amount is consistent, the inlet of gaseous coolant is kept in balance between each joint, can absorb the heat throughout of accumulation of heat module 1 equal It is even, improve the heat storage capacity of regenerative apparatus.
When air-conditioner set is in defrost pattern, refrigerant circulation branch road is closed where indoor set heat exchanger, by house steward to Each liquid refrigerants pipe joint 12 of regenerative apparatus is passed through liquid refrigerants, and liquid refrigerants, which is flowed into heat exchanger tube, to be absorbed in heating mode Under be stored in heat in heat storage medium, liquid refrigerants is converted to gaseous coolant from gaseous coolant pipe joint during heat exchange 11 outflows.Then low-temp low-pressure gaseous coolant is sucked by compressor, and high pressure gaseous refrigerant enters as cold after overcompression Defrost is carried out in the outdoor unit heat exchanger of condenser.
In the process, each liquid refrigerants pipe joint 12 is highly consistent, then is entered by each liquid refrigerants pipe joint 12 It is consistent to enter the liquid refrigerants amount of heat exchanger tube, excludes the influence of Action of Gravity Field, the thermal discharge of accumulation of heat module everywhere can be made uniform, from And it is optimal defrost effect.
A kind of regenerative apparatus provided by the present invention and air-conditioner set are described in detail above.It is used herein Specific embodiment is set forth to the principle and embodiment of the present invention, and the explanation of above example is only intended to help and managed Solve the method and its core concept of the present invention.It should be pointed out that for those skilled in the art, do not departing from On the premise of the principle of the invention, some improvement and modification can also be carried out to the present invention, these are improved and modification also falls into this hair In bright scope of the claims.

Claims (11)

1. a kind of regenerative apparatus, it is characterised in that including accumulation of heat module (1), the first locating part (2) and the second locating part (3), institute A face for stating accumulation of heat module (1) through-thickness is sticked on first locating part (2), and second locating part (3) is whole Body presses and across another face of accumulation of heat module (1) through-thickness, and the end of second locating part (3) and institute The first locating part (2) connection is stated, first locating part (2) and the second locating part (3) limit accumulation of heat module (1) edge jointly The free degree of thickness direction.
2. regenerative apparatus according to claim 1, it is characterised in that first locating part (2) includes supporting part (23) With kink (22), the supporting part (23) limits the free degree of accumulation of heat module (1) through-thickness, the kink (22) end of the supporting part (23) along accumulation of heat module (1) width is located at, the width is perpendicular to the storage The direction of thermal modules (1) refrigerant pipe joint, the supporting part (23) are provided with support (7), and the accumulation of heat module (1) is positioned at described Between kink (22) and support (7), the kink (22) and support (7) limit the accumulation of heat module (1) along width jointly The free degree in direction.
3. regenerative apparatus according to claim 2, it is characterised in that including two accumulation of heat modules (1), the support The both ends of width of the portion (23) along the accumulation of heat module (1) are respectively equipped with the oppositely extending kink (22), described The support (7) is equipped with the positive and negative of supporting part (23), two accumulation of heat modules (1) are separately mounted to the supporting part (23) tow sides.
4. the regenerative apparatus according to Claims 2 or 3, it is characterised in that second locating part (3) is along the accumulation of heat mould The width of block (1) is set, and the both ends of second locating part (3) are connected to the kink (22) and support (7) On.
5. according to any described regenerative apparatus of claims 1 to 3, it is characterised in that also include being located at first locating part (2) along the substrate (8) of accumulation of heat module (1) length direction one end, the length direction is along accumulation of heat module (1) refrigerant pipe The direction of joint, the substrate (8) are provided with positioning hole, and one end on the accumulation of heat module (1) along its length is provided with installation Interface (13), bolt (5) wears the positioning hole and accumulation of heat module (1) is fixed on the substrate by the mounting interface (13) (8) on, to limit the free degree of the accumulation of heat module (1) along its length.
6. regenerative apparatus according to claim 5, it is characterised in that the mounting interface (13) and the substrate (8) it Between be provided with vibration-damped component (4).
7. the regenerative apparatus according to Claims 2 or 3, it is characterised in that the accumulation of heat module (1) has multigroup refrigerant pipe Joint, every group of refrigerant pipe joint includes a gaseous coolant pipe joint (11) and a liquid refrigerants pipe joint (12), adjacent Parallelogram is enclosed on cross section between the group refrigerant pipe joint, the supporting part (23) is inclined relative to horizontal Set, so that the gaseous coolant pipe joint (11) of each accumulation of heat module (1) is in first level face, each storage The liquid refrigerants pipe joint (12) of thermal modules (1) is in the second horizontal plane.
8. regenerative apparatus according to claim 7, it is characterised in that also including mounting bracket (6), first locating part (2) connecting portion (21) is also included, it is described in the one end of the kink (22) away from supporting part (23) on the connecting portion (21) Connecting portion (21) is used to first locating part (2) being fixed on mounting bracket (6).
9. regenerative apparatus according to claim 8, it is characterised in that also include being located at first locating part (2) along storage The substrate (8) of thermal modules (1) length direction one end, the mounting bracket (6) include bottom plate (62), are located at the bottom plate (62) both sides Side plate (63) and the back plate (61) that is located on rear side of bottom plate (62), enclosed between the bottom plate (62), side plate (63) and back plate (61) Conjunction forms the installing space of the accumulation of heat module (1), and two connecting portions (21) are separately fixed on different side plate (63), The back plate (61) is obliquely installed as the substrate (8), the supporting part (23) relative to the bottom plate (62).
10. a kind of air-conditioner set, it is characterised in that including any described regenerative apparatus of claim 1~9.
11. air-conditioner set according to claim 10, it is characterised in that the regenerative apparatus is located at the interior of air-conditioner set Side, and be arranged in parallel with the indoor set heat exchanger, for being defrosted to outdoor unit.
CN201710705787.5A 2017-08-17 2017-08-17 Heat storage device and air conditioning unit Active CN107421036B (en)

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH03160234A (en) * 1989-11-20 1991-07-10 Matsushita Electric Ind Co Ltd Support device for compressor
CN103851943A (en) * 2012-12-05 2014-06-11 珠海格力电器股份有限公司 Heat accumulator and air conditioner with heat accumulator
CN104214848A (en) * 2014-08-11 2014-12-17 珠海格力电器股份有限公司 Heat accumulator and outdoor unit of air conditioner
CN104748251A (en) * 2013-12-25 2015-07-01 珠海格力电器股份有限公司 Heat accumulator, compressor assembly structure and air conditioner having same
CN207095358U (en) * 2017-08-17 2018-03-13 珠海格力电器股份有限公司 Regenerative apparatus and air-conditioner set

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH03160234A (en) * 1989-11-20 1991-07-10 Matsushita Electric Ind Co Ltd Support device for compressor
CN103851943A (en) * 2012-12-05 2014-06-11 珠海格力电器股份有限公司 Heat accumulator and air conditioner with heat accumulator
CN104748251A (en) * 2013-12-25 2015-07-01 珠海格力电器股份有限公司 Heat accumulator, compressor assembly structure and air conditioner having same
CN104214848A (en) * 2014-08-11 2014-12-17 珠海格力电器股份有限公司 Heat accumulator and outdoor unit of air conditioner
CN207095358U (en) * 2017-08-17 2018-03-13 珠海格力电器股份有限公司 Regenerative apparatus and air-conditioner set

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