CN206755639U - Change of current cabinet and refrigerant cooling system integrated device - Google Patents

Change of current cabinet and refrigerant cooling system integrated device Download PDF

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Publication number
CN206755639U
CN206755639U CN201720497455.8U CN201720497455U CN206755639U CN 206755639 U CN206755639 U CN 206755639U CN 201720497455 U CN201720497455 U CN 201720497455U CN 206755639 U CN206755639 U CN 206755639U
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China
Prior art keywords
change
current cabinet
condensation
cooling system
refrigerant cooling
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CN201720497455.8U
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Chinese (zh)
Inventor
张羽
王京
蒋世用
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Gree Electric Appliances Inc of Zhuhai
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Gree Electric Appliances Inc of Zhuhai
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Abstract

A kind of change of current cabinet and refrigerant cooling system integrated device, including change of current cabinet and refrigerant cooling system.Refrigerant cooling system includes compressor assembly, condensation and evaporative component, and compressor assembly is on change of current cabinet and is located at its side, condensation and evaporative component on change of current cabinet and is located at the both sides of compressor assembly respectively;Condensation includes condenser and the first blower fan, condenser are connected with compressor assembly, and the first blower fan is used to take away the heat that the refrigerant in condenser discharges;Evaporative component includes evaporator and the second blower fan, evaporator are connected with compressor assembly, and the second blower fan is used to air-flow blowing to change of current cabinet to be radiated.So compressor assembly, condensation and the advance rational deployment of evaporative component are installed and debugged without professional on change of current cabinet;Refrigerant pipeline is preset, and is advantageous to supercooling, the parameter designing of overheat of refrigerant cooling system, so as to realize being precisely controlled for cabinet temperature, and then is improved overall performance.

Description

Change of current cabinet and refrigerant cooling system integrated device
Technical field
Change of current cabinet technical field is the utility model is related to, is integrally filled more particularly to a kind of change of current cabinet and refrigerant cooling system Put.
Background technology
In large commercial air conditioner industry, startup cabinet, converter cabinet and frequency converter equipment that such as air conditioner cold water unit uses, When air conditioner cold water unit is in power generation mode, the refrigeration system of unit is in run-stopping status;And wherein change of current cabinet conduct The critical component of generating still needs to normal operation.The common mode that is radiated to change of current cabinet is on the market at present:It is attached in unit The nearly outer machine of refrigerant cooling system provided with corresponding power radiating grade, to be radiated to change of current cabinet.But use such refrigerant The outer machine of cooling system has the following disadvantages to change of current cabinet heat radiation:When the outer machine of refrigerant cooling system is used for change of current cabinet heat radiation, its Outer machine is necessarily required to refrigerant pipeline with interior machine and connected, and the arrangement of refrigerant pipeline is difficult to design under the engineering-environment of complexity, and one Denier designs unreasonable the problem of change of current in-cabinet temperature will be caused too high or too low, therefore What is more causes hardware damage to cause machine The problem of group can not be run.So professional and technical personnel is needed to carry out the debugging of specialty, installation procedure trouble after installation.
Utility model content
Based on this, it is necessary to provide a kind of without debugging, change of current cabinet easy for installation and refrigerant cooling system integrated device.
A kind of change of current cabinet and refrigerant cooling system integrated device, including:
Change of current cabinet;And
Refrigerant cooling system, including compressor assembly, condensation and evaporative component, the compressor assembly is located at described On change of current cabinet and it is located at its side, the condensation and the evaporative component on the change of current cabinet and respectively positioned at described The both sides of compressor assembly;The condensation includes condenser and the first blower fan, the condenser and the compressor assembly Connection, first blower fan are used to take away the heat that the refrigerant in the condenser discharges;The evaporative component includes evaporation Device and the second blower fan, the evaporator are connected with the compressor assembly, and second blower fan is used to air-flow blowing to described change Cabinet is flowed to be radiated.
Above-mentioned change of current cabinet and refrigerant cooling system integrated device, by the compressor assembly of refrigerant cooling system, condensation And the advance rational deployment of evaporative component installs and debugged respectively refrigerant cooling system and the change of current without professional on change of current cabinet Cabinet, it is easy for installation, installation and debugging cost are saved, avoiding the length change of refrigerant pipeline causes change of current in-cabinet temperature too high Or the problem of too low;And because refrigerant pipeline is preset, be advantageous to supercooling, the parameter designing of overheat of refrigerant cooling system, from And being precisely controlled for cabinet temperature is realized, and then overall performance is improved, and reduce space-consuming.
In one of the embodiments, the compressor assembly is located at the side wall of the change of current cabinet, and the condensation is set In the top of the change of current cabinet, the evaporative component is located at the back side of the change of current cabinet.
In one of the embodiments, the compressor assembly and the condensation are located at the outside of the change of current cabinet, The evaporative component is located at the inside of the change of current cabinet.
In one of the embodiments, in addition to combined shell, the combined shell are connected to the change of current cabinet, and described Combined shell houses the compressor assembly and the condensation.
In one of the embodiments, the combined shell and the change of current cabinet cooperatively form rectangular parallelepiped structure.
In one of the embodiments, the combined shell includes the compressor housing and receipts for housing the compressor assembly Hold the condensation housing of the condensation.
In one of the embodiments, the condensation housing corresponds to the position of first blower fan and is provided with air outlet.
In one of the embodiments, the compressor housing connects with the condensation housing, for described in connection Compressor assembly and the refrigerant pipeline of the condensation pass through.
In one of the embodiments, the combined shell also includes connection housing, and the compressor housing passes through described Connection housing connects with the condensation housing.
In one of the embodiments, the quantity of the evaporative component and/or the condensation is multiple.
Brief description of the drawings
Fig. 1 is the change of current cabinet of an embodiment and the structure chart of refrigerant cooling system integrated device;
Fig. 2 is the decomposition chart of change of current cabinet shown in Fig. 1 and refrigerant cooling system integrated device;
Fig. 3 is another viewing angle constructions figure of change of current cabinet shown in Fig. 1 and refrigerant cooling system integrated device;
Fig. 4 is the view in transverse section of change of current cabinet shown in Fig. 3 and refrigerant cooling system integrated device.
Embodiment
For the ease of understanding the utility model, the utility model is more fully retouched below with reference to relevant drawings State.Preferred embodiment of the present utility model is given in accompanying drawing.But the utility model can come in fact in many different forms It is existing, however it is not limited to embodiment described herein.On the contrary, the purpose for providing these embodiments is made to public affairs of the present utility model Open the understanding more thorough and comprehensive of content.
It should be noted that when element is referred to as " being fixed on " another element, it can be directly on another element Or there may also be element placed in the middle.When an element is considered as " connection " another element, it can be directly connected to To another element or it may be simultaneously present centering elements.
Unless otherwise defined, all of technologies and scientific terms used here by the article is led with belonging to technology of the present utility model The implication that the technical staff in domain is generally understood that is identical.It is simply in term used in the description of the present utility model herein The purpose of description specific embodiment, it is not intended that in limitation the utility model.Term as used herein "and/or" includes The arbitrary and all combination of one or more related Listed Items.
Reference picture 1, the change of current cabinet and refrigerant cooling system integrated device 10 of the embodiment of the utility model one, including the change of current Cabinet 100 and refrigerant cooling system 200.
Reference picture 2 and Fig. 3, refrigerant cooling system 200 include compressor assembly 210, condensation 220 and evaporative component 230.Compressor assembly 210 is on change of current cabinet 100 and positioned at the side of change of current cabinet 100.Condensation 220 and evaporative component 230 on change of current cabinet 100, and is located at the both sides of compressor assembly 210 respectively.
With continued reference to Fig. 2, condensation 220 includes the blower fan 222 of condenser 221 and first, condenser 221 and compressor set Part 210 connects, and the first blower fan 222 is used to take away the heat that the refrigerant in condenser 221 discharges.
With continued reference to Fig. 3, evaporative component 230 includes the blower fan 232 of evaporator 231 and second, evaporator 231 and compressor set Part 210 connects, and the second blower fan 232 is used to air-flow blowing to change of current cabinet 100 to be radiated.
Above-mentioned change of current cabinet and refrigerant cooling system integrated device 10, by the compressor assembly 210 of refrigerant cooling system 200, Condensation 220 and 230 advance rational deployment of evaporative component are installed and debugged respectively without professional on change of current cabinet 100 Refrigerant cooling system 200 and change of current cabinet 100, it is easy for installation, installation and debugging cost have been saved, has avoided the length of refrigerant pipeline Change causes the problem of too high or too low for temperature in change of current cabinet 100;And because refrigerant pipeline is preset, be advantageous to refrigerant radiating system The supercooling of system 200, the parameter designing of overheat, so as to realize being precisely controlled for the cabinet temperature of change of current cabinet 100, and then improve complete machine Performance, and reduce space-consuming.
The operation principle of the change of current cabinet and refrigerant cooling system integrated device 10 is as follows:Start change of current cabinet 100 and refrigerant dissipates Hot systems 200, refrigerant enter the gas that compressor assembly 210 is compressed into HTHP, turn subsequently into condenser 221 from gaseous state Liquid release heat is melted into, the first blower fan 222 takes away heat;Liquid refrigerants changes into gaseous state into evaporator 231, absorbs heat Amount makes air cooling-down obtain cold air, and the cold air of exchange is blowed to change of current cabinet 100 and radiated by the second blower fan 232.
The change of current cabinet and refrigerant cooling system integrated device 10 can be used for large-scale handpiece Water Chilling Units, centrifuge and large-scale screw machine Etc. in equipment.
In one of the embodiments, compressor assembly 210 is located at the side wall of change of current cabinet 100, and condensation 220 is located at and changed The top of cabinet 100 is flowed, evaporative component 230 is located at the back side of change of current cabinet 100.Such change of current cabinet 100 is relative with compressor assembly 210 A side wall can be used for engineering connection installation etc., it is convenient and swift.Compressor assembly 210 is located at the side wall of change of current cabinet 100, is advantageous to System personnel is facilitated to check parameter and the maintenance of compressor assembly 210.The front of change of current cabinet 100 is vacated, convenient to change of current cabinet 100 Operation.And condensation 220 is located to the top of change of current cabinet 100, be advantageous to taking away for heat.Secondly evaporative component 230 is set In the back side typically set by miscellaneous part, also avoid influenceing the problem of attractive in appearance.
Specifically in the present embodiment, change of current cabinet 100 is photovoltaic change of current cabinet.It is appreciated that compressor assembly 210 includes compression The miscellaneous parts such as machine.
Further, compressor assembly 210 and condensation 220 are located at the outside of change of current cabinet 100, and evaporative component 230 is set In the back side of change of current cabinet 100 and positioned at the inside of change of current cabinet 100.
Further, condensation 220 and/or the quantity of evaporative component 230 are multiple.Multiple condensations 220 and/ Or length direction distribution of the evaporative component 230 along change of current cabinet 100.Specifically in the present embodiment, condensation 220 and/or evaporation The quantity of component 230 is two.It is appreciated that condensation 220 and/or the quantity of evaporative component 230 can be set as needed Put.
Further, condenser 221 dissipates located at the circumference of the fan blade of the first blower fan 222 so as to reduce change of current cabinet and refrigerant The space-consuming of hot systems integrated device 10.Further, condenser 221 can be copper pipe fin type condenser, and full aluminium is micro- logical The condensers such as road.Further, the first blower fan 222 is condensing axial flow fan.
Further, the second blower fan 232 is located at the lower section of evaporator 231.Because the density of cold air is big, under being so located at Cold air preferably can be blowed to change of current cabinet 100 by the second blower fan 232 of side, to be radiated to change of current cabinet 100.
With continued reference to Fig. 1, in one of the embodiments, change of current cabinet and refrigerant cooling system integrated device 10 also include group Housing 240 is closed, combined shell 240 is connected to change of current cabinet 100, and combined shell 240 houses compressor assembly 210 and condensation 220。
Further, combined shell 240 and change of current cabinet 100 cooperatively form rectangular parallelepiped structure.So that change of current cabinet and cold The appearance looks elegant of matchmaker's cooling system integrated device 10.
Further, combined shell 240 includes the compressor housing 241 for housing compressor assembly 210 and houses condensation group The condensation housing 242 of part 220.
Further, the position of corresponding first blower fan 222 of condensation housing 242 is provided with air outlet (figure is not marked).
Further, compressor housing 241 connects with condensation housing 242, for connection compressor assembly 210 with it is cold The refrigerant pipeline of solidifying component 220 passes through.Specifically in the present embodiment, change of current cabinet 100 connects with compressor housing 241, for even 230 refrigerant pipelines for connecing compressor assembly 210 and evaporative component pass through.
Specifically, combined shell 240 also includes connection housing 243, and compressor housing 241 is logical with condensation housing 242 Connection housing 243 is crossed to connect.
Reference picture 4, in one of the embodiments, two change of current cabinet heat radiation plates being oppositely arranged are provided with change of current cabinet 100 110.Compressor assembly 210 includes being used for the radiator 211 for radiating to the controller 212 of compressor assembly 210, radiator 211 In change of current cabinet 100, radiator 211 is set close to one end of change of current cabinet heat radiation plate 110.Evaporative component 230 is located at change of current cabinet 100 inside and located at the other end of change of current cabinet heat radiation plate 110 so that evaporative component 230 by air-flow from two change of current cabinet heat radiations The heat dissipation channel that plate 110 is formed blows to radiator 211 and cooled down.It is appreciated that in other embodiments, radiator 211 can Only to carry out cooling radiating to change of current cabinet heat radiation plate 110 located at the outside of change of current cabinet 100, evaporative component 230.
The energy of change of current cabinet and refrigerant cooling system integrated device 10 is so taken full advantage of, what evaporative component 230 was blown out Cold air cannot be only used for the radiating and cooling of change of current cabinet 100, it may also be used for the controller 212 of refrigerant cooling system 200 radiates. This radiator structure changes the radiating mode of traditional controller 212 of refrigerant cooling system 200, can reduce the change of current well The temperature of cabinet 100 and radiator 211, radiating efficiency are high;And the volume of radiator 211, integrated level and space utilization need not be changed Rate is high.
Further, change of current cabinet 100 also includes the installing plate 120 for being used to install the controller 212 of change of current cabinet 100, installation Plate 120 located at change of current cabinet heat radiation plate 110 close to one end of radiator 211, installing plate 120 it is vertical with change of current cabinet heat radiation plate 110 or It is obliquely installed, has between installing plate 120 and change of current cabinet heat radiation plate 110 and be arranged at intervals, position of the radiator 211 with respect to the interval Set, so that the heat dissipation channel that evaporative component 230 forms air-flow from two change of current cabinet heat radiation plates 110 and installing plate 120 blows to Radiator 211 is cooled down.
Specifically in the present embodiment, installing plate 120 is vertically arranged with change of current cabinet heat radiation plate 110.
Further, change of current cabinet 100 also includes wind-guiding baffle plate 130, and the both ends of wind-guiding baffle plate 130 are connected to installing plate 120 with away from radiator 211 change of current cabinet heat radiation plate 110, by the change of current cabinet heat radiation plate 110 away from radiator 211 with peace Interval closing between loading board 120.
Further, change of current cabinet 100 is provided with mounting hole (figure is not marked), and radiator 212 stretches into change of current cabinet 100 through mounting hole It is interior.Specifically in the present embodiment, change of current cabinet 100 is photovoltaic change of current cabinet.
Further, compressor assembly 210 has a controller 212, controller 212 located at the outside of change of current cabinet 100 and with Radiator 211 is adjacent and sets.It is appreciated that compressor assembly 210 includes the grade miscellaneous part of compressor 213.
Each technical characteristic of embodiment described above can be combined arbitrarily, to make description succinct, not to above-mentioned reality Apply all possible combination of each technical characteristic in example to be all described, as long as however, the combination of these technical characteristics is not deposited In contradiction, the scope that this specification is recorded all is considered to be.
Embodiment described above only expresses several embodiments of the present utility model, and its description is more specific and detailed, But therefore it can not be interpreted as the limitation to utility model patent scope.It should be pointed out that the common skill for this area For art personnel, without departing from the concept of the premise utility, various modifications and improvements can be made, these are belonged to The scope of protection of the utility model.Therefore, the protection domain of the utility model patent should be determined by the appended claims.

Claims (10)

1. a kind of change of current cabinet and refrigerant cooling system integrated device, it is characterised in that including:
Change of current cabinet (100);And
Refrigerant cooling system (200), including compressor assembly (210), condensation (220) and evaporative component (230), the pressure Contracting thermomechanical components (210) are located on the change of current cabinet (100) and are located at its side, the condensation (220) and the evaporation group Part (230) is on the change of current cabinet (100) and respectively positioned at the both sides of the compressor assembly (210);The condensation (220) condenser (221) and the first blower fan (222) are included, the condenser (221) is connected with the compressor assembly (210), First blower fan (222) is used to take away the heat that the refrigerant in the condenser (221) discharges;The evaporative component (230) evaporator (231) and the second blower fan (232) are included, the evaporator (231) is connected with the compressor assembly (210), Second blower fan (232) is used to air-flow blowing to the change of current cabinet (100) to be radiated.
2. change of current cabinet as claimed in claim 1 and refrigerant cooling system integrated device, it is characterised in that the compressor assembly (210) side wall of the change of current cabinet (100) is located at, the condensation (220) is located at the top of the change of current cabinet (100), institute State the back side that evaporative component (230) is located at the change of current cabinet (100).
3. change of current cabinet as claimed in claim 2 and refrigerant cooling system integrated device, it is characterised in that the compressor assembly (210) and the condensation (220) is located at the outside of the change of current cabinet (100), and the evaporative component (230) is changed positioned at described Flow the inside of cabinet (100).
4. change of current cabinet as claimed in claim 1 and refrigerant cooling system integrated device, it is characterised in that also including combined shell (240), the combined shell (240) is connected to the change of current cabinet (100), and the combined shell (240) houses the compression Thermomechanical components (210) and the condensation (220).
5. change of current cabinet as claimed in claim 4 and refrigerant cooling system integrated device, it is characterised in that the combined shell (240) and the change of current cabinet (100) cooperatively forms rectangular parallelepiped structure.
6. change of current cabinet as claimed in claim 4 and refrigerant cooling system integrated device, it is characterised in that the combined shell (240) include housing the compressor housing (241) of the compressor assembly (210) and house the cold of the condensation (220) Solidifying assembly housing (242).
7. change of current cabinet as claimed in claim 6 and refrigerant cooling system integrated device, it is characterised in that the condensation shell The position of corresponding first blower fan (222) of body (242) is provided with air outlet.
8. change of current cabinet as claimed in claim 6 and refrigerant cooling system integrated device, it is characterised in that the compressor housing (241) connected with the condensation housing (242), for connecting the compressor assembly (210) and the condensation (220) refrigerant pipeline passes through.
9. change of current cabinet as claimed in claim 8 and refrigerant cooling system integrated device, it is characterised in that the combined shell is also Including connection housing (243), the compressor housing (241) passes through the connection housing (243) and the condensation housing (242) connect.
10. change of current cabinet and refrigerant cooling system integrated device as described in any one of claim 1~9, it is characterised in that described The quantity of evaporative component (230) and/or the condensation (220) is multiple.
CN201720497455.8U 2017-05-05 2017-05-05 Change of current cabinet and refrigerant cooling system integrated device Active CN206755639U (en)

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Application Number Priority Date Filing Date Title
CN201720497455.8U CN206755639U (en) 2017-05-05 2017-05-05 Change of current cabinet and refrigerant cooling system integrated device

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Application Number Priority Date Filing Date Title
CN201720497455.8U CN206755639U (en) 2017-05-05 2017-05-05 Change of current cabinet and refrigerant cooling system integrated device

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Publication Number Publication Date
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106949652A (en) * 2017-05-05 2017-07-14 珠海格力电器股份有限公司 Change of current cabinet and refrigerant cooling system integrated device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106949652A (en) * 2017-05-05 2017-07-14 珠海格力电器股份有限公司 Change of current cabinet and refrigerant cooling system integrated device

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