CN209639297U - A kind of airborne Double-working-condition cooling device - Google Patents

A kind of airborne Double-working-condition cooling device Download PDF

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Publication number
CN209639297U
CN209639297U CN201920153243.7U CN201920153243U CN209639297U CN 209639297 U CN209639297 U CN 209639297U CN 201920153243 U CN201920153243 U CN 201920153243U CN 209639297 U CN209639297 U CN 209639297U
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China
Prior art keywords
heat transfer
conventional heat
outlet
transfer module
module
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CN201920153243.7U
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Chinese (zh)
Inventor
钱文平
季婷
翁晓华
顾蓉
孙佳佳
钱亚飞
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Zhongtian (jiangsu) Defence Equipment Co Ltd
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Zhongtian (jiangsu) Defence Equipment Co Ltd
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Abstract

The utility model relates to a kind of airborne Double-working-condition cooling devices, including compressing refrigeration module, conventional heat transfer module, the hot journey of heat exchanger one outlet of compression refrigeration module connects the import of heat load, conventional heat transfer module includes condenser, fan, fluid reservoir, water pump, flowmeter, the outlet of heat load connects conventional heat transfer module inlet, conventional heat transfer module inlet is successively through the condenser with fan, fluid reservoir, water pump, flowmeter connects conventional heat transfer module outlet, conventional heat transfer module outlet and compression refrigeration module import are pulling bayonet joint, it is connected between plug connector using hose, compression refrigeration module import connects the hot journey import of heat exchanger one of compression refrigeration module.Its structure is simple, easy to use, safety, can switch conventional heat transfer or compression refrigeration or combination heat exchange refrigeration radiating according to different operating temperatures, the temperature requirement of electronics heat load, strong applicability can be met under hot conditions and cryogenic conditions.

Description

A kind of airborne Double-working-condition cooling device
Technical field
The utility model relates to a kind of cooling device, specifically a kind of airborne Double-working-condition cooling device.
Background technique
At present airborne cooling device can only by conventional heat transfer or can only be by compressing refrigeration work, functional limitation, and Individually refrigeration is not applied for the big environment of environment temperature span.
Utility model content
In view of the above-mentioned problems, the utility model provides, a kind of structure is simple, and easy to use, safety can be according to different Operating temperature switches conventional heat transfer or compression refrigeration or combination heat exchange refrigeration radiating, can under hot conditions and cryogenic conditions Meet the temperature requirement of electronics heat load, the airborne Double-working-condition cooling device of strong applicability
The technical solution adopted in the utility model is: a kind of airborne Double-working-condition cooling device, including compression refrigeration module, pressure The hot journey of heat exchanger one outlet of contracting refrigeration module connects the import of heat load, it is characterised in that: and it further include conventional heat transfer module, it is conventional Heat exchange module includes condenser, fan, fluid reservoir, water pump, flowmeter, and the outlet of heat load connects conventional heat transfer module inlet, often Rule heat exchange module import successively connects conventional heat transfer module outlet through the condenser with fan, fluid reservoir, water pump, flowmeter, conventional Heat exchange module outlet and compression refrigeration module import are pulling bayonet joint, are connected between plug connector using hose, compression refrigeration mould Block import connects the hot journey import of heat exchanger one of compression refrigeration module.
Further, it is adopted between conventional heat transfer module inlet and heat load, between the outlet of compression refrigeration module and heat load It is connected with the hose with self-closing quick connector.
Further, the compression refrigeration module includes compressor, the condenser with fan, liquid storage device, expansion valve, heat exchange Device, compressor successively connect another hot journey import of heat exchanger through the condenser with fan, liquid storage device, expansion valve, and heat exchanger is another Hot journey outlet takes back compressor.
Further, the fluid reservoir is outer around electric heating coil pipe or peripheral hardware water or steam heating jacket.
Further, the conventional heat transfer module inlet also connects flowmeter through by-passing valve.
Further, thermometer is equipped with before and after flowmeter.
Conventional heat transfer module is connect with compression refrigeration module by the hose with pulling bayonet joint, cooling device and heat load Between using self-closing quick connector hose connect, form the cooling system of a set of completion;The cooling returned from the import of heat load Liquid is under overbottom pressure effect, and into this cooling device, at low ambient temperatures, compressor does not work, and coolant liquid is directly through conventional heat transfer The condenser of module, water tank, water pump, flowmeter heat exchange are sent through the hose with self-closing quick connector to compression refrigeration mould after cooling down Block import, and connect heat load import through the hot journey of heat exchanger one, the outlet of compression refrigeration module and return coolant liquid, electricity is set on water tank Heating coil takes into account the coolant liquid supercooling heating under ultra-low temperature surroundings, it is ensured that the normal conveying of coolant liquid can also pass through by-passing valve It directly transports part high temperature coolant and mixes realization with the coolant liquid of supercooling;Under high temperature environment, machine operation is compressed, is changed through conventional Coolant liquid after the heat exchange of hot device is in the hot journey of heat exchanger one and after another hot Cheng Jinhang heat exchange, then with certain flow, pressure, temperature Degree is delivered to electronic equipment heat load import, so recycles.
Can according to operating temperature select working method, by the heat that electronics heat load distributes be discharged to atmosphere it is heat sink in, It can guarantee the safety and stability reliably working of electronics heat load, strong applicability in low temperature environment and hot environment.
Detailed description of the invention
Fig. 1 is the utility model structure principle chart.
In figure: conventional heat transfer module 1, conventional heat transfer module inlet 101, conventional heat transfer module outlet 102, compression refrigeration mould Block 2, compression refrigeration module import 201, compression refrigeration module outlet 202, heat load 3, heat load import 301, heat load outlet 302, the condenser 4,41 with fan, it is water tank 5, electric heating coil pipe 6, water pump 7, flowmeter 8, compressor 9, liquid storage device 10, swollen Swollen valve 11, heat exchanger 12, plug connector hose 13, self-closing quick connector hose 14, by-passing valve 15.
Specific embodiment
It is described further below in conjunction with drawings and examples.
Shown in Fig. 1: a kind of airborne Double-working-condition cooling device includes conventional heat transfer module 1, compression refrigeration module 2, compression system Cold module 2 includes compressor 9, the condenser 41 with fan, liquid storage device 10, expansion valve 11, heat exchanger 12, and compressor is successively through band wind Condenser, liquid storage device, the expansion valve of fan connect another hot journey import of heat exchanger, and another hot journey outlet of heat exchanger takes back compressor, The hot journey import and export of heat exchanger one of compression refrigeration module connects compression refrigeration module warp, outlet 201,202 respectively;Conventional heat transfer mould Block 1 includes the condenser 4 with fan, fluid reservoir 5, water pump 7, flowmeter 8 and electric heating coil pipe 6, the heat load outlet of heat load 3 302 connect conventional heat transfer module inlet 101, conventional heat transfer the module inlet 101 successively condenser 4 of tape splicing fan, fluid reservoir 5, water 7, flowmeter 8 are pumped, fluid reservoir 5 is outer, and conventional heat transfer module inlet 101 also connects flowmeter through by-passing valve 15 around electric heating coil pipe 6, stream Meter 8 is followed by conventional heat transfer module outlet 102;Conventional heat transfer module outlet 102 and compression refrigeration module import 201 are plug Connector hose 13 connects, and between conventional heat transfer module inlet 101 and heat load outlet 302, compresses refrigeration module outlet 202 and heat It loads and is connected between import 301 using self-closing quick connector hose 14.

Claims (6)

1. a kind of airborne Double-working-condition cooling device, including compression refrigeration module compress the hot journey of heat exchanger one outlet of refrigeration module Connect the import of heat load, it is characterised in that: further include conventional heat transfer module, conventional heat transfer module includes condenser, fan, liquid storage Tank, water pump, flowmeter, the outlet of heat load connect conventional heat transfer module inlet, and conventional heat transfer module inlet is successively through with fan Condenser, fluid reservoir, water pump, flowmeter connect conventional heat transfer module outlet, conventional heat transfer module outlet and compression refrigeration module into Mouth is pulling bayonet joint, is connected between plug connector using hose, and compression refrigeration module import connects the heat exchanger for compressing refrigeration module One hot journey import.
2. a kind of airborne Double-working-condition cooling device according to claim 1, it is characterized in that: conventional heat transfer module inlet and heat It is connected between load, between the outlet of compression refrigeration module and heat load using the hose with self-closing quick connector.
3. a kind of airborne Double-working-condition cooling device according to claim 1, it is characterized in that: the compression refrigeration module includes Compressor, the condenser with fan, liquid storage device, expansion valve, heat exchanger, compressor successively through the condenser with fan, liquid storage device, Expansion valve connects another hot journey import of heat exchanger, and another hot journey outlet of heat exchanger takes back compressor.
4. a kind of airborne Double-working-condition cooling device according to claim 1, it is characterized in that: the fluid reservoir is outer around electric heating Coil pipe or peripheral hardware water or steam heating jacket.
5. a kind of airborne Double-working-condition cooling device according to claim 1, it is characterized in that: the conventional heat transfer module inlet Also flowmeter is connect through by-passing valve.
6. a kind of airborne Double-working-condition cooling device according to claim 1, it is characterized in that: being equipped with temperature before and after flowmeter Meter.
CN201920153243.7U 2019-01-29 2019-01-29 A kind of airborne Double-working-condition cooling device Active CN209639297U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920153243.7U CN209639297U (en) 2019-01-29 2019-01-29 A kind of airborne Double-working-condition cooling device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920153243.7U CN209639297U (en) 2019-01-29 2019-01-29 A kind of airborne Double-working-condition cooling device

Publications (1)

Publication Number Publication Date
CN209639297U true CN209639297U (en) 2019-11-15

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CN201920153243.7U Active CN209639297U (en) 2019-01-29 2019-01-29 A kind of airborne Double-working-condition cooling device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112566468A (en) * 2020-12-10 2021-03-26 南京航空航天大学 Airborne self-adaptive heat exchange system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112566468A (en) * 2020-12-10 2021-03-26 南京航空航天大学 Airborne self-adaptive heat exchange system

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