CN104154616A - Heat dissipation system and work method thereof - Google Patents

Heat dissipation system and work method thereof Download PDF

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Publication number
CN104154616A
CN104154616A CN201410402348.3A CN201410402348A CN104154616A CN 104154616 A CN104154616 A CN 104154616A CN 201410402348 A CN201410402348 A CN 201410402348A CN 104154616 A CN104154616 A CN 104154616A
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CN
China
Prior art keywords
heat
space
refrigerant
cooling system
monolithic
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Pending
Application number
CN201410402348.3A
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Chinese (zh)
Inventor
朱飞
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JIANGSU SHENCHEN COMMUNICATION TECHNOLOGY Co Ltd
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JIANGSU SHENCHEN COMMUNICATION TECHNOLOGY Co Ltd
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.)
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Priority to CN201410402348.3A priority Critical patent/CN104154616A/en
Publication of CN104154616A publication Critical patent/CN104154616A/en
Pending legal-status Critical Current

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Abstract

The invention relates to a heat dissipation system and a work method of the system. Heat dissipation is carried out through a heat conduction mode and can be achieved without electricity, and an energy-saving effect is achieved. Refrigerants circulate in a pipeline and bring away heat in space in the circulating process, then heat dissipation is carried out outside the space, and accordingly circulation is achieved and cost is low. Heat tubes with good heat conductivity are adopted to serve as a heat conductive device, so that the heat dissipation system has an extremely good heat dissipation effect. A heat collector of the system is formed by heat collecting pieces of a certain structure, and the heat collecting pieces can be arranged and combined according to the size of the space and heat quantity. The heat dissipation system further comprises an air conditioning system, so that a heat exchange system is combined with the air conditioning system to reach the aims of energy conservation and consumption reduction as much as possible on the condition that the heat dissipation requirement is met.

Description

A kind of cooling system and method for work thereof
Technical field
The present invention relates to a kind of cooling system and method for work thereof, relate to specifically a kind of space of application one needs heat radiation, and substantially do not need a kind of cooling system and the method for work thereof of power consumption.
Background technology
Among the environment of existing similar large-scale machine room, because the equipment of the inside has strict demand to temperature, excess Temperature can affect the normal operation of equipment, even can damage equipment; And equipment in the course of the work also can distribute heat, as dispelling the heat not in time, also can make the temperature in space improve rapidly.
Existing temperature control, is to utilize air-conditioning system or air cooling system to carry out the exchange of inside and outside heat, thereby reaches the control of control appliance operating ambient temperature.
The shortcoming of existing exchange heat mode is: 1. air-conditioning power consumption---need to expend a large amount of electric energy.2. air-cooled pollution---air-cooledly bring a large amount of dusts into, have a strong impact on the service life of equipment and staff's health.3. the refrigerant of air-conditioning can pollute the atmosphere.4. equipment operation needs a large amount of maintenances.
For the problems referred to above, be necessary to provide a kind of new cooling system, to possess energy-saving and cost-reducing object.
Summary of the invention
The present invention is directed to above-mentioned defect, object is to provide one to have power savings, by heat exchange, and the refrigerant a kind of cooling system and the method for work thereof that recycle.
The technical solution used in the present invention is for this reason: the present invention is heat-exchange system: comprise that there is the radiating tube of refrigerant circulation inside, within one of described radiating tube is arranged on a space, another portion stretches out from this space, is connected with some heat collectors on the radiating tube path within space; Radiating tube path outside space is provided with the radiating module that forms heat exchange with radiating tube, and pipeline is provided with circulating pump.
Described heat collector has following structure: be formed in parallel by some heat acquisition modules, each heat acquisition module gathers monolithic parallel by some heats again and forms; Each heat gathers the structure forming in monolithic and meets: in the flow direction of refrigerant and space, enter heat and gather hot air flow in monolithic on the contrary, form contrary contact.
Described heat gathers monolithic and has following structure: comprise hot blast import, cold wind outlet, refrigerant input port, refrigerant delivery outlet;
Hot blast import, cold wind go out the pipeline of the hot wind supply circulation of interruption-forming, and the pipeline for refrigerant circulation that refrigerant input port, refrigerant delivery outlet form, makes both flow directions contrary, form contrary contact.
Described heat gathers in monolithic and is provided with heat pipe and is arranged on the radiating fin on heat pipe.
In described space, be provided with the temperature sensor of some monitoring space temperatures.
Described cooling system also comprises air-conditioning system.
Described cooling system also comprises control system, controls the operation of heat-exchange system, air-conditioning system.
A method of work for cooling system, carry out according to following steps:
1) by controller pre-set space temperature;
2) by being arranged on the temperature in the some temperature sensor Real-Time Monitorings space in space, and the transfer of data of monitoring is processed to controller, as needs dispel the heat, first opened heat-exchange system and carry out work;
3) can not satisfied temperature requirement after opening as heat-exchange system, open air-conditioning system and dispel the heat;
4) temperature sensor Real-Time Monitoring temperature, until the temperature monitoring meets the requirements, closes air-conditioning system, then closes heat-exchange system;
5) repeat 2)-4) step.
Advantage of the present invention is: 1) the present invention utilizes heat conducting mode to dispel the heat, and does not need electric energy just can realize heat radiation, has energy-conservation effect;
2) refrigerant of the present invention circulates in pipeline, and in cyclic process, takes away in space after heat, can outside space, dispel the heat, thereby form circulation, and its cost is low;
3) the present invention adopts the fabulous heat pipe of heat-conductive characteristic as heat-transfer device, makes the present invention have fabulous radiating effect;
4) heat collector of the present invention is made up of according to certain structure heat collection monolithic, can be according to space size, and caloric value is configured combination;
5) cooling system of the present invention also comprises air-conditioning system, and the heat exchange series air-conditioning system of unifying combines like this, in the situation that ensureing that heat radiation requires, reaches as much as possible energy-saving and cost-reducing object.
Brief description of the drawings
Fig. 1 is structural representation of the present invention.
In figure, 1 is heat collector; 2 is heat pipe; 3 is radiating module for heat gathers monolithic, 4; 5 is refrigerant; 6 is radiating tube; 7 is circulating pump.
Fig. 2 is the structured flowchart of heat collector
In figure, 11 is that refrigerant input port, 12 is refrigerant delivery outlet.
Fig. 3 is the structural representation that heat gathers monolithic.
In figure 31 be hot blast import, 32 for cold wind outlet, 33 be radiating fin.
Detailed description of the invention
The present invention is heat-exchange system: comprise the radiating tube 6 that inside has refrigerant 5 to circulate, within 6 one of described radiating tubes are arranged on a space, another portion stretches out from this space, on radiating tube 6 paths within space, is connected with some heat collectors 1; Radiating tube 6 paths outside space are provided with the radiating module 4 that forms heat exchange with radiating tube 6, and pipeline is provided with circulating pump 7.
Described heat collector 1 has following structure: be formed in parallel by some heat acquisition modules, each heat acquisition module gathers monolithic 3 by some heats again and is formed in parallel; The structure that each heat gathers monolithic 3 interior formation meets: in the flow direction of refrigerant 5 and space, enter heat and gather hot air flow in monolithic 3 on the contrary, form contrary contact.
Described heat gathers monolithic 3 and has following structure: comprise hot blast import 31, cold wind outlet 32, refrigerant input port 11, refrigerant delivery outlet 12;
The pipeline of the hot wind supply circulation that hot blast import 31, cold wind outlet 32 form, the pipeline for refrigerant circulation that refrigerant input port 11, refrigerant delivery outlet 12 form, makes both flow directions contrary, forms contrary contact.
Described heat gathers in monolithic 3 and is provided with heat pipe 2 and is arranged on the radiating fin 33 on heat pipe 2.
In described space, be provided with the temperature sensor of some monitoring space temperatures.
Described cooling system also comprises air-conditioning system.
Described cooling system also comprises control system, controls the operation of heat-exchange system, air-conditioning system.
A method of work for cooling system, carry out according to following steps:
1) by controller pre-set space temperature;
2) by being arranged on the temperature in the some temperature sensor Real-Time Monitorings space in space, and the transfer of data of monitoring is processed to controller, as needs dispel the heat, first opened heat-exchange system and carry out work;
3) can not satisfied temperature requirement after opening as heat-exchange system, open air-conditioning system and dispel the heat;
4) temperature sensor Real-Time Monitoring temperature, until the temperature monitoring meets the requirements, closes air-conditioning system, then closes heat-exchange system;
5) repeat 2)-4) step.
The course of work of the present invention is: the heat radiation wall, the heat radiation smallpox that 1, are made up of heat pipe 2 heats collection monolithics 3 gather the heat in machine room inner air and conduct to heat pipe 2.2, high-efficiency heat pipe 2 is collected heat collector 1 to such an extent that heat is transmitted to refrigerant 5 fast and efficiently.3, the heat that refrigerant 5 conducts heat pipe 2 loads, and transports away by pipeline.4, pipeline transfers out heat radiation by circulating pump 7 the refrigerant 5 that has heat to load, and the complete refrigerant 5 of heat radiation is refluxed.5, heat radiating module 4 transports the heat of coming refrigerant 5 and leaves, and reduces the temperature of backflow refrigerant 5, promotes and improve the efficiency of heat pipe 2.
The present invention can combine use with equipment such as existing air-conditionings in machine room, in the time that the present invention can meet the demands, closes air-conditioning; In the time that the present invention can not meet the demands, can suitably open air-conditioning and be assisted.
The present invention can use the occasion that needs heat radiation various, is combined flexibly layout according to the difference of environment for use.
The object that the each heat of the present invention gathers monolithic 3 parallel connections is: the hot blast in space is entered in each heat collection monolithic 3 uniformly, between the hot blast that guarantee enters and refrigerant, have temperature difference, ensure carrying out smoothly of heat exchange; If each heat gathers monolithic, 3 series connection arrange, because the heat of hot blast and prime gathers monolithic 3 and has had heat exchange, the temperature of hot blast declines, therefore the heat of itself and rear class gathers heat exchange effect between monolithic 3 not obvious, heat gather monolithic 3 effect can not be effectively played, cause waste; Be arranged in parallel simultaneously and compare series connection setting, its disposable intake is large, therefore its heat exchanger effectiveness is significantly improved.
Each heat acquisition module of the present invention can arrange separately each other, while starting heat-exchange system like this, can start as required corresponding heat acquisition module, closes unwanted heat acquisition module, further like this reaches energy-saving and cost-reducing object.
It is to gather monolithic 3 by heat to control that another inner air of the present invention flows to, and hot blast import 31 is above in machine room, equipment high-temperature gas produces, the air inlet of hot-blast outlet 32 equipment in machine room, and forming like this circulates also forms with refrigerant 5 flow direction that direction is identical.

Claims (8)

1. a cooling system, it is characterized in that, be heat-exchange system: comprise that there is the radiating tube of refrigerant circulation inside, within one of described radiating tube is arranged on a space, another portion stretches out from this space, is connected with some heat collectors on the radiating tube path within space; Radiating tube path outside space is provided with the radiating module that forms heat exchange with radiating tube, and pipeline is provided with circulating pump.
2. a kind of cooling system according to claim 1, is characterized in that, described heat collector has following structure: be formed in parallel by some heat acquisition modules, each heat acquisition module gathers monolithic parallel by some heats again and forms; Each heat gathers the structure forming in monolithic and meets: in the flow direction of refrigerant and space, enter heat and gather hot air flow in monolithic on the contrary, form contrary contact.
3. a kind of cooling system according to claim 2, is characterized in that, described heat gathers monolithic and has following structure: comprise hot blast import, cold wind outlet, refrigerant input port, refrigerant delivery outlet;
Hot blast import, cold wind go out the pipeline of the hot wind supply circulation of interruption-forming, and the pipeline for refrigerant circulation that refrigerant input port, refrigerant delivery outlet form, makes both flow directions contrary, form contrary contact.
4. a kind of cooling system according to claim 3, is characterized in that, described heat gathers in monolithic and is provided with heat pipe and is arranged on the radiating fin on heat pipe.
5. a kind of cooling system according to claim 1, is characterized in that, is provided with the temperature sensor of some monitoring space temperatures in described space.
6. according to a kind of cooling system described in claim 1-4, it is characterized in that, also comprise air-conditioning system.
7. a kind of cooling system according to claim 5, is characterized in that, comprises control system, controls the operation of heat-exchange system, air-conditioning system.
8. the method for work of a kind of cooling system as claimed in claim 6, is characterized in that, carries out according to following steps:
1) by controller pre-set space temperature;
2) by being arranged on the temperature in the some temperature sensor Real-Time Monitorings space in space, and the transfer of data of monitoring is processed to controller, as needs dispel the heat, first opened heat-exchange system and carry out work;
3) can not satisfied temperature requirement after opening as heat-exchange system, open air-conditioning system and dispel the heat;
4) temperature sensor Real-Time Monitoring temperature, until the temperature monitoring meets the requirements, closes air-conditioning system, then closes heat-exchange system;
5) repeat 2)-4) step.
CN201410402348.3A 2014-08-15 2014-08-15 Heat dissipation system and work method thereof Pending CN104154616A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410402348.3A CN104154616A (en) 2014-08-15 2014-08-15 Heat dissipation system and work method thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410402348.3A CN104154616A (en) 2014-08-15 2014-08-15 Heat dissipation system and work method thereof

Publications (1)

Publication Number Publication Date
CN104154616A true CN104154616A (en) 2014-11-19

Family

ID=51880183

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201410402348.3A Pending CN104154616A (en) 2014-08-15 2014-08-15 Heat dissipation system and work method thereof

Country Status (1)

Country Link
CN (1) CN104154616A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114001365A (en) * 2021-12-31 2022-02-01 光大环保技术装备(常州)有限公司 Water-cooling runner temperature and flow detection system and method and runner parameter testing system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114001365A (en) * 2021-12-31 2022-02-01 光大环保技术装备(常州)有限公司 Water-cooling runner temperature and flow detection system and method and runner parameter testing system
CN114001365B (en) * 2021-12-31 2022-04-05 光大环保技术装备(常州)有限公司 Water-cooling runner temperature and flow detection system and method and runner parameter testing system
WO2023125607A1 (en) * 2021-12-31 2023-07-06 光大环保技术装备(常州)有限公司 Water cooling flow channel temperature and flow rate measurement system and method, and flow rate parameter testing system

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Application publication date: 20141119

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