A kind of frosting device of heat-exchanger fin

文档序号:1740280 发布日期:2019-11-26 浏览:13次 中文

阅读说明:本技术 一种热交换器翅片的结霜装置 (A kind of frosting device of heat-exchanger fin ) 是由 何松 张艳梅 杨晚生 赵旭东 于 2019-08-26 设计创作,主要内容包括:本申请公开了一种热交换器翅片的结霜装置,包括:恒温恒湿箱、第一制冷器、第一进水管、第一出水管、第一水泵、第一水箱;所述恒温恒湿箱内设置有所述第一制冷器,用于为所述第一制冷器提供结霜环境;所述第一制冷器的制冷端上设置有用于放置热交换器翅片的放置部;所述第一水泵设置于所述第一水箱内;所述第一进水管一端连接所述第一制冷器的制热端,另一端连接所述第一水泵;所述第一出水管一端连接所述第一制冷器的制热端,另一端嵌插于所述第一水箱内。(This application discloses a kind of frosting devices of heat-exchanger fin, comprising: climatic chamber, the first refrigerator, the first water inlet pipe, the first outlet pipe, the first water pump, the first water tank;First refrigerator is provided in the climatic chamber, for providing frosting environment for first refrigerator;The placement section for placing heat-exchanger fin is provided in the refrigeration end of first refrigerator;First water pump is set in first water tank;First water inlet pipe one end connects the heating end of first refrigerator, and the other end connects first water pump;First outlet pipe one end connects the heating end of first refrigerator, and the other end is intercalated in first water tank.)

1. a kind of frosting device of heat-exchanger fin characterized by comprising climatic chamber, the first refrigerator, first into Water pipe, the first outlet pipe, the first water pump, the first water tank;

First refrigerator is provided in the climatic chamber, for providing frosting environment for first refrigerator;

The placement section for placing heat-exchanger fin is provided in the refrigeration end of first refrigerator;

First water pump is set in first water tank;

First water inlet pipe one end connects the heating end of first refrigerator, and the other end connects first water pump;

First outlet pipe one end connects the heating end of first refrigerator, and the other end is intercalated in first water tank.

2. the frosting device of heat-exchanger fin according to claim 1, which is characterized in that further include: environmental cabinet;

The environmental cabinet is set in the climatic chamber, and first refrigerator is provided in the environmental cabinet.

3. the frosting device of heat-exchanger fin according to claim 2, which is characterized in that the climatic chamber is wind Cold type climatic chamber;

Ventilation opening is provided on the environmental cabinet.

4. the frosting device of heat-exchanger fin according to claim 1, which is characterized in that further include: temperature controller And temperature probe;

The temperature probe is connected with first refrigeration end, for detecting the cryogenic temperature of first refrigeration end;

The temperature controller, for when determining the cryogenic temperature less than preset temperature threshold value, controlling first system Cooler is closed;It is also used to when determining the cryogenic temperature greater than preset temperature threshold value, controls the first refrigerator starting.

5. the frosting device of heat-exchanger fin according to claim 1, which is characterized in that further include: temperature measuring device With multiple thermocouples;

The multiple thermocouple is uniformly distributed in the refrigeration end, for detecting the refrigeration in the refrigeration end at different location Temperature;

The temperature measuring device is connected with the multiple thermocouple, for storing multiple cryogenic temperatures.

6. the frosting device of heat-exchanger fin according to claim 1, which is characterized in that further include: temperature and humidity test Instrument and temperature and humidity probe;

The temperature and humidity probe is installed on the inner wall of the environmental cabinet, for detecting the temperature and humidity in the environmental cabinet;

The temperature and humidity test instrument and temperature and humidity probe connection, for storing the temperature and humidity.

7. the frosting device of heat-exchanger fin according to claim 1, which is characterized in that further include: cooling duct, Two refrigerators;

Second refrigerator is for generating flowable cooling substance;

Described cooling duct one end connects second refrigerator, and the other end is intercalated in first water tank.

8. the frosting device of heat-exchanger fin according to claim 7, which is characterized in that second refrigerator is wind Cold type refrigerator;

The cooling duct is air hose;

The air outlet of the air cooling refrigeration device connects the air hose.

9. the frosting device of heat-exchanger fin according to claim 7, which is characterized in that further include: the second water pump;

The cooling duct includes: the second water inlet pipe, the second outlet pipe;

Second refrigerator is air-cooled semiconductor cooler;

Second water pump is set in first water tank;

Second water inlet pipe one end connects second water pump, and the other end connects one end of second outlet pipe, and described The other end of second water inlet pipe is directed at the air outlet of the air-cooled semiconductor cooler;

The other end of second outlet pipe is intercalated in first water tank.

10. the frosting device of heat-exchanger fin according to claim 1, which is characterized in that the heat-exchanger fin On offer multiple nano-pores.

Technical field

This application involves refrigeration technology field more particularly to a kind of frosting devices of heat-exchanger fin.

Background technique

With the improvement of living standards, people constantly increase the demand of cold and hot exchange.Wherein air source heat pump is because of height Effect energy conservation, safe and reliable, intelligent control, installation have been simply obtained extensive use.Heat-exchanger fin position in air source heat pump Cause since the cold surface temperature of heat-exchanger fin is lower than the freezing point of water in outdoor heat-exchanger fin meeting in outdoor Frosting.The accumulation of frost layer reduces the heat exchanger effectiveness and operation stability of heat exchanger fin.

It comes into operation since heat-exchanger fin is mounted directly, so, the more heat-exchanger fin of frosting degree Also it is used, so that existing air source heat pump has that heat-exchanger fin frosting is serious.There is presently no one Kind can make the device of heat-exchanger fin frosting, to test in a pre-installation the frosting situation of heat-exchanger fin.

It is asked therefore it provides a kind of frosting device of heat-exchanger fin becomes those skilled in the art's technology urgently to be resolved Topic.

Summary of the invention

This application provides a kind of frosting devices of heat-exchanger fin, and for solving, there is presently no one kind can make heat The technical issues of device of exchanger fin frosting.

The frosting device of a kind of heat-exchanger fin provided by the present application, comprising: climatic chamber, the first refrigerator, One water inlet pipe, the first outlet pipe, the first water pump, the first water tank;

First refrigerator is provided in the climatic chamber, for providing frosting ring for first refrigerator Border;

The placement section for placing heat-exchanger fin is provided in the refrigeration end of first refrigerator;

First water pump is set in first water tank;

First water inlet pipe one end connects the heating end of first refrigerator, and the other end connects first water pump;

First outlet pipe one end connects the heating end of first refrigerator, and the other end is intercalated in first water tank It is interior.

Optionally, further includes: environmental cabinet;

The environmental cabinet is set in the climatic chamber, and first refrigerator is provided in the environmental cabinet.

Optionally, the climatic chamber is air cooled type constant temperature constant humidity cabinet;

Ventilation opening is provided on the environmental cabinet.

Optionally, further includes: temperature controller and temperature probe;

The temperature probe is connected with first refrigeration end, for detecting the cryogenic temperature of first refrigeration end;

The temperature controller, for when determining the cryogenic temperature less than preset temperature threshold value, controlling described the One refrigerator is closed;It is also used to control first refrigerator when determining the cryogenic temperature greater than preset temperature threshold value Starting.

Optionally, further includes: temperature measuring device and multiple thermocouples;

The multiple thermocouple is uniformly distributed in the refrigeration end, for detecting in the refrigeration end at different location Cryogenic temperature;

The temperature measuring device is connected with the multiple thermocouple, for storing multiple cryogenic temperatures.

Optionally, further includes: temperature and humidity test instrument and temperature and humidity probe;

The temperature and humidity probe is installed on the inner wall of the environmental cabinet, for detecting the temperature and humidity in the environmental cabinet;

The temperature and humidity test instrument and temperature and humidity probe connection, for storing the temperature and humidity.

Optionally, further includes: cooling duct, the second refrigerator;

Second refrigerator is for generating cooling substance;

Described cooling duct one end connects second refrigerator, and the other end is intercalated in first water tank.

Optionally, second refrigerator is air cooling refrigeration device;

The cooling duct is air hose;

The air outlet of the air cooling refrigeration device connects the air hose.

Optionally, further includes: the second water pump;

The cooling duct includes: the second water inlet pipe, the second outlet pipe;

Second refrigerator is air-cooled semiconductor cooler;

Second water pump is set in first water tank;

Second water inlet pipe one end connects second water pump, and the other end connects one end of second outlet pipe;

The second outlet pipe other end is intercalated in first water tank.

Optionally, multiple nano-pores are offered on the heat-exchanger fin.

As can be seen from the above technical solutions, the application has the following advantages:

This application discloses a kind of frosting devices of heat-exchanger fin, comprising: climatic chamber, the first refrigerator, One water inlet pipe, the first outlet pipe, the first water pump, the first water tank;It is provided with first refrigerator in the climatic chamber, uses In providing frosting environment for first refrigerator;It is provided in the refrigeration end of first refrigerator for placing heat exchanger The placement section of fin;First water pump is set in first water tank;First water inlet pipe one end connection described first The heating end of refrigerator, the other end connect first water pump;First outlet pipe one end connects first refrigerator Heating end, the other end are intercalated in first water tank.

Climatic chamber in the application is for setting stationary temperature and humidity, it is ensured that temperature and humidity becomes in climatic chamber Change small, frosting environment can be provided for the first refrigerator;First refrigerator at work, can generate heat, in this way can be to refrigeration function Can realization impact, the heat that generates when therefore, it is necessary to reduce the work of the first refrigerator, using the first water inlet pipe pump into The heating end of first refrigerator can take away the heat of the first refrigerator heating end, then by the first outlet pipe heat transmission To the first water tank, the heat generated when the first refrigerator can be worked is taken away, and is produced when to reducing the work of the first refrigerator Raw heat is provided with the placement section for placing heat-exchanger fin in the refrigeration end of the first refrigerator, makes the first refrigerator It can freeze for heat-exchanger fin, so that the environment of heat-exchanger fin frosting is simulated, based on the frosting in this application Device can carry out frosting to heat-exchanger fin, solve that there is presently no one kind can make the dress of heat-exchanger fin frosting The technical issues of setting.

Detailed description of the invention

Fig. 1 is a kind of structural schematic diagram of the frosting device of heat-exchanger fin provided by the embodiments of the present application;

Wherein, appended drawing reference is as follows:

1, climatic chamber;2, the first refrigerator;3, the first water inlet pipe;4, the first outlet pipe;5, the first water pump;6, first Water tank;7, heating end;8, refrigeration end;9, environmental cabinet;10, ventilation opening;11, temperature controller;12, temperature probe;13, temperature is surveyed Try instrument;14, thermocouple;15, temperature and humidity test instrument;16, temperature and humidity is popped one's head in;17, the second refrigerator;18, the second water inlet pipe;19, Second outlet pipe;20, the second water pump;21, heat-exchanger fin;22, support grid;23, air outlet;24, return air inlet.

Specific embodiment

To enable application purpose, the feature, advantage of the application more obvious and understandable, below in conjunction with the application Attached drawing in embodiment, the technical scheme in the embodiment of the application is clearly and completely described, it is clear that disclosed below Embodiment be only some embodiments of the present application, and not all embodiment.Based on the embodiment in the application, this field Those of ordinary skill's all other embodiment obtained without making creative work belongs to the application protection Range.

In the description of the embodiment of the present application, it should be noted that term " center ", "upper", "lower", "left", "right", The orientation or positional relationship of the instructions such as "vertical", "horizontal", "inner", "outside" is to be based on the orientation or positional relationship shown in the drawings, It is merely for convenience of description the embodiment of the present application and simplifies description, rather than the device or element of indication or suggestion meaning must have There is specific orientation, be constructed and operated in a specific orientation, therefore should not be understood as the limitation to the embodiment of the present application.In addition, Term " first ", " second ", " third " are used for descriptive purposes only and cannot be understood as indicating or suggesting relative importance.

In the description of the embodiment of the present application, it should be noted that unless otherwise clearly defined and limited, term " peace Dress ", " connected ", " connection " shall be understood in a broad sense, for example, it may be being fixedly connected, be also possible to replaceable connection, or integrally Connection, can be mechanical connection, be also possible to be electrically connected, can be directly connected, can also indirectly connected through an intermediary, It can be the connection inside two elements.For the ordinary skill in the art, above-mentioned art can be understood with concrete condition The concrete meaning of language in the embodiment of the present application.

The embodiment of the present application provides a kind of frosting device of heat-exchanger fin, for solve there is presently no one kind can So that the technical issues of device of heat-exchanger fin frosting.

Referring to Fig. 1, a kind of structural schematic diagram of the frosting device of heat-exchanger fin provided by the embodiments of the present application.

The embodiment of the present application provides a kind of first embodiment of the frosting device of heat-exchanger fin, in the present embodiment Frosting device includes: climatic chamber 1, the first refrigerator 2, the first water inlet pipe 3, the first outlet pipe 4, the first water pump 5, the first water Case 6, heating end 7 and refrigeration end 8;It is provided with the first refrigerator 2 in climatic chamber 1, provides frosting ring for the first refrigerator 2 Border;The placement section for placing heat-exchanger fin 21 is provided in the refrigeration end 8 of first refrigerator;First water pump 5 is set to In first water tank 6;First water inlet pipe, 3 one end connects the heating end 7 of the first refrigerator, and the other end connects the first water pump 5;First goes out 4 one end of water pipe connects the heating end 7 of the first refrigerator, and the other end is intercalated in the first water tank 6.

Using the frosting device in the application to heat-exchanger fin frosting after, by weight method to heat-exchanger fin 21 Weight measure, frosting degree can be obtained by front and back weight difference, the frost-resistant performance of heat-exchanger fin 21 can be obtained.It can With understanding, above-mentioned weighting manner can be timing and weigh, and obtain the knot in the unit time in such a way that timing is weighed Frost amount can analyze the frosting rate of heat-exchanger fin 21, and then the frost-resistant performance for determining heat-exchanger fin 21.

It should be noted that the first refrigerator 2 can be semiconductor cooler, 6 volume of the first water tank can be 500* 400*400mm, water storage volume can be 50L, and the first water inlet pipe 3 and the first outlet pipe 4 can be the PPR pipe of diameter, and constant temperature is permanent The temperature range set in wet tank 1 can be 5 DEG C of 20 DEG C~﹣ of ﹣, and humidity range can be 50%~80%, above-mentioned each component Size and relevant control range are only a kind of exemplary illustration, are not to the limitation in the application, those skilled in the art Member, which can according to need, to be configured, and is not specifically limited here.

Heat-exchanger fin 21 can be nanometer micropore aluminum fin-stock, be also possible to commonly polish aluminum fin-stock, heat exchanger wing The size of piece 21 can be 20*20*0.2mm, and those skilled in the art, which can according to need, to be configured, and not do here specific It limits.

Climatic chamber 1 in the application is for setting stationary temperature and humidity, it is ensured that temperature and humidity in climatic chamber 1 Change small, frosting environment can be provided for the first refrigerator 2;First refrigerator 2 at work, can generate heat, in this way can be to system The realization of cold function impacts, and therefore, it is necessary to reduce the heat generated when the work of the first refrigerator 2.It is logical using the first water pump 5 It crosses the first water inlet pipe 3 and pumps the heating end 7 into the first refrigerator 2, the heat of the first refrigerator heating end 7 can be taken away, then lead to The first outlet pipe 4 is crossed heat transmission to the first water tank 6, the heat generated when the first refrigerator 2 can be worked is taken away, from And reduce the heat of the first refrigerator heating end 7.It is provided in the refrigeration end 8 of first refrigerator for placing heat-exchanger fin 21 placement section allows the first refrigerator 2 for the refrigeration of heat-exchanger fin 21, to simulate 21 frosting of heat-exchanger fin Environment, based on the frosting device in this application can to heat-exchanger fin 21 carry out frosting, solve there is presently no A kind of the technical issues of device that can make 21 frosting of heat-exchanger fin.

The above are a kind of first embodiments of the frosting device of heat-exchanger fin provided by the present application, and the following are the application A kind of second embodiment of the frosting device of the heat-exchanger fin provided.In order to reduce climatic chamber 1 to the first refrigerator 2 Influence, it further includes environmental cabinet 9, referring specifically to Fig. 1 that second embodiment, which is on the basis of above-mentioned first embodiment,.

In the present embodiment, in order to reduce the air-flow in climatic chamber, a kind of frosting device of heat-exchanger fin is also wrapped It includes: environmental cabinet 9;Environmental cabinet 9 is set in climatic chamber 1, and the first refrigerator 2 is provided in environmental cabinet 9.

Further, in order to which the temperature and humidity and the temperature and humidity of climatic chamber 1 that make environmental cabinet 9 are consistent in the present embodiment Climatic chamber 1 be air cooled type constant temperature constant humidity cabinet, be provided with ventilation opening 10 on environmental cabinet 9.Specifically, in order to make air-cooled perseverance Stable gas pressure in constant temperature and humidity case 1, the air cooled type constant temperature constant humidity cabinet 1 in the present embodiment are provided with air outlet 23 and return air inlet 24, Air equilibrium is discharged into case by air cooled type constant temperature constant humidity cabinet 1 by air outlet 23, and air cooled type constant temperature constant humidity cabinet 1 passes through return air inlet 24 It is the gas in respiratory box, to make the stable gas pressure in air cooled type constant temperature constant humidity cabinet 1.

Secondly, being provided with support grid 22 in air cooled type constant temperature constant humidity cabinet 1, support grid 22 is for fixing back-up environment case 9, so that the setting position of environmental cabinet 9 and the first refrigerator be allow to avoid air outlet 23 and return air inlet 24.

It should be noted that the quantity of ventilation opening 10 can be it is multiple, such as 2,3 or 5, those skilled in the art Member, which can according to need, to be configured, and is not specifically limited here.

In the present embodiment, climatic chamber 1 is air cooled type constant temperature constant humidity cabinet, passes through temperature and humidity in the gas guard box of flowing It is uniformly distributed, and environmental cabinet 9 can weaken air cooled type constant temperature constant humidity cabinet 1 to 21 surface bring air-flow of heat-exchanger fin, reduce The temperature difference of the heat exchanger fin surfaces of different location.The ventilation opening 10 for passing through environmental cabinet 9 again, can make the temperature of environmental cabinet 9 Humidity and the temperature and humidity of air cooled type constant temperature constant humidity cabinet 1 are consistent, and air outlet 23 is provided in air cooled type constant temperature constant humidity cabinet 1 and is returned Air port 24 can make the stable gas pressure in air cooled type constant temperature constant humidity cabinet 1, secondly, being provided with support in air cooled type constant temperature constant humidity cabinet 1 Grid 22 allows environmental cabinet 9 and the setting position of the first refrigerator 2 to avoid air outlet 23 and return air inlet 24, to hand over to heat Exchanger fin 21 provides more stable frosting environment.

The above are a kind of second embodiments of the frosting device of heat-exchanger fin provided by the present application, and the following are the application A kind of 3rd embodiment of the frosting device of the heat-exchanger fin provided.3rd embodiment is the base in above-mentioned first embodiment It further include temperature controller 11 and temperature probe 12, referring specifically to Fig. 1 on plinth.

In the present embodiment, a kind of frosting device of heat-exchanger fin further include: temperature controller 11 and temperature probe 12; The connection of the refrigeration end 8 of temperature probe 12 and the first refrigerator 2, the cryogenic temperature of the refrigeration end 8 for detecting the first refrigerator 2, When the cryogenic temperature that temperature controller 11 determines is less than preset temperature threshold value, temperature controller 1 controls the first refrigerator 2 and closes It closes;When temperature controller 11 determines cryogenic temperature greater than preset temperature threshold value, control the first refrigerator 2 starting.

It should be noted that preset threshold value can be any one numerical value in 5 DEG C of 10 DEG C~﹣ of ﹣, or 10 DEG C of ﹣ A range in 5 DEG C of~﹣, those skilled in the art, which can according to need, to be configured, and is not specifically limited here.

In the present embodiment, when the cryogenic temperature that temperature probe 12 detects the refrigeration end 8 of the first refrigerator 2 is less than preset threshold value When, temperature controller 11 controls the first refrigerator 2 and closes, when temperature probe 12 detects the refrigeration of the refrigeration end 8 of the first refrigerator 2 When temperature is greater than preset threshold value, temperature controller 11 controls the starting of the first refrigerator 2, it can hands over the first refrigerator 2 to heat Exchanger fin 21 freezes, and the working condition of the first refrigerator 2 is flexibly controlled by way of dynamic regulation, saves power consumption.

The above are a kind of 3rd embodiments of the frosting device of heat-exchanger fin provided by the present application, and the following are the application A kind of fourth embodiment of the frosting device of the heat-exchanger fin provided.Fourth embodiment is the base in above-mentioned first embodiment It further include temperature measuring device 13 and multiple thermocouples 14, referring specifically to Fig. 1 on plinth.

In the present embodiment, a kind of frosting device of heat-exchanger fin further include: temperature measuring device 13 and multiple thermocouples 14;Multiple thermocouples 14 are uniformly distributed in refrigeration end 8, for detecting the cryogenic temperature in refrigeration end 8 at different location.

Temperature measuring device 13 and multiple thermocouples 14 connect, for storing multiple cryogenic temperatures.

It should be noted that multiple thermocouples 14 can be 3,4 or 5, those skilled in the art can basis It needs to be configured, be not specifically limited here.

In the present embodiment, multiple thermocouples 14 detect the cryogenic temperature of the different location of refrigeration end 8, and temperature measuring device 13 is deposited The cryogenic temperature that each thermocouple 14 detects is stored up, the cryogenic temperature of 8 different location of refrigeration end, tester can be stored constantly The cryogenic temperature stored by temperature measuring device 13 is apparent that the temperature of 8 different location of refrigeration end.

The above are a kind of fourth embodiments of the frosting device of heat-exchanger fin provided by the present application, and the following are the application A kind of 5th embodiment of the frosting device of the heat-exchanger fin provided.5th embodiment is the base in above-mentioned first embodiment It further include temperature and humidity test instrument 15 and temperature and humidity probe 16, referring specifically to Fig. 1 on plinth.

In the present embodiment, a kind of frosting device of heat-exchanger fin further include: temperature and humidity test instrument 15 and temperature and humidity are visited First 16;Temperature and humidity probe 16 is installed on the inner wall of environmental cabinet 9, for detecting the temperature and humidity in environmental cabinet 9, temperature and humidity test instrument 15 and temperature and humidity probe 16 connection, for storing temperature and humidity.

It should be noted that the installation site of temperature and humidity probe 16 can be any part of 9 inner wall of environmental cabinet, can be Above the inner wall of environmental cabinet 9, it is also possible to the inner wall side of environmental cabinet 9, those skilled in the art, which can according to need, to be set It sets, is not specifically limited here.

In the present embodiment, temperature and humidity test instrument 15 stores the temperature and humidity that temperature and humidity probe 16 detects, can store constantly Temperature and humidity in environmental cabinet 9, tester are stored by the temperature and humidity and temperature and humidity test instrument 15 that set in climatic chamber 1 Temperature and humidity can be understood that whether the temperature and humidity of environmental cabinet 9 is consistent with the temperature and humidity of climatic chamber 1.

The above are a kind of 5th embodiments of the frosting device of heat-exchanger fin provided by the present application, and the following are the application A kind of sixth embodiment of the frosting device of the heat-exchanger fin provided.Sixth embodiment is the base in above-mentioned first embodiment It further include cooling duct and the second refrigerator 17, referring specifically to Fig. 1 on plinth.

In the present embodiment, a kind of frosting device of heat-exchanger fin further include: cooling duct and the second refrigerator 17;The Two refrigerators 17 are for generating cooling substance;Cooling duct one end connects the second refrigerator 17, and the other end is intercalated in described first In water tank 6.

It should be noted that cooling substance can be gas, such as air, liquid, such as water, this field skill can also be Art personnel, which can according to need, to be configured, and is not specifically limited here.

In the present embodiment, the cooling substance that the second refrigerator 17 generates can be radiated by cooling duct to the first water tank 6, So as to reduce the temperature in the first water tank 6.

For ease of description, it is illustrated so that cooling substance is gas as an example in the present embodiment.

Such as can be and the mode that cooling substance enters in the first water tank 6 freezes to water, in the present embodiment Two refrigerators 17 are air cooling refrigeration device, and cooling duct is air hose;And the air outlet of air cooling refrigeration device 17 connects air hose, it is air-cooled Formula refrigerator 17 blows cooling wind heat dissipation to the first water tank 6 by air hose, so as to reduce the temperature in the first water tank 6.

The above-mentioned embodiment for when cooling material is gas is also possible that frosting device further include: the second water pump 21;Cooling duct includes: the second water inlet pipe and the second outlet pipe;Second refrigerator 17 is air-cooled semiconductor cooler.Second Water pump 21 is set in the first water tank 6, and 18 one end of the second water inlet pipe connects the second water pump 20, and the other end connects the second outlet pipe 19 One end, and the other end of the second water inlet pipe 18 is directed at the air outlet of air-cooled semiconductor cooler 17, the second outlet pipe it is another One end is intercalated in the first water tank 6.

In the present embodiment, the water of the first water tank 6 is pumped into the second water inlet pipe 18, air-cooled semiconductor refrigerating by the second water pump 20 The blowing mouth of device 17 is directed at that one end of the second water inlet pipe 18 and the connection of the second outlet pipe 19, and freeze the second water inlet pipe 18 and second That one end that outlet pipe 19 connects, thus the water to have freezed in that one end water pipe, water after cooling is using the second outlet pipe 19 It flows back into the first water tank 6.Using the water in air-cooled semiconductor cooler 17 the first water tank 6 of refrigeration, dissipating for water tank is accelerated Thermal velocity can quickly reduce the temperature of the first water tank 6.

The above, above embodiments are only to illustrate the technical solution of the application, rather than its limitations;Although referring to before Embodiment is stated the application is described in detail, those skilled in the art should understand that: it still can be to preceding Technical solution documented by each embodiment is stated to modify or equivalent replacement of some of the technical features;And these It modifies or replaces, the spirit and scope of each embodiment technical solution of the application that it does not separate the essence of the corresponding technical solution.

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