CN212519850U - Equipment heat dissipation circulating water cooling device and control system thereof - Google Patents

Equipment heat dissipation circulating water cooling device and control system thereof Download PDF

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CN212519850U
CN212519850U CN202022105227.6U CN202022105227U CN212519850U CN 212519850 U CN212519850 U CN 212519850U CN 202022105227 U CN202022105227 U CN 202022105227U CN 212519850 U CN212519850 U CN 212519850U
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water
cooling
pipeline
equipment
water storage
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不公告发明人
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Shenzhen Jiemicrochip Technology Co ltd
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Shenzhen Jiemicrochip Technology Co ltd
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Abstract

The utility model discloses an equipment heat dissipation circulation water cooling plant and control system thereof belongs to equipment heat dissipation technical field, including water storage device, the water cooling controller is installed to the water storage device lateral wall, the water storage device outside is provided with the equipment group, the water storage device bottom is with the output water-cooling through first pipeline and equipment group intercommunication, the water storage device top is through second pipeline and equipment group intercommunication with the backward flow water-cooling, be equipped with the pipeline solenoid valve on the first pipeline, be equipped with the water pump on the second pipeline, the water cooling controller is connected with water storage device, pipeline solenoid valve, water pump electricity. The utility model discloses a improve the structure of optimizing water storage device, make the water-cooling of the interior storage of water storage device can directly supply the use of equipment group, need not anxious high temperature weather to the undulant influence of water-cooling temperature, effective management and control water-cooling temperature and to the equipment group heat dissipation cooling that circulates the water supply, ensure the life of equipment and improve the operating efficiency of enterprise.

Description

Equipment heat dissipation circulating water cooling device and control system thereof
Technical Field
The utility model belongs to the technical field of the equipment heat dissipation, especially, relate to an equipment heat dissipation circulation water cooling plant and control system thereof.
Background
The force computing equipment mainly utilizes a force computing chip to carry out calculation, and the force computing chip generates a large amount of heat in the calculation process. The cooling mode of current computing power equipment sets up the water-cooling board at the computing power chip back, adopt industrial water (normal atmospheric temperature state) directly to pour into the water-cooling board and cool down the computing power chip, and to the condition that the enterprise invested in the factory in the southern area of china, because southern high temperature weather makes the temperature of storage rise, the cooling effect of the water that leads to flowing into the computing power equipment to the computing power chip is not obvious, be difficult to timely effectual heat dissipation, and the staff of enterprise need not regularly detect the temperature of water in order to confirm whether satisfy the requirement that the computing power equipment carries out the operation, the inefficiency and be difficult to the management and control, influence the life and the enterprise operating efficiency of computing power equipment.
SUMMERY OF THE UTILITY MODEL
The utility model provides an equipment heat dissipation circulation water cooling plant and control system thereof aims at solving the water-cooling of the storage in high temperature area and is on the high side before input device water-cooling temperature, leads to equipment water-cooling effect unobvious, is difficult to effective heat dissipation to and water-cooling temperature management and control inefficiency, influence the life of equipment and the problem of the operating efficiency of enterprise.
In order to realize the purpose, the utility model provides an equipment heat dissipation circulation water cooling plant, including water storage device, water-cooling controller, equipment group, pipeline solenoid valve, water pump, first pipeline and second pipeline, water-cooling controller is installed to the water storage device lateral wall, the water storage device outside is provided with equipment group, the water storage device bottom is through first pipeline and equipment group intercommunication with output water-cooling, the water storage device top is through second pipeline and equipment group intercommunication with the backward flow water-cooling, be equipped with pipeline solenoid valve on the first pipeline, be equipped with the water pump on the second pipeline, water-cooling controller is connected with water storage device, pipeline solenoid valve, water pump electricity.
Preferably, the water-cooling controller includes box, power, control panel, display and adjustment button, the box install in on the water storage device lateral wall, be equipped with the control panel in the box, control one side is equipped with the power, the box top is equipped with the display, display one side is equipped with adjustment button, the control panel with power, display and adjustment button electricity are connected.
Preferably, water storage device includes water storage tank, refrigeration piece, thermal insulation board, level detector, temperature sensor and water storage solenoid valve, be equipped with the refrigeration piece of vertical installation in the water storage tank, the refrigeration piece will the water storage tank falls into warm water cavity and water-cooling cavity, is located water-cooling cavity below is equipped with the thermal insulation board, thermal insulation board below with the water storage tank inner wall forms the water storage cavity, be equipped with a siphunculus that runs through on the thermal insulation board, the siphunculus is being located water storage solenoid valve is equipped with on one side of the water storage cavity, warm water cavity upper portion inboard is equipped with level detector, water-cooling cavity bottom is equipped with temperature sensor, the control panel with refrigeration piece, level detector, temperature sensor waterproof nature electricity are connected.
Preferably, the refrigeration piece is located a side of the warm water cavity heats, and the refrigeration piece is located a side of the water cooling cavity refrigerates.
Preferably, a water replenishing switch is arranged on the upper portion of the warm water cavity and is located above the water level detector.
Preferably, a drainage switch is arranged at the bottom of the warm water cavity.
Preferably, the equipment group includes power equipment, hose and water-cooling switch calculate, the equipment group comprises a plurality of power equipment of calculating in proper order, each calculate power equipment pass through the hose respectively with first pipeline, second pipe connection, the hose is located one side of first pipeline is equipped with the water-cooling switch.
Preferably, calculate power equipment including calculating power board, calculating power chip and water-cooling board, it is equipped with a plurality of power chips to calculate to inlay on the power board, calculate the power board back and be equipped with the water-cooling board, the water-cooling is in when dredging in the water-cooling board to calculate the power chip and cool down.
Preferably, the equipment sets are at least 2 sets, and each equipment set is communicated with the first pipeline and the second pipeline.
In addition, in order to realize the above object, the utility model also provides a control system, including control chip, control chip with as above arbitrary one equipment heat dissipation circulation water cooling plant connection control.
The utility model discloses for prior art's beneficial effect:
the utility model provides an equipment heat dissipation circulation water cooling plant and control system thereof optimizes water storage device's structure through the improvement, makes the water-cooling of the interior storage of water storage device can directly supply the use of equipment group, need not anxious high temperature weather to the undulant influence of water-cooling temperature, and effective management and control water-cooling temperature circulates the heat dissipation cooling that supplies water to equipment group, ensures the life of equipment and improves the operating efficiency of enterprise.
To illustrate the structural features and functions of the present invention more clearly, the present invention will be described in detail with reference to the accompanying drawings and specific embodiments.
Drawings
Fig. 1 is a schematic view of an assembly structure of the equipment heat dissipation and water cooling circulation device of the present invention;
FIG. 2 is a schematic view of the force calculating plate assembly structure in the equipment heat dissipation and water cooling apparatus of the present invention;
FIG. 3 is a schematic diagram of a water cooling plate structure in the equipment heat dissipation circulating water cooling device of the present invention;
FIG. 4 is a schematic view of the assembly structure of the equipment heat dissipation circulating water cooling device of the present invention;
description of the drawings: 1. a water storage device; 101. a water storage tank; 102. a refrigeration plate; 103. a thermal insulation plate; 104. a water level detector; 105. a temperature sensor; 106. a water storage solenoid valve; 107. a warm water cavity; 108. water-cooling the cavity; 109. a water storage cavity; 110. pipe passing;
2. a water-cooling controller; 201. a box body; 202. a power source; 203. a control panel; 204. a display; 205. an adjustment button;
3. a group of devices; 301. a force calculation device; 302. a hose; 303. a water-cooling switch; 304. calculating the strength board; 305. a force calculating chip; 306. a water-cooling plate;
4. a pipeline solenoid valve; 5. a water pump; 6. a first conduit; 7. a second conduit; 8. a water replenishing switch; 9. a water drainage switch.
Detailed Description
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs; the terminology used in the description of the application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application; the terms "including" and "having," and any variations thereof, in the description and claims of this application and the description of the above figures are intended to cover non-exclusive inclusions. The terms "first," "second," and the like in the description and claims of this application or in the above-described drawings are used for distinguishing between different objects and not for describing a particular order.
Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearances of the phrase in various places in the specification are not necessarily all referring to the same embodiment, nor are separate or alternative embodiments mutually exclusive of other embodiments. It is explicitly and implicitly understood by one skilled in the art that the embodiments described herein can be combined with other embodiments.
The embodiment of the utility model provides an equipment heat dissipation circulation water cooling plant, it is shown with reference to figure 1, including water storage device 1, water-cooling controller 2, equipment group 3, pipeline solenoid valve 4, water pump 5, first pipeline 6 and second pipeline 7, water-cooling controller 2 is installed to 1 lateral wall of water storage device, the 1 outside of water storage device is provided with equipment group 3, 1 bottom of water storage device communicates with the output water-cooling through first pipeline 6 and equipment group 3, 1 top of water storage device communicates with the water-cooling of backward flow through second pipeline 7 and equipment group 3, be equipped with pipeline solenoid valve 4 on the first pipeline 6, be equipped with water pump 5 on the second pipeline 7, water-cooling controller 2 is connected with water storage device 1, pipeline solenoid valve 4, water pump 5 electricity, equipment group 3 is connected with external power supply.
In this embodiment, the water storage device 1, the first pipeline 6, the equipment group 3 and the second pipeline 7 are communicated with each other in sequence, so that water cooling in the water storage device 1 can be circularly supplied for use, and water can be saved; the pipeline electromagnetic valve 4 on the first pipeline 6 is controlled by the water cooling controller 2 to control the water storage device 1 to output water cooling or stop (pause) the output water cooling; the water-cooling controller 2 controls the water pump 5 on the second pipeline 7 to recycle the water cooling (the water cooling is increased relative to the temperature before input) output from the equipment group 3 into the water storage device 1 for recycling. Wherein, a plurality of water tank refrigeration that are different from the tradition and carry the mode, only need in this embodiment water storage device 1 alright in order to realize refrigerating, occupy the area reduction of installation, the installation is simple and convenient.
It should be noted that, in the water storage device 1 described in this embodiment, the water is not cooled to a temperature below zero, but the water with a certain temperature is cooled (for example, the temperature of the water in the water storage device 1 is increased in a high-temperature weather in the south, or the temperature of the water output by the set group is higher), so as to control the temperature of the water within a certain safe and usable use range, ensure that the water cooling output by the water storage device 1 can be used for heat dissipation of the equipment group 3, and ensure the service life of the equipment group 3 and the normal operation efficiency of the enterprise.
Specifically, water storage device 1 includes water storage tank 101, refrigeration piece 102, thermal-insulated board 103, level detector 104, temperature sensor 105 and water storage solenoid valve 106, be equipped with the refrigeration piece 102 of vertical installation in the water storage tank 101, refrigeration piece 102 will water storage tank 101 falls into warm water cavity 107 and water-cooling cavity 108, is located water-cooling cavity 108 below is equipped with thermal-insulated board 103, thermal-insulated board 103 below with water storage tank 101 inner wall forms water storage cavity 109, be equipped with a siphunculus 110 that runs through on thermal-insulated board 103, siphunculus 110 is lieing in water storage cavity 109 one side is equipped with water storage solenoid valve 106, warm water cavity 107 upper portion inboard is equipped with level detector 104, water-cooling cavity 108 bottom is equipped with temperature sensor 105, control panel 203 with refrigeration piece 102, level detector 104, the waterproof electricity of temperature sensor 105 is connected.
In one embodiment, the structure of the water storage tank 101 is optimized to improve that the water storage tank 101 forms three well-sealed cavities, including a warm water cavity 107, a water cooling cavity 108 and a water storage cavity 109. The warm water cavity 107 and the water cooling cavity 108 are separated by the refrigerating sheet 102, the refrigerating sheet 102 is located on one side surface of the warm water cavity 107 for heating, and located on one side surface of the water cooling cavity 108 for refrigerating, and the refrigerating sheet 102 includes but is not limited to a refrigerating sheet 102 made of heat-dissipating aluminum material; the water-cooling cavity 108 and the water storage cavity 109 are separated by the heat insulation plate 103, the heat insulation plate 103 can be made of polyurethane foam heat insulation material, high-grade rubber and plastic heat insulation material or polystyrene foam heat insulation material, and the heat insulation plate 103 has the function of preventing the temperature of water in the water-cooling cavity 108 from conducting and influencing the temperature of water in the water storage cavity 109, so that the water cooling in the water storage cavity 109 can be directly used for cooling the equipment group 3.
Further, a water replenishing switch 8 is arranged on the upper portion of the warm water cavity 107, the water replenishing switch 8 is located above the water level detector 104, and a water draining switch 9 is arranged at the bottom of the warm water cavity 107.
In an optional implementation, because the refrigeration sheet 102 can refrigerate on one side and heat on the other side when working, the refrigeration sheet 102 positioned on one side of the warm water cavity 107 generates heat and needs to be cooled so as not to burn out the refrigeration sheet 102, therefore, water with a certain water volume is poured into the warm water cavity 107, when the water in the warm water cavity 107 is used for a plurality of times or is turbid, the water can be drained out through the drainage switch 9 arranged at the bottom of the warm water cavity 107, and clean water is poured into the warm water cavity 107 through the water replenishing switch 8 arranged at the upper part of the warm water cavity 107.
Further, the water-cooling controller 2 comprises a box body 201, a power supply 202, a control panel 203, a display 204 and an adjusting button 205, wherein the box body 201 is installed on the outer side wall of the water storage device 1, the control panel 203 is arranged in the box body 201, the power supply 202 is arranged on one side of the control panel, the display 204 is arranged at the top of the box body 201, the adjusting button 205 is arranged on one side of the display 204, and the control panel 203 is electrically connected with the power supply 202, the display 204 and the adjusting button 205.
In this embodiment, the control board 203 is electrically connected to the power supply 202, the display 204, the adjusting button 205, the refrigerating sheet 102, the water level detector 104, and the temperature sensor 105, and during normal operation, water cooling in the water storage cavity 109 is input to the equipment set 3 through the first pipeline 6, hot water is output after cooling and heat dissipation of the equipment set 3 (the water cooling temperature is raised before cooling), and the hot water flows back to the water cooling cavity 108 through the second pipeline 7 to be stored and refrigerated. When the temperature sensor 105 detects that a temperature signal (for example, 35 degrees) of water in the water-cooled cavity 108 is transmitted to the control board 203, the control board 203 controls the refrigeration sheet 102 to work, so that the warm water cavity 107 heats and the water-cooled cavity 108 refrigerates; when the temperature sensor 105 detects that the temperature signal (for example, 15 degrees) of the water in the water-cooling cavity 108 is transmitted to the control board 203 again, at this time, after the pipeline electromagnetic valve 4 and the water pump 5 are disconnected by the control board 203, the water storage electromagnetic valve 106 is opened, so that the refrigerated water in the water-cooling cavity 108 is supplemented into the water-storage cavity 109, and the circulation is repeated, thereby achieving the purposes of recycling water, dissipating heat and cooling, saving water, solving the problem of water-cooling heat dissipation of the equipment group 3 in southern areas or high-temperature weather of enterprises, and enhancing the operation efficiency of the enterprises.
Wherein, the display 204 on the water-cooling controller 2 is used for displaying the temperature of the water in the water-cooling cavity 108 detected by the temperature sensor 105 and the height of the water level in the warm water cavity 107 detected by the water level detector 104. The adjusting button 205 is used for adjusting the temperature height of the cooling plate 102 according to the temperature detected by the display temperature sensor 105.
Further, the equipment group 3 comprises force calculation equipment 301, a hose 302 and a water-cooling switch 303, the equipment group 3 is formed by arranging a plurality of force calculation equipment 301 in sequence, each force calculation equipment 301 is respectively connected with the first pipeline 6 and the second pipeline 7 through the hose 302, and the hose 302 is provided with the water-cooling switch 303 on one side of the first pipeline 6.
Further, referring to fig. 2 and 3, the force calculation device 301 includes a force calculation plate 304, force calculation chips 305, and a water cooling plate 306, wherein the force calculation chips 305 are embedded on the force calculation plate 304, and the water cooling plate 306 is disposed on the back of the force calculation plate 304, and is used for cooling the force calculation chips 305 when water is dredged in the water cooling plate 306.
Further, referring to fig. 4, it is a schematic diagram of an assembly structure of the water cooling device for heat dissipation of the force calculating equipment 301 according to the present invention. The equipment groups 3 are at least 2 groups, and each equipment group 3 is communicated with the first pipeline 6 and the second pipeline 7.
In one embodiment, an enterprise deploys a plurality of racks for placing the computing power devices 301 in a factory, each rack is composed of several layers (e.g., 5 layers), a plurality of computing power devices 301 (e.g., 20) are placed in each layer, each layer forms one device group 3, the computing power devices 301 on the whole rack are managed in groups, it is straightforward that each device group 3 is communicated with the first pipeline 6 and the second pipeline 7, after water cooling in each first pipeline 6 inputs water cooling to each computing power device 301, the water cooling flows back to the water cooling cavity 108 through the second pipeline 7, and the refrigeration work of the refrigeration plate 102 is further repeated under the control of the control board 203.
In addition, in order to realize the above object, the utility model also provides a control system, including control chip, control chip with as above arbitrary one equipment heat dissipation circulation water cooling plant connection control.
The control system in this embodiment is applied to the equipment heat dissipation circulating water cooling device, and the control chip is embedded in the control board 203, and the control board 203 is driven by the control chip to perform a series of regulation and control, including opening and closing of the control pipeline electromagnetic valve 4, the water pump 5 and the water storage electromagnetic valve 106, so as to adjust the refrigerating temperature of the refrigerating sheet 102, and obtain the conversion of the temperature signal detected by the temperature sensor 105.
The technical principle of the present invention has been described above with reference to specific embodiments, which are merely preferred embodiments of the present invention. The utility model discloses a scope of protection not only limits in above-mentioned embodiment, and the all belongings the utility model discloses a technical scheme under the thinking all belongs to the utility model discloses a scope of protection. Those skilled in the art will appreciate that other embodiments of the invention can be devised which do not require inventive effort and which fall within the scope of the present invention.

Claims (10)

1. The utility model provides an equipment heat dissipation circulation water cooling plant, its characterized in that, includes water storage device, water-cooling controller, equipment group, pipeline solenoid valve, water pump, first pipeline and second pipeline, water-cooling controller is installed to the water storage device lateral wall, the water storage device outside is provided with equipment group, the water storage device bottom is with the output water-cooling through first pipeline and equipment group intercommunication, the water storage device top is with the backward flow water-cooling through second pipeline and equipment group intercommunication, be equipped with the pipeline solenoid valve on the first pipeline, be equipped with the water pump on the second pipeline, water-cooling controller is connected with water storage device, pipeline solenoid valve, water pump electricity.
2. The equipment heat dissipation and circulation water cooling device of claim 1, wherein the water cooling controller comprises a box body, a power supply, a control panel, a display and an adjusting button, the box body is mounted on the outer side wall of the water storage device, the control panel is arranged in the box body, the power supply is arranged on one side of the control panel, the display is arranged on the top of the box body, the adjusting button is arranged on one side of the display, and the control panel is electrically connected with the power supply, the display and the adjusting button.
3. The equipment heat dissipation circulating water cooling device of claim 2, wherein the water storage device comprises a water storage tank, a refrigeration sheet, a temperature insulation plate, a water level detector, a temperature sensor and a water storage solenoid valve, the refrigeration sheet is vertically installed in the water storage tank, the refrigeration sheet divides the water storage tank into a warm water cavity and a water cooling cavity, the temperature insulation plate is arranged below the water cooling cavity, the water storage cavity is formed by the lower portion of the temperature insulation plate and the inner wall of the water storage tank, a through pipe is arranged on the temperature insulation plate, the water storage solenoid valve is arranged on one side of the water storage cavity, the water level detector is arranged on the inner side of the upper portion of the warm water cavity, the temperature sensor is arranged at the bottom of the water cooling cavity, and the control panel is electrically connected with the refrigeration sheet, the water level detector and the temperature.
4. The equipment heat dissipation circulating water cooling device of claim 3, wherein the refrigeration sheet is located on one side of the warm water cavity for heating, and the refrigeration sheet is located on one side of the water cooling cavity for refrigeration.
5. The equipment heat dissipation circulating water cooling device of claim 3, wherein a water replenishing switch is arranged at the upper part of the warm water cavity and is positioned above the water level detector.
6. The equipment heat dissipation circulating water cooling device of claim 3, wherein a drain switch is arranged at the bottom of the warm water cavity.
7. The equipment heat dissipation and circulating water cooling device of claim 1, wherein the equipment set comprises force calculation equipment, hoses and water cooling switches, the equipment set is formed by arranging the force calculation equipment in sequence, each force calculation equipment is connected with the first pipeline and the second pipeline through the hoses, and the water cooling switches are arranged on one side of the hoses, which is located on the first pipeline.
8. The equipment heat dissipation and circulating water cooling device of claim 7, wherein the force calculation equipment comprises a force calculation plate, force calculation chips and a water cooling plate, the force calculation chips are embedded on the force calculation plate, the water cooling plate is arranged on the back of the force calculation plate, and water is supplied to cool the force calculation chips when the force calculation chips are dredged in the water cooling plate.
9. The equipment heat dissipation circulating water cooling device of any one of claims 1-8, wherein the equipment groups are at least 2 groups, and each equipment group is communicated with the first pipeline and the second pipeline.
10. A control system, comprising a control chip, wherein the control chip is connected with the device heat dissipation and circulation water cooling device according to any one of claims 1 to 9 for control.
CN202022105227.6U 2020-09-23 2020-09-23 Equipment heat dissipation circulating water cooling device and control system thereof Active CN212519850U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022105227.6U CN212519850U (en) 2020-09-23 2020-09-23 Equipment heat dissipation circulating water cooling device and control system thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022105227.6U CN212519850U (en) 2020-09-23 2020-09-23 Equipment heat dissipation circulating water cooling device and control system thereof

Publications (1)

Publication Number Publication Date
CN212519850U true CN212519850U (en) 2021-02-09

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022105227.6U Active CN212519850U (en) 2020-09-23 2020-09-23 Equipment heat dissipation circulating water cooling device and control system thereof

Country Status (1)

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CN (1) CN212519850U (en)

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