Data center heat dissipation adjusting device

By combining enclosures, cooling boxes, and adjustment components in the design of data centers, and utilizing temperature sensors and servo electric cylinders to adjust the air outlets, flexible heat dissipation adjustment is achieved, solving the problem of uneven server heat dissipation and improving the reliability and energy efficiency of the equipment.

CN223528362UActive Publication Date: 2025-11-07CLOUD FRAME CO LTD
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Patent Information

Application Number
CN202422565824.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-23
Publication Date
2025-11-07
Estimated Expiration
2034-10-23

AI Technical Summary

Technical Problem

Uneven heat dissipation in existing data centers leads to excessive heat accumulation or overheating of some servers, affecting equipment performance and lifespan, and increasing energy consumption.

Method used

Design a data center heat dissipation and regulation device, including a cabinet, a cooling box, regulation components and a temperature sensor. The temperature sensor monitors the server temperature in real time, and the servo electric cylinder adjusts the size of the air outlet. Combined with airflow and coolant circulation, flexible heat dissipation regulation is achieved.

Benefits of technology

Ensure that the server maintains a suitable temperature at different times and locations to avoid excessive heat accumulation or dissipation, reduce the risk of equipment damage, and reduce energy consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a data center heat dissipation adjusting device which comprises a box body and an adjusting assembly, the bottom of an inner cavity of the box body is fixedly connected with a refrigeration box, an inner cavity of the refrigeration box is symmetrically connected with a refrigeration plate and an auxiliary partition plate, refrigeration pipes are symmetrically connected in the refrigeration plate, and the two ends of each refrigeration pipe penetrate through the refrigeration box and the side wall of the box body to be symmetrically connected with a confluence box. The adjusting assembly is composed of a shell, a movable shielding plate and fixed shielding plates, the fixed shielding plates are symmetrically connected to an opening of the shell, the two ends of the movable shielding plate are symmetrically connected with fixing plates, the fixing plates are slidably connected into a main sliding groove formed in the opening of the shell, and the top of the opening of the shell is fixedly connected with a servo electric cylinder through a groove. Through cooperation of the refrigeration box, the conveying pipe, the adjusting assembly and the temperature sensor, the heat dissipation adjusting device can adjust the heat dissipation efficiency according to temperature changes of different data center servers, and therefore the practicability of the device is enhanced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to data center heat dissipation technical field, concretely relates to a data center heat dissipation adjusting device. BACKGROUND

[0002] Data center heat dissipation refers to the process that the heat generated due to the operation of a large number of servers, network devices and storage devices in a data center needs to be handled and removed; the data center is a facility hosting a large number of computers and network devices, and these devices will generate a large amount of heat during operation; if this heat cannot be dissipated in time and effectively, it will cause the device to overheat, affecting the performance and life of the device, and the common data center server is usually uniformly cooled during use, but the cooling effect required by the data center server at different time periods, different positions and responsible for different data content is different, and then uniform cooling will cause the problem of excessive accumulation of heat in part of the data center server, thereby increasing the probability of damage to the data center server, and the uniform cooling structure runs for a long time at high power, which can ensure the cooling needs of the data center server, but will also cause the problem of excessive cooling and refrigeration during the idle process of the data center server, thereby increasing unnecessary energy consumption. SUMMARY

[0003] In order to overcome the defects existing in the prior art, the present application provides a data center heat dissipation adjusting device to solve the problems raised in the background art.

[0004] In order to achieve the above-mentioned purpose, a data center heat dissipation adjusting device is provided, which comprises a box body and an adjusting assembly, the inner cavity bottom of the box body is fixedly connected with a refrigeration box, the inner cavity of the refrigeration box is respectively and symmetrically connected with a refrigeration plate and a secondary partition plate, the refrigeration plate is symmetrically connected with a refrigeration pipe inside, the two ends of the refrigeration pipe are symmetrically connected with a bus box through the refrigeration box and the side wall of the box body, the side surface of the bus box is fixedly connected with a liquid delivery pipe, the upper end of one side of the box body is fixedly connected with an air inlet pipe, the upper end of the other side of the box body is connected with the adjusting assembly through a conveying pipe, the adjusting assembly is opposite to the data center server, the side of the inner cavity of the box body close to the air inlet pipe is respectively fixedly connected with a filter plate and a filter screen, and the upper surface of the refrigeration box is fixedly connected with a primary partition plate, the adjusting assembly is composed of a shell, a movable shutter and a fixed shutter, the fixed shutter is symmetrically connected with the opening of the shell, the two ends of the movable shutter are symmetrically connected with a fixed plate, the fixed plate is slidingly connected with a main sliding groove formed in the opening of the shell, the top of the opening of the shell is fixedly connected with a servo cylinder through a groove, the extension rod of the servo cylinder is fixedly connected with the movable shutter, and the outer side surface of the shell is symmetrically connected with a temperature sensor.

[0005] Preferably, the adjusting assembly is in the overall cuboid structure, the shell is in the concave structure, the two groups of temperature sensors are fixedly connected to the outer side of the shell near the opening, and the two groups of main sliding grooves symmetrically formed at the two sides of the opening of the shell are in the strip-shaped structure and longer than the fixed plate.

[0006] Preferably, a plurality of groups of fixed baffles are fixedly connected to the opening of the shell along the vertical direction at equal intervals, the plurality of groups of fixed baffles are in the rectangular structure, the side of the fixed baffle near the inside of the shell is fixedly connected with an auxiliary plate, and the surface of the auxiliary plate is in the arc-shaped convex structure.

[0007] Preferably, the fixed plate has two groups, the two groups of fixed plates are in the strip-shaped structure, a plurality of groups of movable baffles are fixedly connected between the two groups of fixed plates along the length direction at equal intervals, the plurality of groups of movable baffles are in the rectangular structure, and the fixed plate and the movable baffle are combined to form the eye-shaped structure.

[0008] Preferably, the refrigeration box fixedly connected in the box body is in the cuboid structure, the two groups of through holes formed in the two sides of the refrigeration box are in the rectangular structure, the refrigeration plate and the auxiliary partition plate fixedly connected in the refrigeration box are in the rectangular structure, and the refrigeration box, the refrigeration plate and the auxiliary partition plate are combined to form the inner cavity in the string-shaped structure.

[0009] Preferably, a plurality of groups of refrigeration pipes are fixedly connected in the refrigeration plate along the vertical direction at equal intervals, the plurality of groups of refrigeration pipes are in the cylindrical structure, and the two groups of bus boxes fixedly connected to the two ends of the refrigeration pipe are in the rectangular structure.

[0010] Preferably, the main partition plate is in the rectangular structure, the inner cavity of the box body is in the door-shaped structure, the filter screen fixedly connected to the side of the air inlet pipe at the top of the inner cavity of the box body is in the L-shaped structure, the filter plate is fixedly connected in the box body by buckling, and the filter plate is located below the filter screen.

[0011] Compared with the prior art, the box body, the refrigeration box, the conveying pipe, the adjusting assembly and the temperature sensor are matched, so that the air outlet opening of the adjusting assembly can be adjusted according to the temperature change of the surface of the corresponding data center server, so that the data center server can always be in the appropriate temperature range in different time periods and different positions, the problem of excessive heat accumulation of the data center server is avoided, the probability of damage and failure of the data center server is reduced, the probability of excessive heat dissipation of the data center server is effectively reduced, and the energy consumption of heat dissipation is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is a front view schematic diagram of the embodiment of the utility model.

[0013] Figure 2It is the side view schematic diagram of the box body of the embodiment of the utility model.

[0014] Figure 3 It is the top view schematic diagram of the embodiment of the utility model.

[0015] Figure 4 It is the sectional structure schematic diagram of the adjusting assembly of the embodiment of the utility model.

[0016] In the figure: 1, box body;2, refrigeration box;3, main partition plate;4, filter plate;5, filter screen;6, air inlet pipe;7, refrigeration plate;8, auxiliary partition plate;9, refrigeration pipe;10, infusion pipe;11, conveying pipe;12, adjusting assembly;13, data center server;14, confluence box;15, servo cylinder;16, shell;17, movable shutter;18, fixed shutter;19, fixed plate;20, temperature sensor. Specific implementation

[0017] Referring Figures 1 to 4 As shown in the utility model provides a kind of data center heat dissipation adjusting device, it includes: box body 1 and adjusting assembly 12, the box body 1 inner chamber bottom is fixedly connected refrigeration box 2, refrigeration box 2 inner chamber is respectively symmetrically connected refrigeration plate 7 and auxiliary partition plate 8, and refrigeration plate 7 is symmetrically connected refrigeration pipe 9 in, and the both ends of refrigeration pipe 9 pass through refrigeration box 2 and box body 1 side wall symmetrically connect confluence box 14, and confluence box 14 side is fixedly connected infusion pipe 10, and the upper end of the one side of box body 1 is fixedly connected air inlet pipe 6, and the upper end of the other side of box body 1 is connected adjusting assembly 12 by conveying pipe 11, adjusting assembly 12 is directly opposite data center server 13, while box body 1 inner chamber is fixedly connected filter plate 4 and filter screen 5 respectively on the side close to air inlet pipe 6, and refrigeration box 2 upper surface is fixedly connected main partition plate 3, the adjusting assembly 12 is composed of shell 16, movable shutter 17 and fixed shutter 18, and shell 16 opening is symmetrically connected fixed shutter 18, and movable shutter 17 both ends are symmetrically connected fixed plate 19, and fixed plate 19 is slidably connected in the main sliding slot of the opening of shell 16, and the top of the opening of shell 16 is fixedly connected servo cylinder 15 by recess, while the telescopic rod of servo cylinder 15 is fixedly connected movable shutter 17, and the outer side of shell 16 is symmetrically connected temperature sensor 20.

[0018] In the embodiment, the adjusting assembly 12 of the heat dissipation adjusting device is arranged at the position where the server 13 of the data center needs heat dissipation, the box 1 is connected with an external fan (not shown in the figure) through the air inlet pipe 6, the confluence box 14 is connected with an external cooling liquid storage box (not shown in the figure) through the liquid conveying pipe 10, the switch of the external fan is started, the external airflow flows into the box 1 through the air inlet pipe 6, the airflow flows into the corresponding adjusting assembly 12 through the conveying pipe 11, and then the airflow is sprayed to the position where the server 13 of the data center needs heat dissipation through the opening of the adjusting assembly 12, the switch of the liquid pump in the external cooling liquid storage box is started, so that the cooling liquid can flow into the corresponding confluence box 14 through a group of liquid conveying pipes 10, the cooling liquid in the confluence box 14 flows into another group of confluence boxes 14 through the refrigeration pipe 9, and then the cooling liquid flows back to the external cooling liquid storage box through the liquid conveying pipe 10 connected with another group of confluence boxes 14, wherein the cooling liquid can cool the refrigeration plate 7 during the flowing process in the refrigeration pipe 9, and then the refrigeration plate 7 can cool the airflow during the flowing process of the airflow, so as to ensure that the adjusting assembly 12 can spray cold air to the position where the server 13 of the data center needs heat dissipation, improve the heat dissipation effect of the server 13 of the data center, and the temperature sensor 20 arranged on the surface of the adjusting assembly 12 can transmit the temperature data of the position where the server 13 of the data center needs heat dissipation to the PLC assembly connected electrically in real time, the PLC assembly can start the corresponding servo cylinder according to the change of the temperature data, so that the telescopic rod of the servo cylinder can push the movable shutter 17 to move upwards or downwards, and then the size of the air outlet opening of the shell 16 can be flexibly adjusted through the cooperation of the fixed shutter 18 and the movable shutter 17, so as to effectively enhance the flexibility of the heat dissipation adjusting device in response to the different heat dissipation requirements of the server 13 of the data center, avoid the server 13 of the data center being cooled too much, and reduce the overall energy consumption of the heat dissipation adjusting device.

[0019] As a preferred embodiment, the adjusting assembly 12 is in a cuboid structure, and the shell 16 is in a concave structure, and two groups of temperature sensors 20 are fixedly connected to the position close to the opening of the outer side surface of the shell 16, and two groups of main sliding grooves symmetrically arranged on the both sides of the opening of the shell 16 are in a strip-shaped structure, and the length of the main sliding groove is greater than the length of the fixed plate 19.

[0020] In the embodiment, as Figure 3 and Figure 4 the temperature sensor 20 is arranged, so that the adjusting assembly 12 can actually detect the temperature change of the corresponding server 13 of the data center, and then the flexibility of the adjusting assembly 12 during use can be improved, and the problems of excessive heat dissipation or insufficient heat dissipation of the adjusting assembly 12 to the server 13 of the data center can be avoided.

[0021] As a preferable embodiment, the plurality of fixed baffles 18 are fixedly connected to the opening of the shell 16 at equal intervals in the vertical direction, and each of the plurality of fixed baffles 18 has a rectangular structure, and the fixed baffles 18 are fixedly connected to the auxiliary plates on the side close to the interior of the shell 16, and the surface of the auxiliary plate is arc-shaped.

[0022] In the embodiment, as shown in Figure 3 and Figure 4 , the auxiliary plates arranged on the surface of the fixed baffles 18 can effectively reduce the impact force of the airflow on the fixed baffles 18 when the airflow flows in the interior of the shell 16, and the arrangement of the fixed baffles 18 facilitates the adjustment assembly 12 to adjust the air outlet according to actual needs.

[0023] As a preferable embodiment, the two fixed plates 19 have a long strip structure, and a plurality of movable baffles 17 are fixedly connected between the two fixed plates 19 at equal intervals in the length direction and in parallel, and each of the plurality of movable baffles 17 has a rectangular structure, and the fixed plate 19 and the movable baffle 17 are combined to form a Chinese character structure.

[0024] In the embodiment, as shown in Figure 3 and Figure 4 , the fixed plate 19 and the main sliding groove are matched in size, which can assist in enhancing the stability of the movable baffle 17 when moving, and the arrangement of the fixed plate 19 enables the plurality of movable baffles 17 to move synchronously, and the number and position of the movable baffle 17 and the fixed baffle 18 are one-to-one corresponding, which can enhance the accuracy of the air outlet adjustment of the adjustment assembly 12.

[0025] As a preferable embodiment, the refrigeration box 2 fixedly connected in the box body 1 has a rectangular structure, the two groups of through holes opened on the two sides of the refrigeration box 2 each have a rectangular structure, and the refrigeration plate 7 and the auxiliary partition plate 8 fixedly connected in the inner cavity of the refrigeration box 2 each have a rectangular structure, and the inner cavity formed by the combination of the refrigeration box 2, the refrigeration plate 7 and the auxiliary partition plate 8 has a Chinese character structure.

[0026] In the embodiment, as shown in Figure 1 , Figure 2 and Figure 3 , the refrigeration plate 7 and the auxiliary partition plate 8 fixedly connected in the interior of the refrigeration box 2 can prolong the flow path of the airflow, thereby assisting in enhancing the refrigeration effect of the airflow in the interior of the refrigeration box 2, and thus assisting in enhancing the heat dissipation effect of the heat dissipation adjustment device on the data center server 13.

[0027] As a preferable embodiment, a plurality of refrigeration pipes 9 are fixedly connected in the refrigeration plate 7 at equal intervals in the vertical direction, and each of the plurality of refrigeration pipes 9 has a cylindrical structure, and the two groups of bus boxes 14 fixedly connected at the two ends of the refrigeration pipe 9 each have a rectangular structure.

[0028] In the embodiment, as shown inFigure 1 、 Figure 2 and Figure 3 Two groups of the converging boxes 14 are communicated at both ends of the refrigeration pipe 9, so that the cooling liquid can flow into one end of the refrigeration pipe 9 and flow out from the other end, and then the circulation of the cooling liquid is realized by cooperating with the liquid conveying pipe 10, and the refrigeration effect of the refrigeration pipe 9 and the refrigeration plate 7 is ensured.

[0029] As a preferred embodiment, the main partition plate 3 is in a rectangular structure, the inner cavity of the box 1 is in a door-shaped structure, the filter screen 5 fixedly connected at the top of the inner cavity of the box 1 near one side of the air inlet pipe 6 is in an L-shaped structure, and the filter plate 4 is fixedly connected in the box 1 by buckling, and the filter plate 4 is below the filter screen 5.

[0030] In the embodiment, as Figure 1 and Figure 2 The air pressure sensor is arranged on one side of the inner cavity of the box 1 near the air inlet pipe 6, so that the air pressure in the inner cavity of the box 1 can be reduced, the worker can timely adjust, the safety of the device during use is enhanced, the filter plate 4 is filled with activated carbon, the air flow can be effectively dried, the dust in the air flow can be filtered by the filter screen 5, and the cleanliness of the air flow is ensured.

[0031] The data center heat dissipation adjusting device of the utility model through the cooperation of the refrigeration box 2, the conveying pipe 11, the adjusting assembly 12 and the temperature sensor 20, so that the heat dissipation adjusting device can adjust the heat dissipation efficiency according to the temperature change of different data center servers 13, thereby enhancing the practicability of the device, and the external fan, the air pressure sensor, the temperature sensor 20 and the servo cylinder 15 are electrically connected with the PLC assembly respectively, the part of the application related to the circuit, the electronic components and the module are all prior art, and the person skilled in the art can realize it, and the content protected by the utility model does not involve the improvement of software and method.

Claims

1. A data center heat dissipation conditioning apparatus, comprising: The utility model provides a box (1) and adjusting assembly (12), it is characterized by: the bottom fixed connection refrigeration box (2) in the chamber of box (1), the chamber of refrigeration box (2) is connected refrigeration plate (7) and vice partition (8) respectively symmetry, and the inside symmetry of refrigeration plate (7) is connected refrigeration pipe (9), and the both ends of refrigeration pipe (9) pass through the side wall symmetry of refrigeration box (2) and box (1) and are connected to the confluence box (14), and the side fixed connection of confluence box (14) is connected to infusion tube (10), and the upper end of one side of box (1) is fixedly connected to the air inlet pipe (6), and the upper end of the other side of box (1) is connected to adjusting assembly (12) through the conveying pipe (11), and adjusting assembly (12) is opposite data center server (13), and the side of chamber of box (1) is close to air inlet pipe (6) is fixedly connected filter plate (4) and filter screen (5) respectively, and the upper surface fixed connection of refrigeration box (2) is main partition (3), adjusting assembly (12) is composed of shell (16), movable shutter (17) and fixed shutter (18), and the opening symmetry of shell (16) is connected fixed shutter (18), and the both ends symmetry of movable shutter (17) is connected fixed plate (19), and the inside of fixed plate (19) is connected the main sliding slot of shell (16) opening, and the top of shell (16) opening is fixedly connected servo cylinder (15) through recess, and the telescopic rod of servo cylinder (15) is fixedly connected movable shutter (17), and the outside symmetry of shell (16) is connected temperature sensor (20).

2. The data center heat dissipation conditioning device of claim 1, wherein, The overall adjusting assembly (12) is rectangular structure, and the shell (16) is concave structure, and the position of the outside of shell (16) close to the opening is fixedly connected two groups of temperature sensor (20), and the two groups of main sliding slot that the both sides symmetry of shell (16) opening are all long strip structure, and the length of main sliding slot is greater than the length of fixed plate (19).

3. The data center heat dissipation conditioning device of claim 1, wherein, The opening of shell (16) is fixedly connected multiple fixed shutter (18) along the vertical direction at equal intervals, and multiple fixed shutter (18) are all rectangular structure, and the side of fixed shutter (18) close to the inside of shell (16) is fixedly connected auxiliary plate, and the surface of auxiliary plate is arc convex.

4. The data center heat dissipation conditioning device of claim 1, wherein, The fixed plate (19) has two groups, and the both sides of fixed plate (19) are long strip structure, and multiple movable shutter (17) are fixedly connected along the length direction parallel at equal intervals between the both sides of fixed plate (19), and multiple movable shutter (17) are all rectangular structure, and fixed plate (19) and movable shutter (17) are combined together and constitute the structure of eye.

5. The data center heat dissipation conditioning device of claim 1, wherein, The refrigeration box (2) fixedly connected in the chamber of box (1) is rectangular structure, and the both sides of refrigeration box (2) are long rectangular structure, and the refrigeration plate (7) and vice partition (8) fixedly connected in the chamber of refrigeration box (2) are all rectangular structure, and the chamber of refrigeration box (2), refrigeration plate (7) and vice partition (8) are combined together and constitute the section of chamber and present the structure of string.

6. The data center heat dissipation conditioning device of claim 1, wherein, The refrigeration plate (7) is fixedly connected with multiple groups of refrigeration pipes (9) in parallel at equal intervals in the vertical direction inside, the multiple groups of refrigeration pipes (9) are in cylindrical structures, and the two groups of bus boxes (14) fixedly connected at the two ends of the refrigeration pipe (9) are in rectangular structures.

7. The data center heat regulation device of claim 1, wherein, The main partition plate (3) is in a rectangular structure, the inner cavity of the box (1) is in a door-shaped structure, the filter screen (5) fixedly connected at the top of the inner cavity of the box (1) near one side of the air inlet pipe (6) is in an L-shaped structure, and the filter plate (4) is fixedly connected in the box (1) through buckling and is located below the filter screen (5).