Liquid cooling cabinet module and liquid cooling system
The sliding structure makes the liquid-cooled cabinet staggered, which solves the problem of hot and cold passage space occupied during maintenance or installation of the liquid-cooled cabinet, and improves the space utilization rate of the computer room.
Patent Information
- Application Number
- CN202422064135.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-23
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-08-23
AI Technical Summary
Existing liquid-cooled cabinets require hot and cold passage space during maintenance or installation, resulting in low space utilization in the computer room.
The sliding structure allows the liquid-cooling cabinet to move, and the sliding structure enables the staggered liquid-cooling cabinet, saving the space of the cold and cold passages, and providing maintenance or installation requirements of the liquid-cooling cabinet.
It improves the utilization rate of the computer room space and ensures the maintenance or installation needs of liquid-cooled cabinets.
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Figure CN223231473U_ABST
Abstract
Description
Technical Field
[0001] The present disclosure belongs to the field of computer room equipment, and particularly relates to a liquid cooling cabinet module and a liquid cooling system. Background Art
[0002] With the rapid development of information technology and cloud computing, server cabinets are increasingly used in data centers, and the power consumption of individual cabinets in data centers is also increasing. Liquid-cooled cabinets use liquid cooling technology to remove heat from computers. Liquid-cooled cabinets include cold plate-type and immersion-type cabinets.
[0003] Generally, to dissipate heat from a cold plate liquid cabinet, it is necessary to separate hot and cold aisles in the computer room. The cold aisle is used to supply cold air, and the hot aisle is used to exhaust hot air. Figure 1 As shown in the figure, immersion liquid cooling cabinets completely immerse servers in coolant, dissipating heat through coolant circulation or evaporation and condensation. They do not require hot or cold aisles for heat dissipation, but do require space in the hot or cold aisles to open the cabinet's front or rear doors for easy maintenance. Consequently, this reduces computer room space utilization. Utility Model Content
[0004] In view of the above problems, the present disclosure is proposed. The present disclosure provides a liquid cooling cabinet module and a liquid cooling system, which can improve the utilization rate of the computer room space.
[0005] According to one aspect of the present disclosure, a liquid cooling cabinet module is provided, comprising:
[0006] At least one row of liquid-cooling cabinet groups, each row of liquid-cooling cabinet groups including multiple groups of liquid-cooling cabinets and sliding structures connected to each group of liquid-cooling cabinets, and each group of liquid-cooling cabinets including two liquid-cooling cabinets arranged opposite to each other;
[0007] Each of the liquid cooling cabinets can be moved by the sliding structure so that two oppositely arranged liquid cooling cabinets are staggered.
[0008] Optionally, the sliding structure includes a guide rail assembly parallel to each group of liquid cooling cabinets, and a sliding assembly connected to each of the liquid cooling cabinets;
[0009] Each of the liquid cooling cabinets can move along the guide rail assembly via a sliding assembly.
[0010] Optionally, the liquid cooling cabinets are arranged in multiple groups along the first direction;
[0011] The length direction of the guide rail assembly extends along the first direction;
[0012] Alternatively, the length direction of the guide rail assembly extends in a direction perpendicular to the first direction.
[0013] Optionally, the guide rail assembly includes a top guide rail assembly and a bottom guide rail assembly;
[0014] The top guide rail assembly is arranged at the top of each row of liquid cooling cabinet groups, and the bottom guide rail assembly is arranged at the bottom of each row of liquid cooling cabinet groups.
[0015] Optionally, the bottom guide rail assembly is provided on a base for fixing each row of liquid cooling cabinet groups;
[0016] A retractable hose connected to each of the liquid cooling cabinets is placed in the base.
[0017] Optionally, a wiring rack is further provided on the guide rail assembly;
[0018] The reserved length of the cables placed in the wiring rack is greater than or equal to the cabinet width of each of the liquid cooling cabinets.
[0019] Optionally, the sliding assembly includes a connecting device connected to each of the liquid cooling cabinets, and a sliding block connected to the connecting device;
[0020] The slider is also connected to the guide rail assembly and can move along the guide rail assembly.
[0021] Optionally, the connecting device is detachably connected to each of the liquid cooling cabinets.
[0022] Optionally, the guide rail assembly includes a bottom guide rail assembly;
[0023] The bottom guide rail assembly is arranged at the bottom of each row of liquid cooling cabinet groups.
[0024] According to another aspect of the present disclosure, a liquid cooling system is provided, comprising the aforementioned liquid cooling cabinet module.
[0025] In the present disclosure, the liquid-cooling cabinet module and the liquid-cooling system include at least one row of liquid-cooling cabinet groups, each row of liquid-cooling cabinet groups includes multiple groups of liquid-cooling cabinets and sliding structures connected to each group of liquid-cooling cabinets, and each group of liquid-cooling cabinets includes two liquid-cooling cabinets arranged back to back. Each liquid-cooling cabinet can be moved by the sliding structure so that the two liquid-cooling cabinets arranged opposite each other are staggered. The movement of the liquid-cooling cabinet is achieved by the sliding structure. When it is necessary to open the back door of the target liquid-cooling cabinet for maintenance or installation, the liquid-cooling cabinet arranged back to back can be moved away so that the back door of the target liquid-cooling cabinet can be opened. In this way, while ensuring the maintenance or installation needs of the liquid-cooling cabinet, the back door passage space reserved in the original computer room is saved. Therefore, the utilization rate of the computer room space is improved.
[0026] It is to be understood that both the foregoing general description and the following detailed description are exemplary, and are intended to provide further explanation of the technology as claimed. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] The above and other purposes, features, and advantages of the present disclosure will become more apparent through a more detailed description of the embodiments of the present disclosure in conjunction with the accompanying drawings. The accompanying drawings are intended to provide a further understanding of the embodiments of the present disclosure and constitute a part of the specification. Together with the embodiments of the present disclosure, they are used to explain the present disclosure and are not intended to limit the present disclosure. In the drawings, the same reference numerals generally represent the same components or steps.
[0028] Figure 1 The figure is a schematic diagram of the structure of the cabinets in the computer room in the prior art.
[0029] Figure 2 A schematic structural diagram of a liquid cooling cabinet module provided by the present invention.
[0030] Figure 3 This is a top view of each row of liquid-cooled cabinets provided by the present invention during normal operation.
[0031] Figure 4 A cross-sectional view of each row of liquid-cooled cabinets provided in the present disclosure.
[0032] Figure 5 A top view of each row of liquid-cooled cabinets after movement provided by the present disclosure.
[0033] Figure 6 Another structural schematic diagram of a liquid cooling cabinet module provided by the present invention.
[0034] Description of Reference Numerals
[0035] 01 Each row of liquid cooling cabinets 02 Sliding structure 100 Each group of liquid cooling cabinets
[0036] 110 liquid cooling cabinet 111 connecting device 112 sliding assembly
[0037] 200 guide rail assembly 210 top guide rail assembly 220 bottom guide rail assembly
[0038] 300 base 310 retractable hose 320 liquid cooling pipe
[0039] 400 cable tray DETAILED DESCRIPTION
[0040] In order to enable those skilled in the art to more clearly understand the technical solution of the present disclosure, the application scenario of the solution of the present disclosure is first described below.
[0041] With the rapid development of information technology and cloud computing, server cabinets are increasingly used in data centers, and the power consumption of individual cabinets in data centers is also increasing. Liquid-cooled cabinets use liquid cooling technology to remove heat from computers. Liquid-cooled cabinets include cold plate-type and immersion-type cabinets.
[0042] Currently, water-cooled in-row air conditioners are required to dissipate heat from cold plate liquid cabinets. Cold aisles and hot aisles are separated in the computer room. The cold aisles are used to supply cold air, while the hot aisles are used to exhaust hot air. The cold aisles or hot aisles are sealed to prevent the fusion of cold and hot air, which affects the heat dissipation effect. Figure 1 As shown. Immersion-type liquid-cooled cabinets completely immerse servers in coolant, dissipating heat through circulation or evaporation and condensation. They eliminate the need for hot or cold aisles and are independent of the room's temperature. However, because liquid-cooled cabinets require maintenance or server installation, hot or cold aisles are required to open the cabinet's front or rear doors. To facilitate maintenance and installation, hot and cold aisles are currently retained. Consequently, this reduces room space utilization.
[0043] To address the above-mentioned technical problems, the present disclosure provides a liquid-cooling cabinet module and liquid cooling system. The present disclosure provides a liquid-cooling cabinet module and liquid cooling system comprising at least one row of liquid-cooling cabinets, each row comprising multiple groups of liquid-cooling cabinets and rail assemblies parallel to each group of liquid-cooling cabinets. Each group of liquid-cooling cabinets comprises two liquid-cooling cabinets arranged back-to-back, wherein the liquid-cooling cabinets are cabinets that operate without the need for cold aisles and hot aisles. Each liquid-cooling cabinet comprises a connecting device and a sliding assembly, wherein the connecting device is respectively connected to each liquid-cooling cabinet and the sliding assembly; each liquid-cooling cabinet is movable along the rail assembly via the sliding assembly. The rail assembly enables the movement of the liquid-cooling cabinets. When the rear door of a target liquid-cooling cabinet needs to be opened for maintenance or installation, the liquid-cooling cabinet arranged back-to-back can be moved away to open the rear door of the target liquid-cooling cabinet. This ensures the maintenance or installation needs of the liquid-cooling cabinets while eliminating the space for the rear door passageway reserved in the original computer room. Consequently, the utilization rate of the computer room space is improved.
[0044] In order to make the purpose, technical solutions and advantages of the present disclosure more apparent, the following will describe in detail exemplary embodiments of the present disclosure with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present disclosure, rather than all the embodiments of the present disclosure, and it should be understood that the present disclosure is not limited to the exemplary embodiments described herein.
[0045] Figure 2 This is a structural diagram of a liquid cooling cabinet module provided by the present disclosure. Figure 2 As shown, the device includes: at least one row of liquid cooling cabinets.
[0046] A row of liquid cooling cabinets consists of Figure 2 The entire liquid cooling cabinet within the dotted box.
[0047] Each row of liquid cooling cabinets 01 includes multiple groups of liquid cooling cabinets and a sliding structure 02 connected to each group of liquid cooling cabinets. Each group of liquid cooling cabinets 100 includes two oppositely arranged liquid cooling cabinets 110. Each liquid cooling cabinet 110 can be moved by the sliding structure 02 to stagger the two oppositely arranged liquid cooling cabinets.
[0048] The liquid-cooling cabinet may be a cabinet that does not need to operate with the aid of a cold channel and a hot channel. In this embodiment, the liquid-cooling cabinet may be an immersion liquid-cooling cabinet.
[0049] The two liquid-cooling cabinets in each group of liquid-cooling cabinets 100 are arranged opposite each other, for example, back-to-back. This saves space for opening and closing the rear doors of the liquid-cooling cabinets while retaining a passageway between the front doors. This facilitates staff observation and maintenance of the indicator functions of the front doors of the liquid-cooling cabinets. Furthermore, the liquid-cooling cabinets 110 can be arranged so that the front doors of the two liquid-cooling cabinets face each other; alternatively, the two liquid-cooling cabinets can be arranged facing the same direction.
[0050] For example, the sliding structure 02 includes a guide rail assembly 200 parallel to each group of liquid cooling cabinets, and a sliding assembly 112 connected to each liquid cooling cabinet 110 ; each liquid cooling cabinet 110 can move along the guide rail assembly 200 via the sliding assembly 112 .
[0051] In this embodiment, the sliding structure 02 can be a combination of a guide rail assembly 200 and a sliding assembly 112. The sliding assembly 112 can be a snap-on slider that can meet the requirements of earthquake-resistant reinforcement; the sliding assembly 112 can also be a roller slider that can move along the guide rail assembly 200.
[0052] The sliding assembly 112 in the sliding structure 02 may also be a pulley installed at the bottom of the liquid cooling cabinet 110. It is understood that the present disclosure does not specifically limit the form of the sliding assembly 112.
[0053] In addition, the sliding assembly 112 may include a connecting device 111 connected to each liquid cooling cabinet 110 respectively, and a slider connected to the connecting device 111 . The slider is also connected to the guide rail assembly 200 and can move along the guide rail assembly 200 .
[0054] Furthermore, the connection between the connecting device 111 and each liquid-cooling cabinet 110 can be detachable or integrally formed. It is understood that the present disclosure does not specifically limit the connection between the connecting device 111 and the liquid-cooling cabinet 110. For example, the liquid-cooling cabinets 110 are arranged in multiple groups along a first direction; the length of the guide rail assembly 200 extends along the first direction; or the length of the guide rail assembly 200 extends in a direction perpendicular to the first direction.
[0055] In this embodiment, Figure 2 The direction of the arrow in the figure is considered as the first direction. Multiple groups of liquid cooling cabinets can be arranged in accordance with the first direction, and the guide rail assembly 200 can be arranged along the first direction. Alternatively, the guide rail assembly 200 can be arranged in a direction perpendicular to the first direction, that is, perpendicular to the first direction. Figure 2 The direction of the arrow.
[0056] Figure 3 For example, the two liquid cooling cabinets in each group of liquid cooling cabinets are set back to back, and the top view of each row of liquid cooling cabinets during normal operation is as follows: Figure 3 As shown, a row of liquid cooling cabinets includes two groups of liquid cooling cabinets, and each group of liquid cooling cabinets 100 includes two liquid cooling cabinets. The two liquid cooling cabinets in each group of liquid cooling cabinets 100 are arranged back to back, with the front of the liquid cooling cabinet 110 facing outward. Both sides of each row of liquid cooling cabinets 01 are reserved for the machine room passages. Figure 3 Take the first direction as the horizontal direction as an example, that is, Figure 3 The guide rail assembly 200 extends along a first direction and is also arranged transversely.
[0057] Similarly, the guide rail assembly 200 may also be arranged to extend in a direction perpendicular to the first direction.
[0058] Each liquid cooling cabinet 110 includes a connecting device 111 and a sliding assembly 112. The connecting device is connected to each liquid cooling cabinet 110 and the sliding assembly 112 respectively.
[0059] Each liquid cooling cabinet 110 may include a plurality of connecting devices 111 , and the connecting devices 111 are used to connect the liquid cooling cabinet 110 and the sliding assembly 112 .
[0060] In this embodiment, the connecting device 111 may be a connecting rod. The connection between the connecting device 111 and each liquid cooling cabinet 110 may be a detachable connection or an integrally formed connection.
[0061] Figure 4 Taking the two liquid cooling cabinets in each group of liquid cooling cabinets as an example, the cross-sectional view of each row of liquid cooling cabinets is as follows: Figure 4The sliding structure 02 may include a plurality of sliding assemblies 112 and guide rail assemblies 200 . The sliding assemblies 112 connect the guide rail assemblies 200 and the connecting device 111 , so that each liquid cooling cabinet 110 can move along the guide rail assemblies 200 through the sliding assemblies 112 .
[0062] In this embodiment, the sliding assembly 112 may be a buckle, which connects the guide rail assembly 200 and the connecting device 111 and can slide freely on the guide rail assembly 200 . The buckle can also meet the requirements of earthquake-resistant reinforcement.
[0063] Figure 5 This is a top view of each row of liquid cooling cabinets after they are moved, as shown in the figure below: Figure 5 As shown, the liquid cooling cabinet 3-1 and the liquid cooling cabinet 3-2 form a group of liquid cooling cabinets. When the target liquid cooling cabinet, i.e., the liquid cooling cabinet 3-1, needs to be maintained or installed, the liquid cooling cabinet 3-2 facing away can be moved away so that the rear door of the liquid cooling cabinet 3-1 can be opened.
[0064] In this way, without opening the rear doors, the two liquid cooling cabinets in each group of liquid cooling cabinets 100 are placed back to back, which can save the passage space for the rear doors of the liquid cooling cabinets and improve the utilization rate of the computer room space.
[0065] In the present disclosure, the liquid-cooling cabinet module and the liquid-cooling system include at least one row of liquid-cooling cabinet groups, each row of liquid-cooling cabinet groups includes multiple groups of liquid-cooling cabinets and sliding structures connected to each group of liquid-cooling cabinets, and each group of liquid-cooling cabinets includes two liquid-cooling cabinets arranged back to back. Each liquid-cooling cabinet can be moved by the sliding structure so that the two liquid-cooling cabinets arranged opposite each other are staggered. The movement of the liquid-cooling cabinet is achieved by the sliding structure. When it is necessary to open the back door of the target liquid-cooling cabinet for maintenance or installation, the liquid-cooling cabinet arranged back to back can be moved away so that the back door of the target liquid-cooling cabinet can be opened. In this way, while ensuring the maintenance or installation needs of the liquid-cooling cabinet, the back door passage space reserved in the original computer room is saved. Therefore, the utilization rate of the computer room space is improved.
[0066] Figure 6 Another structural diagram of a liquid cooling cabinet module provided by the present disclosure is shown in FIG. Figure 6 shown.
[0067] Rail assembly 200 includes a top rail assembly 210 and a bottom rail assembly 220. Top rail assembly 210 is located at the top of each row of liquid-cooled cabinets 01, while bottom rail assembly 220 is located at the bottom of each row of liquid-cooled cabinets 01. Top rail assembly 210 and bottom rail assembly 220 are symmetrically arranged. Each of top rail assembly 210 and bottom rail assembly 220 includes two parallel rails.
[0068] Each liquid-cooled cabinet 110 is movable between a top rail assembly 210 and a bottom rail assembly 220 .
[0069] The two parallel rails of the top rail assembly 210 and the two parallel rails of the bottom rail assembly 220 can be respectively arranged at the top edge and the bottom edge of each row of liquid cooling cabinet groups 01. Figure 6 The guide rail assembly 200 is exemplified by a plurality of groups of liquid cooling cabinets arranged horizontally.
[0070] In addition, the top rail assembly 210 and the bottom rail assembly 220 may each include a rail, and the rail is disposed at the top center or the bottom center of the liquid cooling cabinet 110 .
[0071] In a possible embodiment, the guide rail assembly 200 includes a bottom guide rail assembly 220 ; the bottom guide rail assembly 220 is disposed at the bottom of each row of liquid cooling cabinet groups 01 .
[0072] In this embodiment, movement in the liquid cooling cabinet can be achieved by simply providing the bottom rail assembly 220 .
[0073] In a possible embodiment, the bottom rail assembly 220 is provided on a base 300 for fixing each row of liquid cooling cabinet groups 01; a retractable hose 310 connected to each liquid cooling cabinet is placed in the base 300, such as Figure 4 shown.
[0074] Specifically, the connection between the bottom rail assembly 220 and the base 300 can be fixed or detachable. In addition, the fixed connection can be an integral molding.
[0075] Liquid cooling pipes 320 are laid in the base 300. The laying direction of the liquid cooling pipes 320 aligns with the arrangement direction of each row of liquid cooling cabinet groups 01. The liquid cooling pipes 320 are used to transport condensate from the cooling cabinets. The liquid cooling pipes 320 are connected to each liquid cooling cabinet 110 via a retractable hose 310. The retractable hose prevents the movement of the liquid cooling cabinet 110 from being affected by the limitations of the condensate transport pipeline.
[0076] Furthermore, when moving the liquid cooling cabinet 110, the rear door of the liquid cooling cabinet 110 needs to be opened by moving at least the width of one cabinet door. Therefore, the extendable length of the retractable hose 310 needs to be greater than or equal to the width of each liquid cooling cabinet 110. For example, the extendable length of the retractable hose 310 can be 60 cm.
[0077] In a possible embodiment, a cable tray 400 is further provided on the guide rail assembly 200, and the reserved length of the cables placed in the cable tray 400 is greater than or equal to the cabinet width of each liquid cooling cabinet 110. Figure 4 shown.
[0078] Specifically, when the liquid cooling cabinet 110 is moved, the cables connected to the liquid cooling cabinet 110 will also move. Reserving cable length can prevent the movement of the liquid cooling cabinet 110 from being affected by the limitation of cable length.
[0079] Furthermore, when the liquid cooling cabinet 110 is moved, at least the width of one cabinet door needs to be moved to open the rear door of the liquid cooling cabinet 110. Therefore, the reserved length can be greater than or equal to the cabinet width of each liquid cooling cabinet 110. For example, the reserved length can be a stretchable length of 60 cm.
[0080] In addition, according to the requirements of cable classification, the cable rack 400 can be set as a multi-layer cable rack to place different types of cables and facilitate maintenance by staff. Moreover, the cable rack 400 and the guide rail assembly 200 can be connected in an integrated manner or in a detachable manner.
[0081] The present disclosure also provides a liquid cooling system, which includes a combination of the liquid cooling cabinet modules provided in any of the above embodiments. The liquid cooling system includes:
[0082] At least one row of liquid cooling cabinets, each row of liquid cooling cabinets 01 includes multiple groups of liquid cooling cabinets and sliding structures 02 connected to each group of liquid cooling cabinets, and each group of liquid cooling cabinets 100 includes two liquid cooling cabinets 110 arranged opposite to each other;
[0083] Each of the liquid cooling cabinets 110 can be moved by the sliding structure 02 so that two oppositely arranged liquid cooling cabinets 110 are staggered.
[0084] Optionally, the sliding structure 02 includes a guide rail assembly 200 parallel to each group of liquid cooling cabinets, and a sliding assembly 112 connected to each of the liquid cooling cabinets 110;
[0085] Each of the liquid cooling cabinets 110 can move along the guide rail assembly 200 via a sliding assembly 112 .
[0086] Optionally, the liquid cooling cabinets 110 are arranged in multiple groups along the first direction;
[0087] The length direction of the guide rail assembly 200 extends along the first direction;
[0088] Alternatively, the length direction of the guide rail assembly 200 extends in a direction perpendicular to the first direction.
[0089] Optionally, the guide rail assembly 200 includes a top guide rail assembly 210 and a bottom guide rail assembly 220;
[0090] The top guide rail assembly 210 is disposed at the top of each row of liquid cooling cabinet groups 01 , and the bottom guide rail assembly 220 is disposed at the bottom of each row of liquid cooling cabinet groups 01 .
[0091] Optionally, the bottom rail assembly 220 is provided on a base 300 for fixing each row of liquid cooling cabinet groups 01;
[0092] A retractable hose 310 connected to each of the liquid cooling cabinets 110 is placed in the base 300 .
[0093] Optionally, a wiring rack 400 is further provided on the guide rail assembly 200;
[0094] The reserved length of the cables placed in the cable rack 400 is greater than or equal to the cabinet width of each of the liquid cooling cabinets 110 .
[0095] Optionally, the sliding assembly 112 includes a connecting device 111 connected to each of the liquid cooling cabinets 110 , and a sliding block connected to the connecting device 111 ;
[0096] The slider is also connected to the guide rail assembly 200 and can move along the guide rail assembly 200 .
[0097] Optionally, the connecting device 111 is detachably connected to each of the liquid cooling cabinets 110 .
[0098] Optionally, the guide rail assembly 200 includes a bottom guide rail assembly 220;
[0099] The bottom guide rail assembly 220 is disposed at the bottom of each row of liquid cooling cabinet groups 01 .
[0100] The basic principles of the present disclosure have been described above in conjunction with specific embodiments. However, it should be noted that the advantages, strengths, and effects mentioned in this disclosure are merely illustrative and not restrictive, and should not be construed as necessarily possessed by each embodiment of the present disclosure. Furthermore, the specific details disclosed above are provided for illustrative purposes and to facilitate understanding, rather than as limitations. These details do not limit the present disclosure to necessarily being implemented using these specific details.
[0101] The block diagrams of the devices, devices, equipment, and systems involved in this disclosure are merely illustrative examples and are not intended to require or imply that they must be connected, arranged, or configured in the manner shown in the block diagrams. As will be appreciated by those skilled in the art, these devices, devices, equipment, and systems can be connected, arranged, or configured in any manner. Words such as "include," "comprise," "have," and the like are open-ended words, meaning "including but not limited to," and can be used interchangeably therewith. The words "or" and "and" used herein refer to the words "and / or" and can be used interchangeably therewith, unless the context clearly indicates otherwise. The word "such as" used herein refers to the phrase "such as but not limited to," and can be used interchangeably therewith.
[0102] It should also be noted that in the systems and modules of the present disclosure, the components can be decomposed and / or reassembled, and such decompositions and / or reassemblies should be regarded as equivalent solutions of the present disclosure.
[0103] Various changes, substitutions, and modifications may be made to the technology described herein without departing from the teachings of the appended claims. Moreover, the scope of the claims of this disclosure is not limited to the specific aspects of the processes, machines, manufactures, compositions of things, means, methods, and actions described above. Currently existing or later developed processes, machines, manufactures, compositions of things, means, methods, or actions that perform substantially the same function or achieve substantially the same results as the corresponding aspects described herein may be utilized. Accordingly, the appended claims include within their scope such machines, manufactures, compositions of things, or means.
[0104] The above description of the disclosed aspects is provided to enable any person skilled in the art to make or use the present disclosure. Various modifications to these aspects will be readily apparent to those skilled in the art, and the general principles defined herein may be applied to other aspects without departing from the scope of the present disclosure. Therefore, the present disclosure is not intended to be limited to the aspects shown herein, but rather to be accorded the widest scope consistent with the principles and novel features disclosed herein.
[0105] The above description has been provided for the purpose of illustration and description. In addition, this description is not intended to limit the embodiments of the present disclosure to the forms disclosed herein. Although a number of example aspects and embodiments have been discussed above, those skilled in the art will recognize certain variations, modifications, alterations, additions, and sub-combinations thereof.
Claims
1. A liquid cooling cabinet module, characterized in that: include: At least one row of liquid cooling cabinet groups, each row of liquid cooling cabinet groups (01) includes multiple groups of liquid cooling cabinets and sliding structures (02) connected to each group of liquid cooling cabinets, and each group of liquid cooling cabinets (100) includes two liquid cooling cabinets (110) arranged opposite to each other; Each of the liquid cooling cabinets (110) can be moved via the sliding structure (02) so that two oppositely arranged liquid cooling cabinets (110) are staggered.
2. The liquid cooling cabinet module according to claim 1, characterized in that: The sliding structure (02) includes a guide rail assembly (200) parallel to each group of liquid cooling cabinets, and a sliding assembly (112) connected to each of the liquid cooling cabinets (110); Each of the liquid cooling cabinets (110) can move along the guide rail assembly (200) via a sliding assembly (112).
3. The liquid cooling cabinet module according to claim 2, characterized in that: The liquid cooling cabinets (110) are arranged in multiple groups along a first direction; The length direction of the guide rail assembly (200) extends along the first direction; Alternatively, the length direction of the guide rail assembly (200) extends in a direction perpendicular to the first direction.
4. The liquid cooling cabinet module according to claim 2, characterized in that: The guide rail assembly (200) includes a top guide rail assembly (210) and a bottom guide rail assembly (220); The top guide rail assembly (210) is arranged at the top of each row of liquid cooling cabinet groups (01), and the bottom guide rail assembly (220) is arranged at the bottom of each row of liquid cooling cabinet groups (01).
5. The liquid cooling cabinet module according to claim 4, characterized in that: The bottom guide rail assembly (220) is arranged on a base (300) for fixing each row of liquid cooling cabinet groups (01); A retractable hose (310) connected to each of the liquid cooling cabinets (110) is placed in the base (300).
6. The liquid cooling cabinet module according to claim 2, characterized in that: A wiring rack (400) is also provided on the guide rail assembly (200); The reserved length of the cables placed in the wiring rack (400) is greater than or equal to the cabinet width of each of the liquid cooling cabinets (110).
7. The liquid cooling cabinet module according to claim 2, characterized in that: The sliding assembly (112) includes a connecting device (111) connected to each of the liquid cooling cabinets (110) respectively, and a sliding block connected to the connecting device (111); The slider is also connected to the guide rail assembly (200) and can move along the guide rail assembly (200).
8. The liquid cooling cabinet module according to claim 7, characterized in that: The connecting device (111) is detachably connected to each of the liquid cooling cabinets (110).
9. The liquid cooling cabinet module according to claim 2, characterized in that: The guide rail assembly (200) includes a bottom guide rail assembly (220); The bottom guide rail assembly (220) is arranged at the bottom of each row of liquid cooling cabinet groups (01).
10. A liquid cooling system, characterized in that: The liquid cooling system includes the liquid cooling cabinet module according to any one of claims 1 to 9.