Data center cold source system and data center

By prefabing and debugging the modules of the data center cold source system in the factory, modular delivery and installation are achieved, which solves the problems of rapid construction and connection errors during the installation of the data center cold source system, improves installation efficiency and safety, and shortens the delivery cycle.

CN222827535UActive Publication Date: 2025-05-02SHANGHAI SHUAN DATA SERVICES CO LTD
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Patent Information

Application Number
CN202421313126.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-07
Publication Date
2025-05-02
Estimated Expiration
2034-06-07

AI Technical Summary

Technical Problem

There are a lot of traditional construction during the installation of the data center cold source system, which leads to the inaccurate installation, large dust, and large welding project volume, which affects environmental protection and occupational health and safety. The combination of existing rapid solution modules is complex and has many connection points, which increases connection errors, which may lead to inability to connect on site and require re-cutting and adjustment.

Method used

Provide a data center cold source system, which realizes modular delivery and installation by prefabricating water-cooled chiller modules, water-cooled modules and pipeline modules in the factory and debugging them. Only a small amount of lifting and assembly work is carried out on site to reduce the on-site construction volume and shorten the delivery cycle.

Benefits of technology

Through prefabricated modular design, the on-site construction workload is reduced, the delivery cycle is shortened, the dust and welding risks are reduced, the installation efficiency and safety is improved, and the requirements of rapid design, production and delivery are met.

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Abstract

The embodiment of the utility model provides a data center cold source system and a data center. The data center cold source system comprises a pipeline module and a plurality of water cooling units, and the pipeline module is matched with the water cooling units. Each water-cooling unit comprises a water-cooling water chilling unit module and a water-cooling module. The water-cooling water chilling unit is integrated on the first base, and the cooling water inlet pipeline, the cooling water outlet pipeline, the chilled water inlet pipeline and the cooling water outlet pipeline are integrated on the second base. The pipeline module is erected on the top of the first pipeline frame. According to the technical scheme, the water-cooling water chilling unit module, the water-cooling module and the pipeline module can be prefabricated, debugged and modularly delivered and installed in a factory, during site construction, only a small amount of hoisting and site assembling work can be conducted, the site construction workload is reduced, and the delivery period is greatly shortened.
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Description

Technical Field

[0001] The present application relates to the technical field of data centers, and in particular to a data center cold source system and a data center. Background Art

[0002] At present, the installation of cold source systems in the data center industry still adopts the method of hoisting, transporting, connecting, installing and testing single equipment, valves, pipes, pipe accessories and pipe supports and hangers on the project site. The installation of data centers faces some problems: 1. A large amount of traditional construction is required on site, and the installation is not fast. For example, when hanging chilled water and cooling water pipes, the hangers are installed on site, which causes a lot of dust, a large amount of welding work, and a lot of smoke, which is not conducive to environmental protection and occupational health and safety; 2. Only some pipes are installed in a modular manner, and the modules are not standard, which does not meet the requirements of rapid design, rapid production and rapid delivery; 3. There are many combinations between modules of existing rapid solutions, and there are many connection points, which increases the connection error. It may not be connected on site, and re-cutting and adjusting the connection and other processing work may occur. Utility Model Content

[0003] The present application provides a data center cold source system and a data center. The water-cooled chiller module, the water-cooling module and the pipeline module can be prefabricated and debugged in the factory, and delivered and installed in a modular manner. During on-site construction, only a small amount of hoisting and on-site assembly work can be performed to reduce the on-site construction workload and greatly shorten the delivery cycle.

[0004] This application is achieved through the following technical solutions:

[0005] In a first aspect, an embodiment of the present application provides a data center cold source system, which includes a pipe module and a plurality of water cooling units, and the pipe module cooperates with the plurality of water cooling units. Each water cooling unit includes a water-cooled chiller module and a water cooling module, and the water-cooled chiller module includes a first base and a water-cooled chiller, and the water-cooled chiller is arranged on the first base. The water cooling module includes a second base, a first pipe frame, a cooling water pump, a chilled water pump, a cooling water inlet pipe, a cooling water outlet pipe, a chilled water inlet pipe and a chilled water outlet pipe, and the first pipe frame, the cooling water pump, the chilled water pump, the cooling water inlet pipe, the cooling water outlet pipe, the chilled water inlet pipe and the chilled water outlet pipe are all arranged on the second base, and the water cooling module is detachably connected to the water-cooled chiller module. The pipeline module includes a second pipeline frame, a first pipeline, a second pipeline, a third pipeline and a fourth pipeline. The first pipeline, the second pipeline, the third pipeline and the fourth pipeline are all arranged on the second pipeline frame. The second pipeline frame is configured to be erected on the top of the first pipeline frame. The first pipeline is configured to be connected to the cooling water inlet pipeline of multiple water-cooling units, the second pipeline is configured to be connected to the cooling water outlet pipeline of multiple water-cooling units, the third pipeline is configured to be connected to the chilled water inlet pipeline of multiple water-cooling units, and the fourth pipeline is configured to be connected to the chilled water outlet pipeline of multiple water-cooling units.

[0006] According to the data center cold source system of the embodiment of the present application, the pipeline module, the water-cooled chiller module, and the water cooling module are all prefabricated modules. On the one hand, they are easy to transport. On the other hand, the various components can be pre-assembled and integrated in the factory, and the debugging work can be completed. Only a small amount of connection work is required on site, which greatly reduces the on-site workload. At the same time, the pre-integration of the pipeline module can reduce the on-site pipeline layout, lifting, welding and other work, and can quickly complete the assembly of the pipeline module and multiple water cooling units.

[0007] According to some embodiments of the present application, a plurality of water cooling units are arranged at intervals along a first direction; a first mounting hole is arranged on the top of the first pipe frame, the first mounting hole is a long hole extending along a second direction, and a second mounting hole corresponding to the first mounting hole is arranged on the second pipe frame, and the second direction, the first direction and the height direction are perpendicular to each other; the data center cold source system also includes a locking adjustment component, which is arranged at the first mounting hole and the second mounting hole to connect the second pipe frame with the first pipe frame.

[0008] In the above scheme, the connection between the second pipe frame and the first pipe frame can be achieved through the cooperation of the locking adjustment component with the first mounting hole and the second mounting hole; since the first mounting hole is a long hole, the second pipe frame can move along the second direction relative to the first pipe frame to adjust the connection position of the second pipe frame and the first pipe frame, which is convenient for adapting to processing errors and makes the assembly of the pipe module and the water cooling module flexible.

[0009] According to some embodiments of the present application, a plurality of water cooling units are arranged at intervals along a first direction; the second pipe frame includes a plurality of frame units, the plurality of frame units are arranged in sequence along the first direction, and two adjacent frame units are detachably connected via a module connecting plate.

[0010] In the above scheme, multiple frame units are arranged in sequence along the first direction, and the frame units can be produced in a modular manner to facilitate processing and transportation; during on-site assembly, the number and assembly positions of the frame units can be rotated according to actual conditions to improve construction flexibility.

[0011] According to some embodiments of the present application, a plurality of water cooling units are spaced apart along a first direction; the number of second pipe frames is two, the two second pipe frames are spaced apart along the second direction, the first pipe and the third pipe are arranged in one of the two second pipe frames, the second pipe and the fourth pipe are arranged in the other of the two second pipe frames, and the second direction, the first direction and the height direction are perpendicular to each other.

[0012] In the above solution, the two second pipe frames are spaced apart along the second direction, and the first pipe, the second pipe, the third pipe and the fourth pipe are respectively arranged in the two second pipe frames, which can facilitate the assembly of the pipes and the adjustment of the positions of the pipes.

[0013] According to some embodiments of the present application, the first pipeline includes a plurality of first pipeline segments, the plurality of first pipeline segments are arranged in series, and each first pipeline segment is connected to a cooling water inlet pipeline through a first valve;

[0014] The second pipeline comprises a plurality of second pipeline segments, the plurality of second pipeline segments are arranged in series, and each second pipeline segment is connected to a cooling water outlet pipeline through a second valve;

[0015] The third pipeline includes a plurality of third pipeline segments, the plurality of third pipeline segments are arranged in series, and each third pipeline segment is connected to a chilled water inlet pipeline through a third valve;

[0016] The fourth pipeline includes a plurality of fourth pipeline sections, which are arranged in series, and each fourth pipeline section is connected to a chilled water outlet pipeline through a fourth valve.

[0017] In the above scheme, the setting of the first pipeline section is convenient for modular production, and each first pipeline section is connected to a cooling water inlet pipeline through a first valve, so as to facilitate the connection or disconnection of the first pipeline with the cooling water inlet pipeline. The setting of the second pipeline section is convenient for modular production, and each second pipeline section is connected to a cooling water outlet pipeline through a second valve, so as to facilitate the connection or disconnection of the second pipeline with the cooling water outlet pipeline. The setting of the third pipeline section is convenient for modular production, and each third pipeline section is connected to a chilled water inlet pipeline through a third valve, so as to facilitate the connection or disconnection of the third pipeline with the chilled water inlet pipeline. The setting of the fourth pipeline section is convenient for modular production, and each fourth pipeline section is connected to a chilled water outlet pipeline through a fourth valve, so as to facilitate the connection or disconnection of the fourth pipeline with the chilled water outlet pipeline.

[0018] According to some embodiments of the present application, the first pipeline frame and the second pipeline frame are steel structure frames.

[0019] In the above solution, the first pipeline frame and the second pipeline frame are steel structure frames, which have high strength and high structural stability.

[0020] According to some embodiments of the present application, multiple water cooling units are arranged at intervals along a first direction; the cooling water pump and the chilled water pump are arranged in sequence along a second direction, the chilled water pump is close to the water-cooled chiller relative to the cooling water pump, and the second direction is perpendicular to the first direction.

[0021] In the above scheme, the second direction may be the length direction of the water cooling unit, and the cooling water pump and the freezing water pump are sequentially arranged along the second direction, rationally utilizing the assembly space in the second direction and reducing the risk of interference between components.

[0022] According to some embodiments of the present application, the second base is detachably connected to the first base; the cooling water inlet pipe is configured to be detachably connected to the cooling water inlet of the water-cooled chiller, the cooling water outlet pipe is configured to be detachably connected to the cooling water outlet of the water-cooled chiller, the chilled water inlet pipe is configured to be detachably connected to the chilled water inlet of the water-cooled chiller, and the chilled water outlet pipe is configured to be detachably connected to the chilled water outlet of the water-cooled chiller.

[0023] In the above scheme, the second base is detachably connected to the first base, which facilitates independent transportation and replacement of the water-cooled module and the water-cooled chiller module; the cooling water inlet pipe, cooling water outlet pipe, chilled water inlet pipe and chilled water outlet pipe are respectively detachably connected to the water-cooled chiller, which facilitates factory commissioning, transportation and on-site assembly.

[0024] According to some embodiments of the present application, the first base and the second base are both steel structure bases.

[0025] In the above solution, both the first base and the second base have high structural strength to facilitate installation of other components.

[0026] In a second aspect, an embodiment of the present application further provides a data center, which includes a data center cold source system provided according to any of the above embodiments.

[0027] Additional aspects and advantages of the present application will be given in part in the description below, and in part will become apparent from the description below, or will be learned through the practice of the present application. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for use in the embodiments will be briefly introduced below. It should be understood that the following drawings only show certain embodiments of the present application and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other related drawings can be obtained based on these drawings without paying creative work.

[0029] Figure 1 A schematic diagram of the three-dimensional structure of a data center cooling system provided in some embodiments of the present application;

[0030] Figure 2 A schematic diagram of a three-dimensional structure of a data center cooling system from another perspective provided in some embodiments of the present application;

[0031] Figure 3 for Figure 2 A local enlarged view of point A;

[0032] Figure 4 A partial structural top view of a pipeline module provided in some embodiments of the present application;

[0033] Figure 5 A schematic diagram of the three-dimensional structure of a water cooling unit provided in some embodiments of the present application;

[0034] Figure 6 A schematic diagram of a three-dimensional structure of a water cooling unit provided in some embodiments of the present application from another perspective;

[0035] Figure 7 A schematic diagram of assembling a second pipeline frame and a first pipeline frame provided in some embodiments of the present application;

[0036] Figure 8 for Figure 4 A partial enlarged view of point B.

[0037] Icons: 100-data center cold source system; 10-pipe module; 11-second pipe frame; 111-second mounting hole; 112-frame unit; 113-module connecting plate; 12-first pipe; 121-first pipe section; 122-first flange; 13-second pipe; 131-second pipe section; 132-second flange; 14-third pipe; 141-third pipe section; 142-third flange; 15-fourth pipe; 151-fourth pipe section; 152-fourth flange; 20-water cooling unit; 20a-water-cooled chiller Group module; 21-first base; 22-water-cooled chiller; 20b-water cooling module; 23-second base; 24-first pipe frame; 241-first mounting hole; 25-auxiliary equipment; 26-cooling water pump; 27-chilled water pump; 28-cooling water inlet pipe; 29-cooling water outlet pipe; 30-chilled water inlet pipe; 31-chilled water outlet pipe; 32-locking adjustment assembly; 33-second lifting assembly; 331-second lifting ear; 34-pipe support frame; X-first direction; Y-second direction; Z-height direction. DETAILED DESCRIPTION

[0038] In order to make the purpose, technical solution and advantages of the embodiments of the present application clearer, the technical solution in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.

[0039] Unless otherwise defined, all technical and scientific terms used in this application have the same meaning as those commonly understood by technicians in the technical field of this application; the terms used in the specification of this application are only for the purpose of describing specific embodiments and are not intended to limit this application; the terms "including" and "having" in the specification and claims of this application and the above-mentioned drawings and any variations thereof are intended to cover non-exclusive inclusions. The terms "first", "second", etc. in the specification and claims of this application or the above-mentioned drawings are used to distinguish different objects, rather than to describe a specific order or a primary and secondary relationship.

[0040] Reference to "embodiments" in this application means that a particular feature, structure, or characteristic described in conjunction with the embodiments may be included in at least one embodiment of the present application. The appearance of the phrase in various locations in the specification does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive with other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described in this application may be combined with other embodiments.

[0041] In the description of this application, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", "connected", and "attached" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection, or an indirect connection through an intermediate medium, or it can be the internal communication of two elements. For ordinary technicians in this field, the specific meanings of the above terms in this application can be understood according to specific circumstances.

[0042] The term "and / or" in this application is only a description of the association relationship of associated objects, indicating that there can be three relationships. For example, A and / or B can represent: A exists alone, A and B exist at the same time, and B exists alone. In addition, the character " / " in this application generally indicates that the associated objects before and after are in an "or" relationship.

[0043] The term "multiple" as used in this application refers to more than two (including two). Similarly, "multiple groups" refers to more than two groups (including two groups), and "multiple sheets" refers to more than two sheets (including two sheets).

[0044] The structure of the data center cooling system according to the embodiment of the present application will be described below with reference to the accompanying drawings.

[0045] Please refer to Figures 1 to 6 The embodiment of the present application provides a data center cooling system 100, which includes a pipe module 10 and a plurality of water cooling units 20. The plurality of water cooling units 20 can be arranged at intervals along a first direction X, and the pipe module 10 cooperates with the plurality of water cooling units 20. The first direction X can be perpendicular to the height direction Z.

[0046] Please refer to Figure 1 and Figure 2 The pipe module 10 is disposed on the top of the plurality of water cooling units 20, and the pipe module 10 cooperates with the plurality of water cooling units 20, that is, the plurality of water cooling units 20 share one pipe module 10, and can be quickly assembled on site.

[0047] Please refer to Figure 1 and Figure 2 Each water cooling unit 20 includes a water-cooled chiller module 20a and a water cooling module 20b, and the water-cooled chiller module 20a and the water cooling module 20b are detachably connected; for example, the water-cooled chiller module 20a and the water cooling module 20b can be distributed along the second direction Y, and the second direction Y is perpendicular to the first direction X.

[0048] Please refer to Figure 5 and Figure 6The water-cooled chiller module 20a includes a first base 21 and a water-cooled chiller 22. The water-cooled chiller 22 is disposed on the first base 21. The first base 21 provides positioning support for the water-cooled chiller 22.

[0049] Please refer to Figure 5 and Figure 6 The water cooling module 20b includes a second base 23, a first pipe frame 24, a cooling water pump 26, a chilled water pump 27, a cooling water inlet pipe 28, a cooling water outlet pipe 29, a chilled water inlet pipe 30, and a chilled water outlet pipe 31. The first pipe frame 24, the cooling water pump 26, the chilled water pump 27, the cooling water inlet pipe 28, the cooling water outlet pipe 29, the chilled water inlet pipe 30, and the chilled water outlet pipe 31 are all disposed on the second base 23.

[0050] The second base 23 is configured to be detachably connected to the first base 21 , for example, the second base 23 is threadedly connected to the first base 21 , snap-fitted, etc.

[0051] The material of the second base 23 may be the same as that of the first base 21 . For example, the second base 23 and the first base 21 may both be steel structure bases.

[0052] The first pipe frame 24 may be a rectangular parallelepiped, and the first pipe frame 24 may be arranged around the second base 23. For example, the first pipe frame 24 is welded to the second base 23, so that the assembled structure of the first pipe frame 24 and the second base 23 has a higher strength.

[0053] The water cooling module 20b is detachably connected to the water-cooled chiller module 20a. Specifically, one end of the cooling water inlet pipe 28 is configured to be detachably connected to the cooling water inlet of the water-cooled chiller 22, one end of the cooling water outlet pipe 29 is configured to be detachably connected to the cooling water outlet of the water-cooled chiller 22, one end of the chilled water inlet pipe 30 is configured to be detachably connected to the chilled water inlet of the water-cooled chiller 22, and one end of the cooling water outlet pipe 29 is configured to be detachably connected to the chilled water outlet of the water-cooled chiller 22.

[0054] The water-cooled chiller module 20a and the water-cooled module 20b of the present application can be prefabricated and debugged in the factory, and the cooling water inlet pipe 28, the cooling water outlet pipe 29, the chilled water inlet pipe 30 and the chilled water outlet pipe 31 are integrated into the second base 23 through the first pipe frame 24. After the debugging is completed, the cooling water inlet pipe 28, the cooling water outlet pipe 29, the chilled water inlet pipe 30 and the chilled water outlet pipe 31 are disconnected from the water-cooled chiller 22 for easy transportation; during on-site construction, the cooling water inlet pipe 28, the cooling water outlet pipe 29, the chilled water inlet pipe 30 and the chilled water outlet pipe 31 are respectively connected to the water-cooled chiller 22 to reduce the workload of on-site construction.

[0055] Please refer to Figure 3 and Figure 4 The pipeline module 10 includes a second pipeline frame 11, a first pipeline 12, a second pipeline 13, a third pipeline 14 and a fourth pipeline 15, and the first pipeline 12, the second pipeline 13, the third pipeline 14 and the fourth pipeline 15 are all arranged on the second pipeline frame 11. The second pipeline frame 11 provides positioning support for the first pipeline 12, the second pipeline 13, the third pipeline 14 and the fourth pipeline 15, which is convenient for managing and transporting the first pipeline 12, the second pipeline 13, the third pipeline 14 and the fourth pipeline 15. The setting of the second pipeline frame 11 does not require additional pipeline hangers during on-site construction, which reduces on-site construction volume and improves construction efficiency.

[0056] The second pipe frame 11 is configured to be erected on the top of the first pipe frame 24 , which can reduce the space occupied by the pipe module 10 .

[0057] The second pipe frame 11 is configured to be detachably connected to the first pipe frame 24 , for example, the second pipe frame 11 is threadedly connected to the first pipe frame 24 , snap-fitted to facilitate quick assembly and disassembly of the second pipe frame 11 and the first pipe frame 24 .

[0058] The first pipe 12 is configured to be detachably connected to the other end of the cooling water inlet pipe 28 of the plurality of water cooling units 20, the second pipe 13 is configured to be detachably connected to the other end of the cooling water outlet pipe 29 of the plurality of water cooling units 20, the third pipe 14 is configured to be detachably connected to the other end of the chilled water inlet pipe 30 of the plurality of water cooling units 20, and the fourth pipe 15 is configured to be detachably connected to the other end of the chilled water outlet pipe 31 of the plurality of water cooling units 20. The first pipe 12 and the second pipe 13 can be used for the transportation of cooling water, and the third pipe 14 and the fourth pipe 15 can be used for the transportation of chilled water. The first pipe 12 is also used to be connected to the water outlet of the cooling tower, the second pipe 13 is also used to be connected to the water inlet of the cooling tower, the third pipe 14 is also used to be connected to the water outlet of the air conditioning system, and the fourth pipe 15 is also used to be connected to the water inlet of the air conditioning system.

[0059] The pipeline module 10 can be used as a prefabricated module, assembled in the factory, and debugged with multiple water cooling units 20. After debugging, the pipeline module 10 can be transported as a whole or split into several pipeline units. Only simple connections are required on site, reducing the workload of on-site welding of pipelines.

[0060] According to the data center cold source system 100 of the embodiment of the present application, the pipe module 10, the water-cooled chiller module 20a, and the water cooling module 20b are all prefabricated modules. On the one hand, they are easy to transport. On the other hand, the various components can be pre-assembled and integrated in the factory, and the debugging work can be completed. Only a small amount of connection work is required on site, which greatly reduces the on-site workload. At the same time, the pre-integration of the pipe module 10 can reduce the on-site pipeline layout, lifting, welding and other work, and can quickly complete the assembly of the pipe module 10 and multiple water cooling units 20.

[0061] Please refer to Figure 7 According to some embodiments of the present application, a first mounting hole 241 is provided at the top of the first pipe frame 24, and the first mounting hole 241 is a long hole extending along the second direction Y. The second pipe frame 11 is provided with a second mounting hole 111 corresponding to the first mounting hole 241, and the second direction Y, the first direction X and the height direction Z are perpendicular to each other; the data center cold source system 100 also includes a locking adjustment component 32, and the locking adjustment component 32 is provided at the first mounting hole 241 and the second mounting hole 111 to connect the second pipe frame 11 with the first pipe frame 24.

[0062] The locking and adjusting assembly 32 includes a locking bolt and a nut. The locking bolt is used to pass through the first mounting hole 241 and the second mounting hole 111 , and the nut is used to cooperate with the locking bolt to lock the second pipe frame 11 to the first pipe frame 24 .

[0063] In the above scheme, the connection between the second pipe frame 11 and the first pipe frame 24 can be achieved through the cooperation of the locking adjustment component 32 with the first mounting hole 241 and the second mounting hole 111; since the first mounting hole 241 is a long hole, the second pipe frame 11 can move along the second direction Y relative to the first pipe frame 24 to adjust the connection position between the second pipe frame 11 and the first pipe frame 24, which can adapt to processing and assembly errors, so that the assembly of the pipe module 10 and the water cooling module 20b is flexible.

[0064] Please refer to Figure 4 , and further refer to Figure 8 According to some embodiments of the present application, the second pipe frame 11 includes a plurality of frame units 112 , and the plurality of frame units 112 are arranged in sequence along the first direction X, and two adjacent frame units 112 are detachably connected via a module connecting plate 113 .

[0065] The frame unit 112 is a prefabricated module, and a plurality of frame units 112 can be connected via a module connecting plate 113, which is convenient for batch processing and manufacturing on the one hand, and convenient for transportation on the other hand.

[0066] The frame unit 112 may be provided with a third mounting hole at the end in the first direction X, and the module connecting plate 113 may be provided with a fourth mounting hole corresponding to the third mounting hole at the end in the first direction X. The module connecting plate 113 may be connected to the frame unit 112 by bolts passing through the third mounting hole and the fourth mounting hole, so as to facilitate assembly and disassembly.

[0067] The frame unit 112 may be formed by welding a plurality of steel sections to have a high strength. The frame unit 112 may be in the shape of a rectangular parallelepiped to facilitate assembly with the first pipe frame 24 .

[0068] In the above scheme, multiple frame units 112 are arranged in sequence along the first direction X, and the frame units 112 can be produced in a modular manner to facilitate processing and transportation; during on-site assembly, the number and assembly positions of the frame units 112 can be rotated according to actual conditions to improve construction flexibility.

[0069] Please refer to Figures 1 to 4 According to some embodiments of the present application, the number of the second pipe frames 11 is two, the two second pipe frames 11 are arranged at intervals along the second direction Y, the first pipe 12 and the third pipe 14 are arranged in one of the two second pipe frames 11, the second pipe 13 and the fourth pipe 15 are arranged in the other of the two second pipe frames 11, and the second direction Y, the first direction X and the height direction Z are perpendicular to each other.

[0070] There are two second pipe frames 11, and the two second pipe frames 11 are spaced apart in the second direction Y. The second pipe frames 11 can be arranged according to the positions of the cooling water inlet pipe 28, the cooling water outlet pipe 29, the chilled water inlet pipe 30 and the chilled water outlet pipe 31, and the layout is flexible.

[0071] In the above scheme, the two second pipe frames 11 are arranged at intervals along the second direction Y, and the first pipe 12 and the third pipe 14, the second pipe 13 and the fourth pipe 15 are respectively arranged in the two second pipe frames 11, which can facilitate the assembly of the pipes and the adjustment of the positions of the pipes.

[0072] In some other embodiments, any two of the first pipeline 12, the second pipeline 13, the third pipeline 14 and the fourth pipeline 15 can be set in one second pipeline frame 11, and the other two of the first pipeline 12, the second pipeline 13, the third pipeline 14 and the fourth pipeline 15 can be set in another second pipeline frame 11.

[0073] Please refer to Figure 4 According to some embodiments of the present application, the first pipeline 12 includes a plurality of first pipeline segments 121, the plurality of first pipeline segments 121 are arranged in series, and each first pipeline segment 121 is connected to a cooling water inlet pipeline 28 through a first valve (not shown in the figure).

[0074] In some embodiments, both ends of each first pipe segment 121 may be provided with a first flange 122, and two adjacent first pipe segments 121 are directly connected, for example, the two first pipe segments 121 are connected through the first flange 122; or, two adjacent first pipe segments 121 are connected through a transition connecting pipe, the transition connecting pipe is also provided with a first flange 122, and the first pipe segment 121 is connected to the transition connecting pipe through the first flange 122.

[0075] The first pipeline section 121 is connected to a cooling water inlet pipeline 28 via a first valve, so as to facilitate the disassembly and replacement of the first pipeline section 121 and the cooling water inlet pipeline 28 .

[0076] According to some embodiments of the present application, the second pipeline 13 includes multiple second pipeline segments 131, and the multiple second pipeline segments 131 are arranged in series. Each second pipeline segment 131 is connected to a cooling water outlet pipeline 29 through a second valve (not shown in the figure).

[0077] In some embodiments, both ends of each second pipe segment 131 may be provided with a second flange 132, and two adjacent second pipe segments 131 are directly connected, for example, the two second pipe segments 131 are connected through the second flange 132; or, two adjacent second pipe segments 131 are connected through a transition connecting pipe, the transition connecting pipe is also provided with a second flange 132, and the second pipe segment 131 is connected to the transition connecting pipe through the second flange 132.

[0078] The second pipeline section 131 is connected to a cooling water outlet pipeline 29 via a second valve, so as to facilitate the disassembly and replacement of the second pipeline section 131 and the cooling water outlet pipeline 29 .

[0079] According to some embodiments of the present application, the third pipeline 14 includes multiple third pipeline segments 141, which are arranged in series, and each third pipeline segment 141 is connected to a chilled water inlet pipeline 30 through a third valve (not shown in the figure).

[0080] In some embodiments, both ends of each third pipe segment 141 may be provided with a third flange 142, and two adjacent third pipe segments 141 are directly connected, for example, the two third pipe segments 141 are connected through the third flange 142; or, two adjacent third pipe segments 141 are connected through a transition connecting pipe, the transition connecting pipe is also provided with a third flange 142, and the third pipe segment 141 is connected to the transition connecting pipe through the third flange 142.

[0081] The third pipe section 141 is connected to a chilled water inlet pipe 30 via a third valve, so as to facilitate the disassembly and replacement of the third pipe section 141 and the chilled water inlet pipe 30 .

[0082] According to some embodiments of the present application, the fourth pipeline 15 includes multiple fourth pipeline segments 151, which are arranged in series, and each fourth pipeline segment 151 is connected to a chilled water outlet pipeline 31 through a fourth valve (not shown in the figure).

[0083] In some embodiments, both ends of each fourth pipe segment 151 may be provided with a fourth flange 152, and two adjacent fourth pipe segments 151 are directly connected, for example, the two fourth pipe segments 151 are connected through the fourth flange 152; or, two adjacent fourth pipe segments 151 are connected through a transition connecting pipe, the transition connecting pipe is also provided with a fourth flange 152, and the fourth pipe segment 151 is connected to the transition connecting pipe through the fourth flange 152.

[0084] The fourth pipe section 151 is connected to a chilled water outlet pipe 31 via a fourth valve, so as to facilitate the disassembly and replacement of the fourth pipe section 151 and the chilled water outlet pipe 31 .

[0085] It should be pointed out that each pipeline (collectively referred to as the first pipeline 12, the second pipeline 13, the third pipeline 14 and the fourth pipeline 15) is also provided with instruments, valves and other accessories.

[0086] In the above scheme, the first pipeline segment 121 is provided to facilitate modular production, and each first pipeline segment 121 is connected to a cooling water inlet pipeline 28 through a first valve, so as to facilitate the connection or disconnection of the first pipeline 12 with the cooling water inlet pipeline 28. The second pipeline segment 131 is provided to facilitate modular production, and each second pipeline segment 131 is connected to a cooling water outlet pipeline 29 through a second valve, so as to facilitate the connection or disconnection of the second pipeline 13 with the cooling water outlet pipeline 29. The third pipeline segment 141 is provided to facilitate modular production, and each third pipeline segment 141 is connected to a chilled water inlet pipeline 30 through a third valve, so as to facilitate the connection or disconnection of the third pipeline 14 with the chilled water inlet pipeline 30. The fourth pipeline segment 151 is provided to facilitate modular production, and each fourth pipeline segment 151 is connected to a chilled water outlet pipeline 31 through a fourth valve, so as to facilitate the connection or disconnection of the fourth pipeline 15 with the chilled water outlet pipeline 31.

[0087] According to some embodiments of the present application, the first pipeline frame 24 and the second pipeline frame 11 are steel structure frames.

[0088] In the above solution, the first pipeline frame 24 and the second pipeline frame 11 are steel structure frames, which have high strength and high structural stability.

[0089] Please refer to Figure 5 and Figure 6 According to some embodiments of the present application, the auxiliary equipment 25, the cooling water pump 26 and the chilled water pump 27 are arranged in sequence along the second direction Y, and the chilled water pump 27 is close to the water-cooled chiller 22 relative to the cooling water pump 26, and the second direction Y is perpendicular to the first direction X.

[0090] In the above scheme, the second direction Y can be the length direction of the water cooling unit 20, and the auxiliary equipment 25, the cooling water pump 26 and the chilled water pump 27 are arranged in sequence along the second direction Y, so as to reasonably utilize the assembly space in the second direction Y and reduce the risk of interference between the components.

[0091] According to some embodiments of the present application, a cooling water pump 26 is provided in the cooling water inlet pipe 28, and the cooling water pump 26 is used to deliver the cooling water in the cooling water inlet pipe 28 to the water-cooled chiller 22. A chilled water pump 27 is provided in the chilled water inlet pipe 30, and the chilled water pump 27 is used to deliver the chilled water in the chilled water inlet pipe 30 to the water-cooled chiller 22.

[0092] In some embodiments, the cooling water pump 26 and the chilled water pump 27 are both connected to the second base 23 through a water pump shock absorber. The water pump shock absorber absorbs the vibration generated when the cooling water pump 26 and the chilled water pump 27 are working, so as to improve the operating reliability of the equipment.

[0093] According to some embodiments of the present application, the water cooling module 20b also includes a pipe support frame 34, which is connected to the second base. The pipe support frame 34 is used to support the cooling water inlet pipe 28, the cooling water outlet pipe 29, the chilled water inlet pipe 30 and the chilled water outlet pipe 31, so as to facilitate the positioning and support of the cooling water inlet pipe 28, the cooling water outlet pipe 29, the chilled water inlet pipe 30 and the chilled water outlet pipe 31.

[0094] Please refer to Figure 5 good Figure 6 According to some embodiments of the present application, the first base 21 is provided with a first hanging assembly (not shown in the figure), and the second base 23 is provided with a second hanging assembly 33.

[0095] The first hanging assembly may include a plurality of first hanging ears, and the plurality of first hanging ears are distributed on both sides of the first base 21 in the width direction.

[0096] The second hanging assembly 33 may include a plurality of second hanging ears 331 , and the plurality of second hanging ears 331 are distributed on both sides of the second base 23 in the width direction.

[0097] In the above solution, the provision of the first hoisting assembly and the second hoisting assembly 33 facilitates the hoisting and transportation of the water-cooled chiller module 20a and the water-cooled module 20b.

[0098] Please refer to Figure 5 and Figure 6 According to some embodiments of the present application, the cold water module 20b also includes auxiliary equipment 25. The auxiliary equipment 25 can be one or more combinations of a constant pressure water replenishment device, an automatic dosing device, and a sand filtration device. It can meet different usage requirements and has a high degree of integration.

[0099] The auxiliary equipment 25 may be arranged in the cooling water circulation pipeline and / or the chilled water circulation pipeline.

[0100] Among them, the constant pressure water replenishment device is used in heating and air-conditioning systems as a pressure-stabilizing expansion water replenishment device to play a pressure-stabilizing role.

[0101] The automatic dosing device may include a solution tank, a mixer, a metering pump, a Y-type filter, a safety valve, a back pressure valve, a check valve, a pulse damper, a water level gauge, a pressure gauge, a control cabinet, a mounting platform, etc. These components are integrated and installed on a base.

[0102] The sand filter device is used to filter suspended matter and impurities in the water, mainly targeting those fine suspended matter.

[0103] According to some embodiments of the present application, the embodiments of the present application further provide a data center, which includes a data center cold source system 100 provided according to any of the above embodiments.

[0104] Although the present application has been described with reference to preferred embodiments, various modifications may be made thereto and parts thereof may be replaced with equivalents without departing from the scope of the present application. In particular, the various technical features mentioned in the various embodiments may be combined in any manner as long as there are no structural conflicts. The present application is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. A data center cooling system, characterized in that: It comprises a pipeline module and a plurality of water cooling units, wherein the pipeline module cooperates with the plurality of water cooling units; Each water-cooling unit includes a water-cooled chiller module and a water-cooled module, wherein the water-cooled chiller module includes a first base and a water-cooled chiller, and the water-cooled chiller is arranged on the first base; The water cooling module comprises a second base, a first pipe frame, a cooling water pump, a chilled water pump, a cooling water inlet pipe, a cooling water outlet pipe, a chilled water inlet pipe and a chilled water outlet pipe, the first pipe frame, the cooling water pump, the chilled water pump, the cooling water inlet pipe, the cooling water outlet pipe, the chilled water inlet pipe and the chilled water outlet pipe are all arranged on the second base, and the water cooling module is detachably connected to the water-cooled chiller module; The pipeline module includes a second pipeline frame, a first pipeline, a second pipeline, a third pipeline and a fourth pipeline. The first pipeline, the second pipeline, the third pipeline and the fourth pipeline are all arranged on the second pipeline frame. The second pipeline frame is configured to be erected on the top of the first pipeline frame. The first pipeline is configured to be connected to the cooling water inlet pipeline of the multiple water-cooling units, the second pipeline is configured to be connected to the cooling water outlet pipeline of the multiple water-cooling units, the third pipeline is configured to be connected to the chilled water inlet pipeline of the multiple water-cooling units, and the fourth pipeline is configured to be connected to the chilled water outlet pipeline of the multiple water-cooling units.

2. The data center cooling system according to claim 1, characterized in that: A plurality of the water cooling units are arranged at intervals along the first direction; A first mounting hole is provided on the top of the first pipe frame, the first mounting hole is a long hole extending along a second direction, and a second mounting hole corresponding to the first mounting hole is provided on the second pipe frame, and the second direction, the first direction and the height direction are perpendicular to each other; The data center cold source system further includes a locking and adjusting component, and the locking and adjusting component is arranged at the first mounting hole and the second mounting hole to connect the second pipe frame with the first pipe frame.

3. The data center cooling system according to claim 1, characterized in that: The water cooling units are arranged at intervals along the first direction; The second pipeline frame includes a plurality of frame units, the plurality of frame units are arranged in sequence along the first direction, and two adjacent frame units are detachably connected via a module connecting plate.

4. The data center cooling system according to claim 1, characterized in that: The water cooling units are arranged at intervals along the first direction; The number of the second pipe frames is two, and the two second pipe frames are arranged at intervals along the second direction. The first pipe and the third pipe are arranged in one of the two second pipe frames, and the second pipe and the fourth pipe are arranged in the other of the two second pipe frames. The second direction, the first direction and the height direction are perpendicular to each other.

5. The data center cooling system according to claim 1, characterized in that: The first pipeline includes a plurality of first pipeline segments, the plurality of first pipeline segments are arranged in series, and each of the first pipeline segments is connected to one of the cooling water inlet pipelines through a first valve; The second pipeline comprises a plurality of second pipeline segments, the plurality of second pipeline segments are arranged in series, and each of the second pipeline segments is connected to one of the cooling water outlet pipelines via a second valve; The third pipeline includes a plurality of third pipeline segments, the plurality of third pipeline segments are arranged in series, and each of the third pipeline segments is connected to one of the chilled water inlet pipelines through a third valve; The fourth pipeline includes a plurality of fourth pipeline segments, the plurality of fourth pipeline segments are arranged in series, and each of the fourth pipeline segments is connected to a chilled water outlet pipeline via a fourth valve.

6. The data center cooling system according to claim 1, characterized in that: The first pipeline frame and the second pipeline frame are steel structure frames.

7. The data center cooling system according to claim 1, characterized in that: A plurality of the water cooling units are arranged at intervals along the first direction; The cooling water pump and the freezing water pump are arranged in sequence along a second direction, the freezing water pump is closer to the water-cooled chiller relative to the cooling water pump, and the second direction is perpendicular to the first direction.

8. The data center cooling system according to claim 1, characterized in that: The second base is detachably connected to the first base; The cooling water inlet pipe is configured to be detachably connected to the cooling water inlet of the water-cooled chiller, the cooling water outlet pipe is configured to be detachably connected to the cooling water outlet of the water-cooled chiller, the chilled water inlet pipe is configured to be detachably connected to the chilled water inlet of the water-cooled chiller, and the chilled water outlet pipe is configured to be detachably connected to the chilled water outlet of the water-cooled chiller.

9. The data center cooling system according to claim 1, characterized in that: The first base and the second base are both steel structure bases.

10. A data center, characterized in that: It comprises a data center cold source system as described in any one of claims 1-9.