A containerized primary side water treatment system for an immersion data center
By designing a containerized water treatment system, the control cabinet and water treatment unit are integrated into a standard container in a specific layout, solving the problems of integration and transportation inconvenience of immersion data center water treatment systems, and achieving a compact system layout and simplified installation process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG YUNCHUANG ZHIDA TECHNOLOGY CO LTD
- Filing Date
- 2025-07-21
- Publication Date
- 2026-06-19
AI Technical Summary
In existing technologies, the water treatment system for immersion data centers lacks a highly integrated solution, resulting in a large amount of on-site installation work and inconvenient transportation.
Design a containerized primary water treatment system that integrates a control cabinet, a bypass water treatment device, a softening water device, and a constant pressure water supply device. These components are connected through specific pipelines to form a loop, achieving a high degree of system integration and a compact layout.
The system achieves a high degree of integration of complex water treatment systems within a standard shipping container, reducing on-site installation work and improving transportation convenience.
Smart Images

Figure CN224377818U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of container technology, and in particular to a containerized primary water treatment system for immersion data centers. Background Technology
[0002] Unlike traditional air cooling, immersion liquid cooling involves the coolant directly contacting server components, thus requiring extremely high water quality. Current technologies, such as simple filtration methods, lack a systematic approach, while large-scale processing systems are overly complex and cannot achieve high integration. On-site installation is labor-intensive, and transportation is extremely inconvenient. Given the current lack of standardized solutions, there is an urgent need for a highly integrated, compact, containerized processing system to address these issues. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide a containerized primary water treatment system for immersion data centers, which aims to solve the technical problems of existing technologies that cannot achieve high integration, have a large workload for on-site installation, and are inconvenient to transport.
[0004] The technical solution of this utility model is: a containerized primary water treatment system for immersion data centers, comprising a container body. A first control cabinet, a bypass water treatment device, a softening water device, and a constant pressure water supply device are sequentially arranged along the length of one side of the container body. A second control cabinet is arranged opposite to the first control cabinet on the other side of the container body. A first infusion pipeline assembly and a second infusion pipeline assembly are arranged side-by-side along the width of the container body on one side of the second control cabinet. The first infusion pipeline assembly, the bypass water treatment device, the softening water device, and the constant pressure water supply device are sequentially connected by pipelines. The second infusion pipeline assembly and the constant pressure water supply device are connected by pipelines to form a loop.
[0005] Furthermore, in this utility model, the first infusion pipeline assembly includes a first inlet main pipeline, a first liquid pump, a first metal bellows, a first lift check valve, and a first outlet main pipeline connected in sequence, with the ends of the first inlet main pipeline and the first outlet main pipeline located outside the container body.
[0006] Furthermore, in this utility model, the first liquid inlet main pipe is connected to the bypass water inlet of the bypass water treatment device through a bypass water inlet pipe, and the bypass water outlet of the bypass water treatment device is connected to the softened water inlet pipe B through softened water inlet pipe A.
[0007] Furthermore, in this utility model, the softened water inlet pipe B is connected to the softened water inlet of the softened water device, and the softened water outlet of the softened water device is connected to the constant pressure water inlet A of the constant pressure water supply device through the constant pressure water supply inlet pipe.
[0008] Furthermore, in this utility model, the second infusion pipeline assembly includes a second inlet main pipeline, a second liquid pump, a second metal bellows, a second lift check valve, and a second outlet main pipeline connected in sequence, with the ends of the second inlet main pipeline and the second outlet main pipeline located outside the container body.
[0009] Furthermore, in this utility model, the second liquid inlet main pipe is connected to the constant pressure water supply inlet B of the constant pressure water supply device through a pressure relief pipe, and the constant pressure water supply outlet of the constant pressure water supply device is connected to the second liquid inlet main pipe through a pressurization pipe.
[0010] Furthermore, the bottom of the bypass water treatment device, softening water device, constant pressure water supply device, first liquid pump, and second liquid pump described in this utility model are all provided with shock-absorbing bases that are connected to the bottom plate of the container body.
[0011] Furthermore, the container body of this utility model is provided with a ceiling-mounted cable tray at the top, the first liquid outlet main pipe and the second liquid outlet main pipe are connected to the ceiling-mounted cable tray through a pipe ceiling bracket, and the first liquid inlet main pipe and the second liquid inlet main pipe are installed on the bottom plate of the container body through a pipe bracket.
[0012] Furthermore, in this utility model, the container body is provided with an entrance / exit at one end near the first control cabinet and the second control cabinet, and a ventilation opening is provided on one side of the entrance / exit near the first control cabinet; an air conditioner outdoor unit is provided on the top of the other end of the container body away from the entrance / exit, and an air conditioner indoor unit is provided on the top inside the container body below the air conditioner outdoor unit.
[0013] Compared with the prior art, this utility model has the following advantages: within the limited space of a standard container, this utility model integrates two control cabinets, a bypass water treatment device, a softening water device, a constant pressure water supply device, two liquid pumps and their complex pipelines in a specific optimized spatial layout structure, maximizing the use of standard container space, achieving a high degree of integration of complex systems, greatly reducing on-site installation workload, with a compact overall layout and convenient transportation. Attached Figure Description
[0014] Figure 1 This is an external perspective view of the present invention;
[0015] Figure 2 This is a top view of the internal structure of this utility model;
[0016] Figure 3 This is a perspective view of the internal structure of this utility model;
[0017] Figure 4This is a schematic diagram of the connection structure between the first infusion pipeline assembly, the bypass water treatment device, the softened water device, and the constant pressure water supply device in this utility model.
[0018] Figure 5 This is a schematic diagram of the connection structure between the second infusion pipeline assembly and the constant pressure water replenishment device in this utility model.
[0019] in:
[0020] 1. Container body;
[0021] 2. First control cabinet;
[0022] 3. Bypass water treatment device; 3a. Bypass water inlet; 3b. Bypass water outlet;
[0023] 4. Water softening device; 4a. Softened water inlet; 4b. Softened water outlet;
[0024] 5. Constant pressure water supply device; 5a. Constant pressure water supply inlet A; 5b. Constant pressure water supply inlet B; 5c. Constant pressure water supply outlet;
[0025] 6. Second control cabinet;
[0026] 7. First infusion pipeline assembly; 701. First inlet main pipeline; 702. First liquid pump; 703. First metal bellows; 704. First lift check valve; 705. First outlet main pipeline;
[0027] 8. Second infusion pipeline assembly; 801. Second infusion main pipeline; 802. Second liquid pump; 803. Second metal bellows; 804. Second lift check valve; 805. Second outfusion main pipeline;
[0028] 9. Bypass water inlet pipe; 10. Softened water inlet pipe A; 11. Softened water inlet pipe B; 12. Constant pressure water supply inlet pipe; 13. Pressure relief pipe; 14. Pressurization pipe; 15. Vibration damping base; 16. Ceiling cable tray; 17. Pipe ceiling support; 18. Pipe support; 19. Door / entrance; 20. Ventilation opening; 21. Air conditioner outdoor unit; 22. Air conditioner indoor unit. Detailed Implementation
[0029] The specific embodiments of this utility model are described in detail below with reference to the accompanying drawings.
[0030] Example:
[0031] The accompanying drawings illustrate a specific embodiment of a containerized primary water treatment system for immersion data centers according to this invention. Figure 1 , Figure 2It mainly includes a container body 1. Inside the container body 1, along its length, a first control cabinet 2, a bypass water treatment device 3, a softening water device 4, and a constant pressure water supply device 5 are arranged sequentially on one side. Inside the container body 1, a second control cabinet 6 is arranged opposite to the first control cabinet 2. On one side of the second control cabinet 6, a first infusion pipeline assembly 7 and a second infusion pipeline assembly 8 are arranged side by side along the width of the container body 1.
[0032] The first infusion pipeline assembly 7, the bypass water treatment device 3, the softened water device 4, and the constant pressure water supply device 5 are connected sequentially via pipelines. Specifically, in conjunction with... Figure 3 The first infusion pipeline assembly 7 includes a first infusion main pipeline 701, a first liquid pump 702, a first metal bellows 703, a first lift check valve 704, and a first outfusion main pipeline 705 connected in sequence. The ends of the first infusion main pipeline 701 and the first outfusion main pipeline 705 are located outside the container body 1.
[0033] Combination Figure 4 The first main inlet pipe 701 is connected to the bypass water inlet 3a of the bypass water treatment device 3 via the bypass water inlet pipe 9. The bypass water outlet 3b of the bypass water treatment device 3 is connected to the softened water inlet pipe B11 via the softened water inlet pipe A10. The softened water inlet pipe B11 is connected to the softened water inlet 4a of the softened water device 4. The softened water outlet 4b of the softened water device 4 is connected to the constant pressure water inlet A5a of the constant pressure water supply device 5 via the constant pressure water supply inlet pipe 12.
[0034] The first infusion pipeline assembly 7 can enter the bypass water treatment device 3 through the first infusion main pipeline 701 and the bypass water inlet pipe 9, and then enter the softening water device 4 through the softened water inlet pipe A10 and the softened water inlet pipe B11, and finally enter the constant pressure water supply device 5 through the constant pressure water supply inlet pipe 12.
[0035] The second infusion pipeline assembly 8 and the constant pressure water supply device 5 are connected by a pipeline to form a loop. Specifically, in conjunction with... Figure 3 The second infusion pipeline assembly 8 includes a second infusion main pipeline 801, a second liquid pump 802, a second metal bellows 803, a second lift check valve 804, and a second outfusion main pipeline 805 connected in sequence. The ends of the second infusion main pipeline 801 and the second outfusion main pipeline 805 are both located outside the container body 1.
[0036] Combination Figure 5 The second liquid inlet main pipe 801 is connected to the constant pressure water inlet B5b of the constant pressure water supply device 5 through the pressure relief pipe 13, and the constant pressure water supply outlet 5c of the constant pressure water supply device 5 is connected to the second liquid inlet main pipe 801 through the pressurization pipe 14.
[0037] The water in the second infusion pipeline assembly 8 can enter the constant pressure water supply device 5 through the second infusion main pipeline 801 and the pressure relief pipeline 13. After being pressurized by the constant pressure water supply device 5, it is reinjected into the second infusion main pipeline 801 through the pressurization pipeline 14.
[0038] In this embodiment, as Figure 3 As shown, the bottom of the bypass water treatment device 3, the softening water device 4, the constant pressure water supply device 5, the first liquid pump 702, and the second liquid pump 802 are all equipped with shock-absorbing bases 15 that are connected to the bottom plate of the container body 1, which play a buffering and protection role.
[0039] like Figure 3 As shown, a ceiling-mounted cable tray 16 is provided on the top inside the container body 1. The first liquid outlet main pipe 705 and the second liquid outlet main pipe 805 are connected to the ceiling-mounted cable tray 16 through the pipe ceiling bracket 17. The first liquid inlet main pipe 701 and the second liquid inlet main pipe 801 are respectively installed on the bottom plate of the container body 1 through multiple pipe brackets 18 arranged along the pipes, thereby achieving fixed installation.
[0040] Combination Figure 1 , Figure 2 The container body 1 has an entrance / exit 19 at one end near the first control cabinet 2 and the second control cabinet 6 for easy access for personnel to inspect and maintain. A ventilation opening 20 is located on one side of the entrance / exit 19 near the first control cabinet 2 for air circulation. An air conditioner outdoor unit 21 is located on the top of the other end of the container body 1 away from the entrance / exit 19, and an air conditioner indoor unit 22 is located below the outdoor unit 21 on the top of the interior of the container body 1.
[0041] Of course, the above embodiments are only for illustrating the technical concept and features of this utility model, and their purpose is to enable those skilled in the art to understand the content of this utility model and implement it accordingly. They should not be used to limit the protection scope of this utility model. All modifications made in accordance with the spirit and essence of the main technical solution of this utility model should be covered within the protection scope of this utility model.
Claims
1. A containerized primary water treatment system for immersion data centers, characterized in that: The container includes a container body (1). Inside the container body (1), along its length, a first control cabinet (2), a bypass water treatment device (3), a softening water device (4), and a constant pressure water supply device (5) are arranged sequentially on one side. Inside the container body (1), a second control cabinet (6) is arranged opposite to the first control cabinet (2). On one side of the second control cabinet (6), a first infusion pipeline assembly (7) and a second infusion pipeline assembly (8) are arranged side by side along the width of the container body (1). The first infusion pipeline assembly (7), the bypass water treatment device (3), the softening water device (4), and the constant pressure water supply device (5) are connected sequentially by pipelines. The second infusion pipeline assembly (8) and the constant pressure water supply device (5) are connected by pipelines to form a loop.
2. The containerized primary water treatment system for immersion data centers according to claim 1, characterized in that: The first infusion pipeline assembly (7) includes a first inlet main pipeline (701), a first liquid pump (702), a first metal bellows (703), a first lift check valve (704), and a first outlet main pipeline (705) connected in sequence. The ends of the first inlet main pipeline (701) and the first outlet main pipeline (705) are located outside the container body (1).
3. A containerized primary water treatment system for immersion data centers according to claim 2, characterized in that: The first main inlet pipe (701) is connected to the bypass water inlet (3a) of the bypass water treatment device (3) via the bypass water inlet pipe (9), and the bypass water outlet (3b) of the bypass water treatment device (3) is connected to the softened water inlet pipe B (11) via the softened water inlet pipe A (10).
4. A containerized primary water treatment system for immersion data centers according to claim 3, characterized in that: The softened water inlet pipe B (11) is connected to the softened water inlet (4a) of the softened water device (4), and the softened water outlet (4b) of the softened water device (4) is connected to the constant pressure water inlet A (5a) of the constant pressure water supply device (5) through the constant pressure water supply inlet pipe (12).
5. A containerized primary water treatment system for immersion data centers according to claim 2, characterized in that: The second infusion pipeline assembly (8) includes a second inlet main pipeline (801), a second liquid pump (802), a second metal bellows (803), a second lift check valve (804), and a second outlet main pipeline (805) connected in sequence. The ends of the second inlet main pipeline (801) and the second outlet main pipeline (805) are located outside the container body (1).
6. A containerized primary water treatment system for immersion data centers according to claim 5, characterized in that: The second liquid inlet main pipe (801) is connected to the constant pressure water inlet B (5b) of the constant pressure water supply device (5) through the pressure relief pipe (13), and the constant pressure water supply outlet (5c) of the constant pressure water supply device (5) is connected to the second liquid inlet main pipe (801) through the pressurization pipe (14).
7. A containerized primary water treatment system for immersion data centers according to claim 5, characterized in that: The bottom of the bypass water treatment device (3), the softening water device (4), the constant pressure water supply device (5), the first liquid pump (702), and the second liquid pump (802) are all provided with shock-absorbing bases (15) that are connected to the bottom plate of the container body (1).
8. A containerized primary water treatment system for immersion data centers according to claim 5, characterized in that: The top of the container body (1) is provided with a ceiling cable tray (16). The first liquid outlet main pipe (705) and the second liquid outlet main pipe (805) are connected to the ceiling cable tray (16) through a pipe ceiling bracket (17). The first liquid inlet main pipe (701) and the second liquid inlet main pipe (801) are installed on the bottom plate of the container body (1) through a pipe bracket (18).
9. A containerized primary water treatment system for an immersion data center according to claim 5, characterized in that: The container body (1) has an entrance (19) at one end near the first control cabinet (2) and the second control cabinet (6), and a ventilation opening (20) is provided on one side of the entrance (19) near the first control cabinet (2); an air conditioner outdoor unit (21) is provided on the top of the other end of the container body (1) away from the entrance (19), and an air conditioner indoor unit (22) is provided on the top inside the container body (1) below the air conditioner outdoor unit (21).