Integrated modularized full-automatic water treatment device for liquid cooling system

By integrating multiple water treatment modules into a single modular structure and equipping it with an automated monitoring and control unit, the complex structure and maintenance challenges of traditional liquid-cooled water treatment devices are solved, achieving a highly integrated and easy-to-maintain stable water supply.

CN223737869UActive Publication Date: 2025-12-30SHANGHAI EMPEROR OF CLEANING HI TECH
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Patent Information

Application Number
CN202423321964.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-30
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Traditional liquid cooling water treatment devices are complex in structure, occupy a large area, and are difficult to operate and maintain, making it difficult to meet the needs of modern production.

Method used

Design an integrated modular fully automatic water treatment device that integrates a two-stage desalination module, a liquid replenishment module, a corrosion control module, a pH adjustment module, and a leakage monitoring module into an integrated modular structure. It is also equipped with automatic ventilation, fire protection, smoke detection and temperature control units to achieve a high degree of integration and automation.

Benefits of technology

This makes the water treatment device easy to maintain, provides a stable water source, reduces the difficulty of operation, improves the degree of automation, and ensures the stable operation of the liquid cooling system.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to an integrated modularized full-automatic water treatment device for a liquid cooling system. The water treatment device comprises an integrated module structure (5), a two-stage desalting module (2), a liquid supplementing module (3), a corrosion control module (4), a pH value adjusting module (1) and a water leakage monitoring module (6), the two-stage desalting module (2), the liquid supplementing module (3), the corrosion control module (4), the pH value adjusting module (1) and the water leakage monitoring module (6) are all arranged in the integrated module structure (5). Compared with the prior art, the two-stage desalting module (2), the liquid supplementing module (3), the corrosion control module (4), the pH value adjusting module (1) and the water leakage monitoring module (6) are mounted in the integrated module structure in a skid-mounted manner, so that the device is high in integration level, high in automation degree and easy to maintain.
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Description

TECHNICAL FIELD

[0001] The utility model relates to product installation technical field especially is related to a integrated modular full -automatic water treatment device for liquid cooling system. BACKGROUND

[0002] With the rapid development of artificial intelligence technology, liquid cooling system has been widely applied in data center, power storage, etc. However, the traditional liquid cooling water treatment device has the problems of complex structure, large floor area, high operation and maintenance difficulty, etc., which is difficult to meet the needs of modern production. Therefore, it is of great significance to develop an integrated modular full-automatic water treatment device with high integration, high automation and easy maintenance. UTILITY MODEL CONTENT

[0003] The utility model discloses a integrated modular full-automatic water treatment device for liquid cooling system, which overcomes the defects of the prior art. The two-stage desalination module, the liquid supplementing module, the corrosion control module, the acid-base degree adjusting module and the water leakage monitoring module are installed in the integrated module structure, which has high integration, high automation and easy maintenance.

[0004] The purpose of the utility model can be achieved through the following technical solutions:

[0005] The utility model provides a integrated modular full-automatic water treatment device for liquid cooling system, water treatment device includes: integrated module structure, two-stage desalination module, liquid supplementing module, corrosion control module, acid-base degree adjusting module, water leakage monitoring module, two-stage desalination module, liquid supplementing module, corrosion control module, acid-base degree adjusting module, water leakage monitoring module all are arranged in integrated module structure.

[0006] Further, the two-stage desalination module, the liquid supplementing module, the corrosion control module, the acid-base degree adjusting module and the water leakage monitoring module are installed in the integrated frame structure of the integrated module structure.

[0007] Further, the integrated module structure includes an automatic ventilation unit, an automatic gas extinguishing fire-fighting unit, an automatic smoke sensing monitoring unit, an automatic temperature control unit, an integrated frame structure and a controller.

[0008] Further, the automatic ventilation unit, the automatic gas extinguishing fire-fighting unit, the automatic smoke sensing monitoring unit and the automatic temperature control unit are arranged in the integrated frame structure.

[0009] Further, the controller can automatically start, stop, and adjust the strength and frequency of ventilation of the automatic ventilation unit according to the signals fed back by the automatic temperature control unit, and control the alarm to automatically alarm and start the gas fire extinguisher according to the temperature signals fed back by the automatic temperature control unit and the smoke signals fed back by the automatic smoke monitoring unit.

[0010] Further, the automatic ventilation unit comprises a ventilation fan, which is in communication connection with the controller.

[0011] Further, the automatic gas fire extinguishing unit comprises an alarm and a gas fire extinguisher, which are in communication connection with the controller.

[0012] Further, the automatic temperature control unit comprises a temperature sensor, which is in communication connection with the controller.

[0013] Further, the automatic smoke monitoring unit comprises a smoke detector, which is in communication connection with the controller.

[0014] Further, the corrosion control module, the pH value adjusting module, the two-stage desalination module, and the liquid supplementing module are sequentially connected through pipelines. The corrosion control module and the pH value adjusting module are connected with the secondary-side water inlet pipeline; the two-stage desalination module is connected with the secondary-side water inlet pipeline; and the liquid supplementing module is connected with the secondary-side water supplementing pipeline.

[0015] Further, the corrosion control module comprises an inhibitor dosing pump, a corrosion adjusting tank, and a corrosion adjusting tank liquid level monitor. The inhibitor dosing pump is connected with the corrosion adjusting tank, and is used for adding the inhibitor in the corrosion adjusting tank into the water in the secondary-side water inlet pipeline. The corrosion adjusting tank liquid level monitor is connected with the corrosion adjusting tank, and is used for monitoring the liquid level of the corrosion adjusting tank. The corrosion adjusting tank is connected with the secondary-side water inlet pipeline through a pipeline, and the pipeline connecting the corrosion adjusting tank and the secondary-side water inlet pipeline is provided with the inhibitor dosing pump and a stop valve.

[0016] Further, the pH value adjusting module comprises an acid-base adjusting agent dosing pump, a pH value adjusting tank, and a pH value adjusting tank liquid level monitor. The acid-base adjusting agent dosing pump is connected with the pH value adjusting tank, and is used for adding the acid-base adjusting agent in the pH value adjusting tank into the water in the secondary-side water inlet pipeline. The pH value adjusting tank liquid level monitor is connected with the pH value adjusting tank, and is used for monitoring the liquid level of the pH value adjusting tank. The pH value adjusting tank is connected with the secondary-side water inlet pipeline through a pipeline, and the pipeline connecting the pH value adjusting tank and the secondary-side water inlet pipeline is provided with the acid-base adjusting agent dosing pump and a stop valve.

[0017] Further, the two-stage desalination module comprises a filter, a high-pressure lifting pump, and a desalination membrane; the filter is connected with the secondary-side water inlet pipeline; the filter is connected with the high-pressure lifting pump through a pipeline; the high-pressure lifting pump is connected with the desalination membrane through a pipeline; the desalination membrane is connected with the liquid supplementing module through a pipeline; the filter is used for filtering impurity particles in the water; the high-pressure lifting pump is used for lifting the water after the impurity particles are filtered and then sending the water into the desalination membrane; the desalination membrane is used for retaining pollutants, salt ions, and organic pollutants at the concentrated water end of the desalination membrane, and water molecules and fine ions enter the fresh water through the desalination membrane and are transported to the liquid supplementing module; the desalination membrane is an anti-pollution type brackish water desalination membrane.

[0018] Further, the liquid supplementing module comprises a water tank, a water level monitoring meter, a water supplementing pump, an expansion tank, a pressure transmitter, and a liquid discharge pipeline; the water tank is connected with the desalination membrane of the two-stage desalination module through a pipeline; the water level monitoring meter is connected with the water tank and is used for monitoring the liquid level of the water tank; the water supplementing pump is connected with the water tank through a pipeline; the water supplementing pump is connected with the expansion tank through a pipeline; the expansion tank is connected with the pressure transmitter through a pipeline; the liquid discharge pipeline is connected with the water tank, and the liquid discharge pipeline is used for discharging overflow water in the water tank; the pressure transmitter is connected with the secondary-side water supplementing pipeline.

[0019] Further, the water leakage monitoring module comprises a water leakage rope; the water leakage rope is in communication connection with the controller.

[0020] Further, the secondary-side water inlet pipeline between the connection position of the corrosion adjusting tank and the secondary-side water inlet pipeline and the connection position of the acid-base value adjusting tank and the secondary-side water inlet pipeline is connected with a reflux pipeline; the reflux pipeline is connected with the secondary-side water supplementing pipeline; the reflux pipeline is provided with a pH monitoring meter, an ORP monitoring meter, a first reflux control valve, a second reflux control valve, and a third reflux control valve; the first reflux control valve is connected with the secondary-side water inlet pipeline, and the second reflux control valve is connected with the water tank; the pH monitoring meter and the ORP monitoring meter are connected with the reflux pipeline between the first reflux control valve and the second reflux control valve; the third reflux control valve is arranged on the reflux pipeline between the pH monitoring meter and the ORP monitoring meter and the secondary-side water supplementing pipeline; the pH monitoring meter and the ORP monitoring meter are in communication connection with the controller respectively.

[0021] Further, the processing capacity of the integrated modular full-automatic water treatment device for a liquid cooling system can be adjusted in size according to actual conditions of the system.

[0022] Compared with the prior art, the integrated modular full-automatic water treatment device has the following beneficial effects:

[0023] 1) The utility model discloses a modular full -automatic water treatment device of integral type for liquid cooling system, through with two grade desalination module, liquid supplement module, corrosion control module, acidity and alkalinity adjustment module, water leakage monitoring module pry in integral type module structure, the high integration, the high degree of automation, easy maintenance, realize the function such as water, liquid supplement, control water quality, provide stable water quality water source for liquid cooling system.

[0024] 2) The utility model discloses a modular full -automatic water treatment device of integral type for liquid cooling system, two grade desalination module, liquid supplement module, corrosion control module, the setting reasonable acidity and alkalinity adjustment module is connected with secondary side water inlet pipeline, secondary side liquid supplement pipeline, can effectively handle the water, and the pure water with stable water quality, corrosion tendency low is supplemented to liquid cooling system. DRAWINGS

[0025] Figure 1 It is the plane structure schematic drawing of two grade desalination module, liquid supplement module, corrosion control module, acidity and alkalinity adjustment module of the modular full -automatic water treatment device of integral type for liquid cooling system in the embodiment of the utility model.

[0026] Figure 2 It is the structure schematic drawing of the modular full -automatic water treatment device of integral type for liquid cooling system in the embodiment of the utility model.

[0027] Figure 3 It is Figure 1 the partial enlarged view.

[0028] In the drawing:

[0029] 1, acidity and alkalinity adjustment module, 1-1, acid and base adjusting agent dosing pump, 1-2, acidity and alkalinity adjustment pool, 1-3, acidity and alkalinity adjustment pool liquid level monitoring meter, 2, two grade desalination module, 2-1, filter, 2-2, high pressure lifting pump, 2-3, desalination membrane, 2-4, conductivity monitor, 3, liquid supplement module, 3-1, water tank, 3-2, water tank liquid level monitoring meter, 3-3, water supplement pump, 3-4, expansion tank, 3-5, pressure transmitter, 3-6, liquid discharge pipeline, 4, corrosion control module, 4-1, corrosion inhibitor dosing pump, 4-2, corrosion adjustment pool, 4-3, corrosion adjustment pool liquid level monitoring meter, 5, integral type module structure, 5-1, integrated frame structure, 6, water leakage monitoring module, 7, secondary side water inlet pipeline, 8, secondary side liquid supplement pipeline, 8-1, third backflow control valve, 9, backflow pipeline, 9-1, pH monitoring meter, 9-2, ORP monitoring meter, 9-3, first backflow control valve, 9-4, second backflow control valve. DETAILED DESCRIPTION

[0030] The utility model will be explained in detail below in combination with the drawings and specific embodiments. The following embodiments will help the person skilled in the art to further understand the utility model, but do not limit the utility model in any form. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the utility model, a number of changes and improvements of the opening shape can be made. These all belong to the protection scope of the utility model.

[0031] The preparation means, materials, structures or component ratio of features not explicitly described in the technical solution are considered as common technical features disclosed in the prior art.

[0032] It should be noted that the "front", "back", "left", "right", "up", "down", "inside", "outside" and other directions or position relationships described in the present application are based on the directions or position relationships indicated by the drawings, which are used to make the description of the present application more concise and clear, and do not mean that the described device or component must have a certain orientation restriction, therefore it cannot be used as a limitation on the present application. In addition, the embodiments described in the present application are only a part of the embodiments of the utility model, and cannot represent all embodiments, and other embodiments obtained by the person skilled in the art without making creative efforts on the present application should belong to the protection scope of the utility model.

[0033] In the utility model, unless otherwise specified and limited, the terms "mounting", "connection", "connection", "fixing" and other terms should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrated; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, or the communication inside two elements or the interaction relationship between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific situation.

[0034] It should be noted that in the utility model, relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between the entities or operations. Moreover, the terms "include", "contain" or any other variant thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or includes elements inherent in such process, method, article or equipment. Without more limitation, the element limited by the sentence "including a......" does not exclude the existence of other identical elements in the process, method, article or equipment including the element.

[0035] In the following examples, a communication connection refers to a wired connection or a wireless connection.

[0036] Embodiment 1

[0037] Reference Figures 1-2 The embodiment provides an integrated modular full-automatic water treatment device for a liquid cooling system, which comprises an integrated module structure 5, a two-stage desalination module 2, a liquid supplementing module 3, a corrosion control module 4, an acid-base adjusting module 1 and a water leakage monitoring module 6. The integrated module structure 5 comprises an integrated frame structure 5-1 and a controller, the integrated frame structure 5-1 is a box body, and the controller is arranged in a control cabinet in the box body.

[0038] The two-stage desalination module 2, the liquid supplementing module 3, the corrosion control module 4, the acid-base adjusting module 1 and the water leakage monitoring module 6 are all installed in the integrated frame structure 5-1 of the integrated module structure 5.

[0039] The corrosion control module 4, the acid-base adjusting module 1, the two-stage desalination module 2 and the liquid supplementing module 3 are sequentially connected through pipelines. The corrosion control module 4 and the acid-base adjusting module 1 are connected with a secondary-side water inlet pipeline 7, the secondary-side water inlet pipeline 7 is connected with the two-stage desalination module 2, and the liquid supplementing module 3 is connected with a secondary-side water supplementing pipeline 8.

[0040] The corrosion control module 4 comprises an inhibitor dosing pump 4-1, a corrosion adjusting tank 4-2 and a corrosion adjusting tank liquid level monitor 4-3. The inhibitor dosing pump 4-1 is connected with the corrosion adjusting tank 4-2, and is used for adding the inhibitor in the corrosion adjusting tank 4-2 into water in the secondary-side water inlet pipeline 7. The corrosion adjusting tank liquid level monitor 4-3 is connected with the corrosion adjusting tank 4-2, and is used for monitoring the liquid level of the corrosion adjusting tank 4-2. The corrosion adjusting tank 4-2 is connected with the secondary-side water inlet pipeline 7 through a pipeline, and the pipeline connecting the corrosion adjusting tank 4-2 and the secondary-side water inlet pipeline 7 is provided with the inhibitor dosing pump 4-1 and a stop valve.

[0041] The inhibitor is an existing inhibitor, and the application does not improve the inhibitor.

[0042] The pH adjusting module 1 comprises an acid-base adjusting agent dosing pump 1-1, a pH adjusting tank 1-2, and a pH adjusting tank liquid level monitor 1-3; the acid-base adjusting agent dosing pump 1-1 is connected with the pH adjusting tank 1-2, and is used for adding the acid-base adjusting agent in the pH adjusting tank 1-2 into the water in the secondary-side water inlet pipeline 7; the pH adjusting tank liquid level monitor 1-3 is connected with the pH adjusting tank 1-2, and is used for monitoring the liquid level of the pH adjusting tank 1-2; the pH adjusting tank 1-2 is connected with the secondary-side water inlet pipeline 7 through a pipeline, and the pipeline connecting the pH adjusting tank 1-2 and the secondary-side water inlet pipeline 7 is provided with the acid-base adjusting agent dosing pump 1-1 and a stop valve.

[0043] The acid-base adjusting agent is an existing acid-base adjusting agent, and the application does not improve it.

[0044] The two-stage desalination module 2 comprises a filter 2-1, a high-pressure lifting pump 2-2, a desalination membrane 2-3, and a conductivity monitor 2-4; the filter 2-1 is connected with the secondary-side water inlet pipeline 7; the filter 2-1 is connected with the high-pressure lifting pump 2-2 through a pipeline; the high-pressure lifting pump 2-2 is connected with the desalination membrane 2-3 through a pipeline; the desalination membrane 2-3 is connected with the liquid supplementing module 3 through a pipeline, and the pipeline connecting the desalination membrane 2-3 and the liquid supplementing module 3 is provided with the conductivity monitor 2-4, which is in communication connection with a controller; the filter 2-1 is used for filtering impurity particles in the water; the high-pressure lifting pump 2-2 is used for high-pressure lifting of the water after the impurity particles are filtered, and then sending the water into the desalination membrane 2-3; the desalination membrane 2-3 is used for retaining the pollutants, salt ions, and organic pollutants at the concentrated water end of the desalination membrane 2-3, and water molecules and fine ions pass through the desalination membrane 2-3 to enter the fresh water and are transported to the liquid supplementing module 3.

[0045] Two groups of high-pressure lifting pumps 2-2 are connected in parallel on the pipeline to avoid single-point failure, and one is used as a backup; two groups of desalination membranes 2-3 are connected in parallel on the pipeline, and the two groups of desalination membranes 2-3 are arranged in a one-stage two-section manner to increase the water production rate.

[0046] The desalination membrane 2-3 is a commercially available anti-pollution type brackish water desalination membrane.

[0047] The liquid supplementing module 3 comprises a water tank 3-1, a water tank liquid level monitor 3-2, a water supplementing pump 3-3, an expansion tank 3-4, a pressure transmitter 3-5, and a liquid discharge pipeline 3-6; the water tank 3-1 is connected with the desalination membrane 2-3 of the two-stage desalination module 2 through a pipeline; the water tank liquid level monitor 3-2 is connected with the water tank 3-1 and used for monitoring the liquid level of the water tank 3-1; the water supplementing pump 3-3 is connected with the water tank 3-1 through a pipeline; the water supplementing pump 3-3 is connected with the expansion tank 3-4 through a pipeline; the expansion tank 3-4 is connected with the pressure transmitter 3-5 through a pipeline; the expansion tank 3-4 is used for preventing pressure fluctuation when the water supplementing pump 3-3 is started; the liquid discharge pipeline 3-6 is connected with the water tank 3-1, and the liquid discharge pipeline 3-6 is used for discharging overflow water in the water tank 3-1; and the pressure transmitter 3-5 is connected with the secondary-side water supplementing pipeline 8.

[0048] Two sets of water supplementing pumps 3-3 are arranged and connected with the water tank 3-1 through pipelines respectively, and serve as backups for each other, so that the influence caused by single-point failure is avoided.

[0049] The water leakage monitoring module 6 comprises a water leakage rope; the water leakage rope is in communication connection with the controller; and the water leakage rope is a commercially available water leakage rope.

[0050] The controller can be one of mainstream single-chip microcomputers or x86 architecture, ARM architecture, and RISC-V architecture processors.

[0051] The working method of the integrated modular full-automatic water treatment device for the liquid cooling system comprises the following steps:

[0052] The water enters from the secondary-side water inlet pipeline 7, the corrosion control module 4 can add corrosion inhibitor into the water in the secondary-side water inlet pipeline 7 to inhibit the corrosion rate of the device and system, maintain the stability of the water quality, and then the pH value adjusting module 1 can add acid-base adjusting agent to control the pH value change and maintain the stability of the pH value to further inhibit the corrosion tendency of the device and system, and then the water enters the two-stage desalination module 2 for two-stage filtration, the water with impurity particles is discharged after passing through the filter 2-1, the filtered water passes through the high-pressure lifting and passes through the desalination membrane 2-3, the pollutants, salt ions and organic pollutants are intercepted at the concentrated water end of the desalination membrane 2-3, the water molecules and fine ions enter the fresh water through the desalination membrane 2-3 and are transported to the liquid supplementing module 3, and the pure water is supplemented into the liquid cooling system through the secondary-side water supplementing pipeline 8.

[0053] Embodiment 2

[0054] As shown in Figure 3 the embodiment provides an integrated modular full-automatic water treatment device for a liquid cooling system, and the embodiment further comprises the following on the basis of the embodiment 1:

[0055] A return line 9 is connected to the secondary-side water inlet line 7 before the corrosion conditioning tank 4-2, and the return line 9 is connected to the secondary-side water supplement line 8;

[0056] The return line 9 is provided with a pH monitor 9-1, an ORP monitor 9-2, a first return control valve 9-3, and a second return control valve 9-4.

[0057] The secondary-side water supplement line 8 is provided with a third return control valve 8-1, and the connection between the return line 9 and the secondary-side water supplement line 8 is between the third return control valve 8-1 and the pressure transmitter 3-5.

[0058] The diameter of the return line 9 is smaller than that of the secondary-side water inlet line 7.

[0059] The pH monitor 9-1 and the ORP monitor 9-2 are connected to the return line 9 between the first return control valve 9-3 and the second return control valve 9-4.

[0060] The first return control valve 9-3 is connected to the secondary-side water inlet line 7, and the second return control valve 9-4 is connected to the water tank 3-1, and the pipeline connecting the second return control valve 9-4 to the water tank 3-1 is not completely shown in the figure.

[0061] The pH monitor 9-1 and the ORP monitor 9-2 are respectively in communication connection with the controller.

[0062] All the valves are in communication connection with the controller.

[0063] On the basis of Embodiment 1, the working method of the integrated modular full-automatic water treatment device for a liquid cooling system of the present embodiment further comprises the following steps:

[0064] The third return control valve 8-1 is closed, the second return control valve 9-4 is opened, and the first return control valve 9-3 is closed. The water from the liquid supplement module 3 passes through the pH monitor 9-1 and the ORP monitor 9-2 on the return line 9. If the pH value and the ORP value are greater than the preset values (the preset values of the pH value and the ORP value can be determined according to actual working conditions), the second return control valve 9-4 is closed, the first return control valve 9-3 is opened, and the unqualified water is returned to the secondary-side water inlet line 7 for reprocessing. If the pH value and the ORP value are less than the preset values (the preset values of the pH value and the ORP value can be determined according to actual working conditions), the second return control valve 9-4 is opened, the first return control valve 9-3 is closed, and the third return control valve 8-1 is opened. The qualified water is returned to the water tank 3-1, passes through the expansion tank 3-4 and the pressure transmitter 3-5, and is supplemented to the liquid cooling system through the secondary-side water supplement line 8.

[0065] Embodiment 3

[0066] The embodiment provides an integrated modular full-automatic water treatment device for a liquid cooling system.

[0067] The integrated module structure 5 comprises an automatic air ventilation unit, an automatic gas fire extinguishing unit, an automatic smoke sensing monitoring unit, an automatic temperature control unit and an integrated frame structure 5-1 and a controller.

[0068] The automatic air ventilation unit, the automatic gas fire extinguishing unit, the automatic smoke sensing monitoring unit and the automatic temperature control unit are arranged in the integrated frame structure 5-1.

[0069] The controller can automatically start, stop and adjust the ventilation strength and frequency of the automatic air ventilation unit according to the temperature signal fed back by the automatic temperature control unit and the smoke sensing signal fed back by the automatic smoke sensing monitoring unit, control the alarm to automatically alarm and start the gas fire extinguisher.

[0070] The automatic air ventilation unit comprises an air ventilator which is in communication connection with the controller.

[0071] The automatic gas fire extinguishing unit comprises an alarm and a gas fire extinguisher, and the alarm and the gas fire extinguisher are in communication connection with the controller.

[0072] The automatic temperature control unit comprises a temperature sensor which is in communication connection with the controller.

[0073] The automatic smoke sensing monitoring unit comprises a smoke detector which is in communication connection with the controller.

[0074] The embodiment description of the utility model is for facilitating the ordinary skilled person in the art to understand and use the utility model. The person skilled in the art can obviously easily make various modifications to these embodiments, and the general principles described herein are applied to other embodiments without creative labor. Therefore, the utility model is not limited to the above embodiments, and the improvements and modifications made by the person skilled in the art without departing from the scope of the utility model should be within the protection scope of the utility model.

Claims

1. An integrated modular fully automated water treatment device for liquid cooling systems, characterized in that, The water treatment device comprises an integrated module structure (5), a two-stage desalination module (2), a liquid supplementing module (3), a corrosion control module (4), and an acid-base adjusting module (1); The two-stage desalination module (2), the liquid supplementing module (3), the corrosion control module (4), and the acid-base adjusting module (1) are arranged in the integrated module structure (5); The corrosion control module (4), the acid-base adjusting module (1), the two-stage desalination module (2), and the liquid supplementing module (3) are sequentially connected through pipelines; The corrosion control module (4) and the acid-base adjusting module (1) are connected with a secondary-side water inlet pipeline (7); the secondary-side water inlet pipeline (7) is connected with the two-stage desalination module (2); and the liquid supplementing module (3) is connected with a secondary-side water supplementing pipeline (8).

2. An all-in-one modular full-automatic water treatment device for liquid cooling system according to claim 1, characterized in that, The water treatment device further comprises a water leakage monitoring module (6); The water leakage monitoring module (6) is arranged in the integrated module structure (5).

3. The integrated modular fully automated water treatment device for liquid cooling systems according to claim 1, characterized in that, The corrosion control module (4) comprises an inhibitor dosing pump (4-1) and a corrosion adjusting tank (4-2); The inhibitor dosing pump (4-1) is connected with the corrosion adjusting tank (4-2) and is used for adding the inhibitor in the corrosion adjusting tank (4-2) into water in the secondary-side water inlet pipeline (7); The corrosion adjusting tank (4-2) is connected with the secondary-side water inlet pipeline (7) through a pipeline; and the pipeline connecting the corrosion adjusting tank (4-2) and the secondary-side water inlet pipeline (7) is provided with the inhibitor dosing pump (4-1). The acid-base adjusting module (1) comprises an acid-base adjusting agent dosing pump (1-1), an acid-base adjusting tank (1-2), and an acid-base adjusting tank liquid level monitoring meter (1-3); The acid-base adjusting agent dosing pump (1-1) is connected with the acid-base adjusting tank (1-2) and is used for adding the acid-base adjusting agent in the acid-base adjusting tank (1-2) into water in the secondary-side water inlet pipeline (7).

4. The integrated modular fully automated water treatment device for liquid cooling systems of claim 1, wherein, The acid-base adjusting module (1) comprises an acid-base adjusting agent dosing pump (1-1) and an acid-base adjusting tank (1-2); The acid-base adjusting agent dosing pump (1-1) is connected with the acid-base adjusting tank (1-2) and is used for adding the acid-base adjusting agent in the acid-base adjusting tank (1-2) into water in the secondary-side water inlet pipeline (7); The acid-base adjusting tank (1-2) is connected with the secondary-side water inlet pipeline (7) through a pipeline; and the pipeline connecting the acid-base adjusting tank (1-2) and the secondary-side water inlet pipeline (7) is provided with the acid-base adjusting agent dosing pump (1-1).

5. The integrated modular fully automated water treatment device for liquid cooling systems as claimed in claim 1, wherein, The two-stage desalination module (2) comprises a filter (2-1), a high-pressure lifting pump (2-2), and a desalination membrane (2-3); The filter (2-1) is connected with the secondary-side water inlet pipeline (7); The filter (2-1) is connected with the high-pressure lifting pump (2-2) through a pipeline; The high-pressure lifting pump (2-2) is connected with the desalination membrane (2-3) through a pipeline; The desalination membrane (2-3) is connected with the liquid supplementing module (3) through a pipeline.

6. The integrated modular fully automated water treatment device for liquid cooling systems of claim 1, wherein, The liquid supplementing module (3) comprises a water tank (3-1), a water supplementing pump (3-3), an expansion tank (3-4), and a pressure transmitter (3-5); The water tank (3-1) is connected with the two-stage desalination module (2) through a pipeline; The make-up water pump (3-3) is connected with the water tank (3-1) through a pipeline; The make-up water pump (3-3) is connected with the expansion tank (3-4) through a pipeline; The expansion tank (3-4) is connected with the pressure transmitter (3-5) through a pipeline; The pressure transmitter (3-5) is connected with the secondary side make-up water pipeline (8).

7. An all-in-one modular automatic water treatment device for liquid cooling systems according to claim 6, characterized in that, The liquid supplement module (3) further comprises a water tank liquid level monitor (3-2) and a liquid discharge pipeline (3-6); The water tank liquid level monitor (3-2) is connected with the water tank (3-1); The liquid discharge pipeline (3-6) is connected with the water tank (3-1).

8. An all-in-one modular automatic water treatment device for liquid cooling systems according to claim 6, characterized in that, The secondary side water inlet pipeline (7) is connected with the backflow pipeline (9); The backflow pipeline (9) is connected with the secondary side make-up water pipeline (8); The backflow pipeline (9) is provided with a pH monitor (9-1), an ORP monitor (9-2), a first backflow control valve (9-3), a second backflow control valve (9-4) and a third backflow control valve (8-1); The first backflow control valve (9-3) is connected with the secondary side water inlet pipeline (7), and the second backflow control valve (9-4) is connected with the water tank (3-1); The pH monitor (9-1) and the ORP monitor (9-2) are connected with the backflow pipeline (9) between the first backflow control valve (9-3) and the second backflow control valve (9-4) in sequence; The third backflow control valve (8-1) is arranged on the backflow pipeline (9) connecting the pH monitor (9-1) and the ORP monitor (9-2) with the secondary side make-up water pipeline (8).

9. The integrated modular fully automated water treatment device for liquid cooling systems of claim 1, wherein, The integrated module structure (5) comprises an integrated frame structure (5-1); The two-stage desalination module (2), the liquid supplement module (3), the corrosion control module (4) and the pH value adjustment module (1) are arranged in the integrated frame structure (5-1) of the integrated module structure (5).

10. The integrated modular fully automated water treatment device for liquid cooling systems of claim 1, wherein, The integrated module structure (5) further comprises an automatic ventilation unit, an automatic gas extinguishing unit, an automatic smoke monitoring unit, an automatic temperature control unit and a controller; The automatic ventilation unit, the automatic gas extinguishing unit, the automatic smoke monitoring unit and the automatic temperature control unit are arranged in the integrated frame structure (5-1).