Anti-scaling device for closed cooling tower cooler

By using a combination of filter screen and ultrasonic descaling detector in the closed cooling tower cooler, the problems of time-consuming and labor-intensive scale removal and scale adhesion are solved, achieving efficient scale filtration and removal and improving the heat exchange effect of the cooling pipe.

CN223925563UActive Publication Date: 2026-02-17SHANGHAI BENYAN COOLING EQUIPMENT CO LTD
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Patent Information

Application Number
CN202520524106.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2026-02-17
Estimated Expiration
2035-03-24

AI Technical Summary

Technical Problem

Existing technologies are time-consuming and labor-intensive in removing scale from the cooling pipes of closed cooling towers, and scale easily adheres to the inside of the cooling pipes, affecting the heat exchange effect.

Method used

An anti-scaling device is adopted, which includes an installation pipe, a base, a first filter screen, a second filter screen, a block, a pad, an ultrasonic descaling detector, and fixing components. The first and second filters filter large and small scale particles, and the ultrasonic descaling detector detects and removes scale, preventing scale from entering the cooling pipe.

Benefits of technology

It improves the heat exchange efficiency of the cooling pipes, and by effectively filtering and removing scale, it prevents scale from entering the cooling pipes and reduces the labor intensity of scale removal.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cooling tower coolers, in particular to a closed cooling tower cooler anti-scaling device which comprises a cooling body and a structural assembly. The structural assembly comprises a mounting pipe, a seat body, a first filter screen, a second filter screen, a block body, a cushion, an ultrasonic descaling detector and a fixing component, the mounting pipe is mounted on one side of the cooling body through bolts, and the ultrasonic descaling detector is fixedly mounted on the side, away from the cooling body, of the mounting pipe; the seat body is fixedly installed on the side, away from the ultrasonic descaling detector, of the installation pipe, the first filter screen is detachably connected with the seat body, the second filter screen is detachably connected with the seat body and located on the side, close to the first filter screen, of the second filter screen, the fixing component is connected with the seat body and the installation pipe, and the block body is connected with the fixing component and rotationally connected with the seat body. The soft cushion is arranged on the side, close to the block body, of the base body in a sleeving mode, and therefore the heat exchange effect on the cooling pipe is improved.
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Description

Technical Field

[0001] This utility model relates to the field of cooling tower cooler technology, and in particular to an anti-scaling device for a closed cooling tower cooler. Background Technology

[0002] A closed-circuit cooling tower (also known as a closed cooling tower or a sealed cooling tower) is an advanced heat dissipation device. A closed-circuit cooling tower uses a partition heat exchanger for cooling. The circulating water flows inside the pipes and does not come into direct contact with the outside air. Instead, it exchanges heat with the air through sprayed water outside the pipes. Conventional devices are inconvenient to clean scale in the cooling pipes and cannot effectively protect the cooling pipes, thus affecting the performance of the device.

[0003] The prior art CN215725424U discloses a heat exchanger descaling device, including a heat exchanger outer tube, end caps, sealing plates, square rods, rotating rods, cooling tubes, rotating tips, sealing plates, conical holes, movable strips, and brush bristles. The end caps at both ends of the heat exchanger outer tube are removed, and then the sealing plate is fixed to one end of the heat exchanger outer tube. The square rod is clamped by the chuck of an electric drill, and then the rotating rod is inserted into the cooling tube, with the rotating tip positioned in a conical hole on the sealing plate. The electric drill drives the rotating rod to rotate, and the brush bristles on the movable strips can remove scale from the inner edge of the cooling tube, thereby effectively protecting the cooling tube and improving the device's performance.

[0004] In normal use, existing technologies are time-consuming and labor-intensive in removing scale from the water inside the cooling pipes, and it is also inconvenient to prevent scale from entering the cooling pipes, causing scale to adhere to the inside of the cooling pipes and affecting the heat exchange efficiency of the cooling pipes. Utility Model Content

[0005] The purpose of this utility model is to provide a scale prevention device for a closed cooling tower cooler, which solves the problem that the existing technology is time-consuming and laborious when removing scale from the water in the cooling pipe, and it is inconvenient to prevent scale from entering the cooling pipe, which causes scale to adhere to the inside of the cooling pipe and affects the heat exchange effect of the cooling pipe.

[0006] To achieve the above objectives, this utility model provides an anti-scaling device for a closed-loop cooling tower cooler, comprising a cooling body and structural components. The structural components include an installation pipe, a base, a first filter screen, a second filter screen, a block, a pad, an ultrasonic descaling detector, and a fixing component. The installation pipe is bolted to one side of the cooling body. The ultrasonic descaling detector is fixedly installed on the side of the installation pipe away from the cooling body. The base is fixedly installed on the side of the installation pipe away from the ultrasonic descaling detector. The first filter screen is detachably connected to the base, and the second filter screen is detachably connected to the base and located on the side of the second filter screen closer to the first filter screen. The fixing component is connected to the base and to the installation pipe. The block is connected to the fixing component and rotatably connected to the base. The pad is fitted onto the side of the base near the block.

[0007] The fixing component includes a fixing block and a fixing frame. The fixing frame is fixedly connected to the mounting tube and to the base. The fixing block is engaged with the fixing frame and fixedly connected to the block.

[0008] The fixed frame has a slot located on the side of the fixed frame near the fixed block and engages with the fixed block.

[0009] The base has a first mounting groove, which is located on the side of the base near the first filter and cooperates with the first filter.

[0010] The base has a second mounting groove, which is located on the side of the base near the second filter and cooperates with the second filter.

[0011] This utility model discloses an anti-scaling device for a closed-loop cooling tower cooler. The first and second filter screens are placed on a base, and then a block is placed on the base. Simultaneously, a fixed block is placed on a fixed frame, pushing the block and the fixed block upwards. The soft pad is compressed. After moving into position, the block and the fixed block are rotated. Releasing the block, the soft pad rebounds, driving the block to engage with the fixed block in the slot. Simultaneously, the second filter screen is installed in the second mounting slot, and the first filter screen is installed in the first mounting slot. The block is then installed on the base. The first filter screen filters large particles of scale in the water, and the second filter screen filters small particles of scale. This allows the scale in the water to be removed and filtered by the water flow, preventing scale from entering the cooling pipes and thus improving the heat exchange efficiency of the cooling pipes. Attached Figure Description

[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0013] Figure 1 This is a schematic diagram of the overall structure of the anti-scaling device for a closed-loop cooling tower cooler according to the first embodiment of this utility model.

[0014] Figure 2 This is a structural schematic diagram of the mounting tube and base of this utility model.

[0015] Figure 3 This is a utility model Figure 2 Enlarged view of point A.

[0016] Figure 4 This is a structural schematic diagram of the base and the fixed frame of this utility model.

[0017] In the diagram: 101-Cooling body, 102-Mounting pipe, 103-Seat, 104-First filter, 105-Second filter, 106-Block, 107-Soft pad, 108-Ultrasonic descaling detector, 109-Solid block, 110-Solid frame, 111-Slot, 112-First mounting slot, 113-Second mounting slot. Detailed Implementation

[0018] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.

[0019] The first embodiment of this application is as follows:

[0020] Please see Figures 1-4 , Figure 1 This is a schematic diagram of the overall structure of the anti-scaling device for a closed-loop cooling tower cooler according to the first embodiment of this utility model. Figure 2 This is a structural schematic diagram of the mounting tube and base of this utility model. Figure 3 This is a utility model Figure 2 Enlarged view at point A Figure 4This is a structural schematic diagram of the base and frame of this utility model. This utility model provides an anti-scaling device for a closed-loop cooling tower cooler, including a cooling body 101 and structural components. The structural components include an installation pipe 102, a base 103, a first filter screen 104, a second filter screen 105, a block 106, a soft pad 107, an ultrasonic descaling detector 108, and fixing components. The fixing components include a fixing block 109 and a fixing frame 110. The fixing frame 110 has a slot 111, and the base 103 has a first mounting groove. 112. The base 103 has a second mounting groove 113. The aforementioned solution solves the problem that in the prior art, when removing scale from the water in the cooling pipe, it is time-consuming and laborious, and it is inconvenient to prevent scale from entering the cooling pipe, causing scale to adhere to the inside of the cooling pipe and affecting the heat exchange effect of the cooling pipe. It is understood that the aforementioned solution can be used when the prior art is time-consuming and laborious when removing scale from the water in the cooling pipe, and it is inconvenient to prevent scale from entering the cooling pipe, causing scale to adhere to the inside of the cooling pipe.

[0021] In this specific embodiment, by placing the first filter screen 104 and the second filter screen 105 on the base 103, and the fixing member installing the block 106 on the base, the soft pad 107 supports the second filter screen 105, thereby enabling the second filter screen 105 and the first filter screen 104 to be installed on the base 103. The first filter screen 104 filters large particles of scale in the water, and the second filter screen 105 filters small particles of scale in the water. The scale in the water is removed and filtered by the flow of water, preventing scale from entering the cooling pipe, thereby improving the heat exchange effect of the cooling pipe.

[0022] The mounting pipe 102 is bolted to one side of the cooling body 101. The ultrasonic descaling detector 108 is fixedly mounted on the side of the mounting pipe 102 away from the cooling body 101. The base 103 is fixedly mounted on the side of the mounting pipe 102 away from the ultrasonic descaling detector 108. The first filter screen 104 is detachably connected to the base 103. The second filter screen 105 is detachably connected to the base 103 and located on the side of the second filter screen 105 closer to the first filter screen 104. The fixing member is connected to the base 103 and to the mounting pipe 102. The block... 106 is connected to the fixing component and rotatably connected to the seat 103. The soft pad 107 is sleeved on the side of the seat 103 near the block 106. The cooling body 101 consists of a cooling pipe and a spray pump. The end of the mounting pipe 102 is bolted to the cooling pipe of the cooling body 101. The upper inner side of the seat 103 has a first mounting groove, and the middle inner side of the seat 103 has a second mounting groove. The outer side of the seat 103 is fixedly connected to the lower inner side of the mounting pipe 102. The lower outer side of the first filter screen 104 is detachably connected to the first mounting groove of the seat 103. The lower outer part of the filter screen 105 is detachably connected to the second mounting groove of the base 103. Multiple fixing components are provided at the bottom of the base 103. These fixing components mount the outer side of the block 106 to the lower inner side of the base 103. The soft pad 107 is made of rubber and is located between the second filter screen 105 and the block 106. The ultrasonic descaling detector 108 is located on the left outer side of the mounting tube 102. The ultrasonic descaling detector 108 detects scale inside the mounting tube 102 and transmits it via TH26. The material is delivered to the user's mobile phone. By placing the first filter 104 and the second filter 105 on the base 103, the fixing component installs the block 106 on the base, and the soft pad 107 supports the second filter 105. This allows the second filter 105 and the first filter 104 to be installed on the base 103. The first filter 104 filters large particles of scale in the water, and the second filter 105 filters small particles of scale. The flow of water removes and filters the scale, preventing it from entering the cooling pipe and thus improving the heat exchange effect of the cooling pipe.

[0023] Secondly, the fixed frame 110 is fixedly connected to the mounting tube 102 and to the base 103; the fixed block 109 is snapped into the fixed frame 110 and fixedly connected to the block 106. The base 103 has multiple grooves at its bottom. The fixed frame 110 is arc-shaped, with a slot on its inner side. The end of the fixed frame 110 is fixedly connected to the groove of the base 103, and the outer side of the fixed frame 110 is fixedly connected to the inner side of the mounting tube 102. Multiple fixed blocks 109 are located outside the block 106. On one side, the fixed block 109 engages with the slot of the fixed frame 110. By placing the block 106 on the seat 103, the fixed block 109 is simultaneously placed on the fixed frame 110. The block 106 and the fixed block 109 are pushed upward, and the soft pad 107 is compressed. After moving into place, the block 106 and the fixed block 109 are rotated. The block 106 is released, and the soft pad 107 rebounds, driving the block 106 to engage the fixed block 109 with the slot of the fixed frame 110, thereby installing the block 106 on the seat 103.

[0024] Meanwhile, the fixed frame 110 has a slot 111, which is located on the side of the fixed frame 110 close to the fixed block 109 and cooperates with the fixed block 109. The slot 111 is located on the inner side of the fixed frame 110. By rotating the fixed block 109 and cooperating with the soft pad 107, the fixed block 109 is snapped into the slot 111, thereby realizing the connection between the fixed block 109 and the seat 103.

[0025] Then, the seat 103 has a first mounting groove 112, which is located on the side of the seat 103 near the first filter 104 and cooperates with the first filter 104. The first mounting groove 112 is located on the upper inner side of the seat 103 and is detachably connected to the lower outer side of the first filter 104. The soft pad 107 is driven by the block 106 to move the second filter 105 to abut against the first filter 104, thereby installing the first filter 104 on the first mounting groove 112, thus realizing the connection between the first filter 104 and the seat 103.

[0026] Finally, the base 103 has a second mounting groove 113, which is located on the side of the base 103 near the second filter 105 and cooperates with the second filter 105. The second mounting groove 113 is located in the middle of the inner side of the base 103 and is detachably connected to the lower outer side of the second filter 105. The soft pad 107 is driven by the block 106 to abut against the second filter 105, thereby installing the second filter 105 on the second mounting groove 113, thus realizing the connection between the second filter 105 and the base 103.

[0027] When using the anti-scaling device for a closed-loop cooling tower cooler according to this embodiment, the first filter screen 104 and the second filter screen 105 are placed on the base 103, and then the block 106 is placed on the base 103. At the same time, the fixed block 109 is placed on the fixed frame 110, pushing the block 106 and the fixed block 109 upward. The soft pad 107 is compressed. After moving into place, the block 106 and the fixed block 109 are rotated. The block 106 is released, and the soft pad 107 rebounds, driving the block 106 to move upward. 6. The fixed block 109 is engaged with the slot 111, while the second filter screen 105 is installed on the second mounting slot 113 and the first filter screen 104 is installed on the first mounting slot 112. The block 106 is installed on the base 103. The first filter screen 104 filters large particles of scale in the water, and the second filter screen 105 filters small particles of scale in the water. The scale in the water is removed and filtered by the flow of water, preventing scale from entering the cooling pipe and thus improving the heat exchange effect of the cooling pipe.

[0028] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.

Claims

1. A closed cooling tower cooler anti-fouling device, comprising a cooling body, characterized in that: It also includes a structural assembly; The structural assembly includes a mounting pipe, a seat body, a first filter screen, a second filter screen, a block, a soft pad, an ultrasonic cleaning detector and a fixing member, the mounting pipe is installed on one side of the cooling body by bolts, the ultrasonic cleaning detector is fixedly installed on the side of the mounting pipe away from the cooling body, the seat body is fixedly installed on the side of the mounting pipe away from the ultrasonic cleaning detector, the first filter screen is detachably connected with the seat body, the second filter screen is detachably connected with the seat body and located on the side of the second filter screen close to the first filter screen, the fixing member is connected with the seat body and the mounting pipe, the block is connected with the fixing member and rotatably connected with the seat body, and the soft pad is sleeved on the side of the seat body close to the block.

2. The closed cooling tower cooler anti-fouling device according to claim 1, characterized in that: The fixing member includes a fixed block and a fixed frame, the fixed frame is fixedly connected with the mounting pipe and the seat body; and the fixed block is clamped with the fixed frame and fixedly connected with the block.

3. The closed cooling tower cooler anti-fouling device according to claim 2, characterized in that: The fixed frame has a clamping groove, the clamping groove is located on the side of the fixed frame close to the fixed block and matched with the fixed block.

4. The closed cooling tower cooler anti-fouling device according to claim 1, characterized in that: The seat body has a first mounting groove, the first mounting groove is located on the side of the seat body close to the first filter screen and matched with the first filter screen.

5. The closed cooling tower cooler anti-fouling device according to claim 1, characterized in that: The seat body has a second mounting groove, the second mounting groove is located on the side of the seat body close to the second filter screen and matched with the second filter screen.

Citation Information

Patent Citations

  • Descaling device for heat exchanger

    CN215725424U