Spray cooling pool

By combining a motor-driven spiral drum and cleaning plate with an electric telescopic machine and sealing plate, the problem of time-consuming and labor-intensive cleaning of the inner wall and bottom of the spray cooling pool is solved, achieving fast and efficient cleaning and heat exchange, and improving cooling efficiency.

CN223896623UActive Publication Date: 2026-02-10SUZHOU ZHENLUN SPINNING
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Patent Information

Application Number
CN202520462487.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-17
Publication Date
2026-02-10
Estimated Expiration
2035-03-17

AI Technical Summary

Technical Problem

The existing spray cooling pools are difficult to clean effectively after use, resulting in reduced cooling effect and time-consuming and labor-intensive cleaning.

Method used

The system employs a combination of a motor-driven spiral drum and a cleaning plate, along with an electric telescopic machine and a sealing plate, to achieve automated cleaning of the inner wall and bottom of the cooling pool. Simultaneously, it utilizes an intake fan and an exhaust fan to create air circulation, enhancing heat exchange, and uses a filter plate structure to filter impurities and facilitate rapid replacement.

Benefits of technology

It enables rapid and efficient cleaning of the cooling pool, improves cleaning efficiency, enhances heat exchange effect, and increases cooling efficiency and water temperature reduction rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a spray cooling pond, which relates to the technical field of cooling ponds, and comprises a cooling pond, the upper end of the cooling pond is fixed with a top plate, the lower end of the top plate is provided with a spray plate, the upper end of the spray plate is provided with a spray pipe, the upper end of the top plate is provided with a rotating groove, the rotating groove is internally provided with a spiral cylinder in a rotating manner, and the spiral cylinder is provided with a spray nozzle. A spiral column is arranged in the spiral cylinder, a motor is fixed to one side of the upper end of the top plate, and a belt wheel is fixed to the upper end of the motor. The spray cooling pond has the advantages that the spray cooling pond can quickly clean the inner wall and the bottom of the cooling pond, the cleaning efficiency of the cooling pond is improved, the spray cooling pond can enhance the heat exchange effect between air and spray water, and the speed of transferring heat from hot water to air is increased, so that the water temperature is more effectively reduced, and the service life of the spray cooling pond is prolonged. And the first filter plate can be quickly replaced.
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Description

Technical Field

[0001] This utility model relates to the field of cooling pool technology, specifically a spray cooling pool. Background Technology

[0002] A spray cooling pool lowers the water temperature by dispersing hot water into the air through spraying, utilizing the heat absorption of water evaporation and heat exchange with the air. Hot water is sprayed evenly from the nozzles above, forming fine water droplets or films, which increases the contact area between the water and the air, allowing heat to be transferred to the surrounding air more effectively. At the same time, some of the water evaporates, carrying away a large amount of heat of vaporization, thereby achieving water cooling.

[0003] However, existing cooling pools accumulate dirt on their inner walls and bottom after use. Currently, cleaning is usually done manually, which is time-consuming, labor-intensive, and ineffective, resulting in a reduction in the cooling effect of the pool. Therefore, we propose a spray cooling pool. Utility Model Content

[0004] The purpose of this invention is to provide a spray cooling pool.

[0005] To address the problems mentioned in the background art, this utility model provides the following technical solution: a spray cooling pool, comprising a cooling pool, a top plate fixed to the upper end of the cooling pool, a spray plate installed at the lower end of the top plate, a spray pipe provided at the upper end of the spray plate, a rotating groove opened at the upper end of the top plate, a spiral cylinder rotatably arranged inside the rotating groove, a spiral column arranged inside the spiral cylinder, a motor fixed to one side of the upper end of the top plate, a pulley fixed to the upper end of the motor, a transmission belt installed inside the pulley, a cleaning plate fixed to the lower end of the spiral column, a sliding column fixed to one side of the upper end of the cleaning plate, an electric telescopic machine fixed to one end of the cooling pool, a push plate installed at one end of the electric telescopic machine, sealing plates sliding on both sides inside the cooling pool, a connecting column fixed to one end of the sealing plate, a drain pump arranged near the upper side of one side of the cooling pool, and drain hoses fixed to both sides of the drain pump.

[0006] Preferably, the pulley is rotatably connected to the spiral cylinder via a spiral column, and the cleaning plate is slidably connected to the cooling pool.

[0007] Preferably, the sliding column passes through the top plate, and the sliding column is slidably connected to the top plate.

[0008] Preferably, the cooling pool is slidably connected to the sealing plate, and the sealing plate is fixedly connected to the push plate.

[0009] Preferably, a heat dissipation box is fixed to the upper side of both sides of the cooling pool, a fixing box is fixed to one end of the heat dissipation box, a fixing plate is installed inside the fixing box, multiple sets of sliding rods are fixed to one end of the fixing box, multiple sets of springs are provided to one end of the fixing plate, an intake fan is provided inside one side of the heat dissipation box, an exhaust fan is provided inside the heat dissipation box on the other side, a first filter plate slides through the upper end of each heat dissipation box, a waterproof plate is fixed to the upper side of the interior of the cooling pool, and a second filter plate is provided at the upper end of the interior of the cooling pool.

[0010] Preferably, one end of the slide rod passes through the fixed plate, and the slide rod is slidably connected to the fixed plate.

[0011] Preferably, the fixing plate is slidably connected to the fixing box, and there are two springs, both of which are located inside the fixing box.

[0012] By adopting the above technical solution, the spiral drum can be driven to rotate through the cooperation of the motor, pulley and transmission belt. This causes the spiral drum to push the cleaning plate to scrape the inner wall of the cooling pool through the spiral column. The sliding column makes the sliding of the cleaning plate more stable. Then, through the cooperation of the electric telescopic machine and the push plate, the bottom of the cooling pool can be cleaned through the sealing plate. This allows the spray cooling pool to quickly clean the inner wall and bottom of the cooling pool, improving the cleaning efficiency of the cooling pool.

[0013] By adopting the above technical solution, the cooling pool can be circulated with the outside air through the cooperation of the intake fan and the exhaust fan, making the cooling of the spray water more efficient. Then, through the cooperation of the second filter plate and the first filter plate, external debris can be blocked and the spray water can be filtered. Furthermore, through the cooperation of the fixing plate and the spring, the first filter plate can be quickly installed and removed, which can enhance the heat exchange effect between the air and the spray water in the spray cooling pool, accelerate the speed at which heat is transferred from the hot water to the air, thereby more effectively reducing the water temperature, and allowing the first filter plate to be replaced quickly. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure in an embodiment of the present utility model;

[0015] Figure 2 This is a cross-sectional view of an embodiment of the present utility model;

[0016] Figure 3 This is a schematic diagram of the connection structure between the spiral cylinder and the sliding column in an embodiment of this utility model;

[0017] Figure 4 This is a schematic diagram of the internal structure of the heat dissipation box and the fixing box in the embodiment of this utility model.

[0018] In the diagram: 1. Cooling pool; 2. Top plate; 3. Spray plate; 4. Spray pipe; 5. Rotary trough; 6. Spiral drum; 7. Spiral column; 8. Motor; 9. Pulley; 10. Transmission belt; 11. Cleaning plate; 12. Sliding column; 13. Electric telescopic mechanism; 14. Push plate; 15. Sealing plate; 16. Connecting column; 17. Drain pump; 18. Drain hose; 19. Heat sink; 20. Fixing box; 21. Fixing plate; 22. Spring; 23. Sliding rod; 24. First filter plate; 25. Inlet fan; 26. Exhaust fan; 27. Waterproof plate; 28. Second filter plate. Detailed Implementation

[0019] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings. It should be noted that these descriptions are for the purpose of aiding understanding of this utility model, but do not constitute a limitation thereof. Furthermore, the technical features involved in the various embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.

[0020] Example 1:

[0021] Please see Figure 1-4 This utility model provides a technical solution: a spray cooling pool, including a cooling pool 1, a top plate 2 fixed to the upper end of the cooling pool 1, a spray plate 3 installed at the lower end of the top plate 2, a spray pipe 4 provided at the upper end of the spray plate 3, a rotating groove 5 opened at the upper end of the top plate 2, a spiral cylinder 6 rotatably arranged inside the rotating groove 5, a spiral column 7 arranged inside the spiral cylinder 6, a motor 8 fixed to one side of the upper end of the top plate 2, a pulley 9 fixed to the upper end of the motor 8, a transmission belt 10 installed on the inner side of the pulley 9, a cleaning plate 11 fixed to the lower end of the spiral column 7, a sliding column 12 fixed to one side of the upper end of the cleaning plate 11, an electric telescopic machine 13 fixed to one end of the cooling pool 1, a push plate 14 installed at one end of the electric telescopic machine 13, sealing plates 15 sliding on both sides inside the cooling pool 1, a connecting column 16 fixed to one end of the sealing plate 15, a drain pump 17 arranged near the upper side on one side of the cooling pool 1, and drain hoses 18 fixed on both sides of the drain pump 17.

[0022] The pulley 9 is rotatably connected to the spiral cylinder 6 via the spiral column 7, and the cleaning plate 11 is slidably connected to the cooling pool 1.

[0023] The sliding column 12 penetrates the top plate 2, and the sliding column 12 is slidably connected to the top plate 2.

[0024] The cooling pool 1 is slidably connected to the sealing plate 15, and the sealing plate 15 is fixedly connected to the push plate 14.

[0025] Specifically, when it is necessary to clean the inner wall and bottom of the cooling pool 1, the positive start motor 8 drives the pulley 9 to rotate. As the pulley 9 rotates, it drives the transmission belt 10 to rotate, which in turn drives the spiral drum 6 to rotate on the top plate 2. The spiral drum 6 then drives the spiral column 7 to move downwards, causing the spiral column 7 to push the cleaning plate 11 downwards inside the cooling pool 1. At this time, the sliding column 12 moves along with the cleaning plate 11, thereby cleaning the inner wall of the cooling pool 1 and causing the dirt inside the cooling pool 1 to fall to the bottom. After cleaning, the reverse start motor 8 causes the spiral column 7 to drive the cleaning plate 11 back to its original position. Then, the forward start electric telescopic motor 13 pushes the push plate 14 to one side. The push plate 14 then pulls the sealing plate 15 to slide inside the cooling pool 1, causing the sealing plate 15 to push the dirt at the bottom of the cooling pool 1 out of the cooling pool 1. After pushing out, the reverse start electric telescopic motor 13 pushes the sealing plate 15 back to its original position through the push plate 14. This allows the spray cooling pool to quickly clean the inner wall and bottom of the cooling pool 1, improving the cleaning efficiency of the cooling pool 1.

[0026] Example 2:

[0027] Please see Figure 1-4 This utility model provides a technical solution: a spray cooling pool, wherein heat dissipation boxes 19 are fixed on the upper sides of both sides of the cooling pool 1, a fixing box 20 is fixed to one end of the heat dissipation box 19, a fixing plate 21 is installed inside the fixing box 20, a plurality of sliding rods 23 are fixed to one end of the fixing box 20, a plurality of springs 22 are provided at one end of the fixing plate 21, an inlet fan 25 is provided inside one side of the heat dissipation box 19, an exhaust fan 26 is provided inside the heat dissipation box 19, a first filter plate 24 is slidably passed through the upper end of the heat dissipation box 19, a waterproof plate 27 is fixed inside the cooling pool 1 near the upper side, and a second filter plate 28 is provided inside the upper end of the cooling pool 1.

[0028] One end of the slide rod 23 passes through the fixed plate 21, and the slide rod 23 is slidably connected to the fixed plate 21.

[0029] The fixed plate 21 is slidably connected to the fixed box 20, and there are two springs 22, both of which are located inside the fixed box 20.

[0030] Specifically, when the spray water to be cooled is transmitted to the spray plate 3 through the spray pipe 4 and sprayed downwards, the hot spray water flows into the cooling pool 1 through the second filter plate 28. At this time, the second filter plate 28 filters some impurities in the hot water and blocks external debris. Simultaneously, during spraying, the intake fan 25 and exhaust fan 26 on both sides are activated. The intake fan 25 draws in external air to cool the spray water, and the exhaust fan 26 exhausts the air inside the cooling pool 1, thus forming a circulation to continuously cool the spray water. Then, the first filter plate 24 blocks debris in the external air, and the waterproof plate 27 blocks the water. The system blocks the spray water from contacting the intake fan 25 and exhaust fan 26. Then, it pushes the fixing plate 21, causing it to slide on the slide bar 23 and compress the spring 22, thus removing the obstruction of the fixing plate 21 on the first filter plate 24. The first filter plate 24 is then slid out of the heat sink 19 for replacement. After replacement, the fixing plate 21 is released, and under the elasticity of the spring 22, it fixes the first filter plate 24 that has slid into the heat sink 19. This enhances the heat exchange effect between the air and the spray water in the spray cooling pool, accelerates the transfer of heat from the hot water to the air, thereby more effectively reducing the water temperature and allowing for quick replacement of the first filter plate 24.

[0031] The embodiments of this utility model have been described in detail above with reference to the accompanying drawings, but this utility model is not limited to the described embodiments. For those skilled in the art, various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of this utility model, and these variations still fall within the protection scope of this utility model.

Claims

1. A spray cooling tank, comprising a cooling tank (1), characterized in that: A top plate (2) is fixed to the upper end of the cooling pool (1). A spray plate (3) is installed at the lower end of the top plate (2). A spray pipe (4) is provided at the upper end of the spray plate (3). A rotating groove (5) is opened at the upper end of the top plate (2). A spiral cylinder (6) is rotatably arranged inside the rotating groove (5). A spiral column (7) is arranged inside the spiral cylinder (6). A motor (8) is fixed to one side of the upper end of the top plate (2). A pulley (9) is fixed to the upper end of the motor (8). A transmission belt (10) is installed on the inner side of the pulley (9). The spiral column... (7) has a cleaning plate (11) fixed at its lower end. A sliding column (12) is fixed on one side of the upper end of the cleaning plate (11). An electric telescopic machine (13) is fixed at one end of the cooling pool (1). A push plate (14) is installed at one end of the electric telescopic machine (13). Sealing plates (15) slide on both sides inside the cooling pool (1). A connecting column (16) is fixed at one end of the sealing plate (15). A drain pump (17) is installed on one side of the cooling pool (1) near the upper side. Drain hoses (18) are fixed on both sides of the drain pump (17).

2. The spray cooling tank according to claim 1, characterized in that: The pulley (9) is rotatably connected to the spiral cylinder (6) via the spiral column (7), and the cleaning plate (11) is slidably connected to the cooling pool (1).

3. The spray cooling tank according to claim 1, characterized in that: The sliding column (12) penetrates the top plate (2) and is slidably connected to the top plate (2).

4. A spray cooling tank according to claim 2, characterized in that: The cooling pool (1) is slidably connected to the sealing plate (15), and the sealing plate (15) is fixedly connected to the push plate (14).

5. A spray cooling tank according to claim 1, characterized in that: A heat dissipation box (19) is fixed on the upper side of both sides of the cooling pool (1). A fixing box (20) is fixed at one end of the heat dissipation box (19). A fixing plate (21) is installed inside the fixing box (20). Multiple sets of sliding rods (23) are fixed at one end of the fixing box (20). Multiple sets of springs (22) are provided at one end of the fixing plate (21). An intake fan (25) is provided inside the heat dissipation box (19) on one side. An exhaust fan (26) is provided inside the heat dissipation box (19) on the other side. A first filter plate (24) slides through the upper end of the heat dissipation box (19). A waterproof plate (27) is fixed near the upper side inside the cooling pool (1). A second filter plate (28) is provided at the upper end inside the cooling pool (1).

6. A spray cooling tank according to claim 5, characterized in that: One end of the slide rod (23) passes through the fixed plate (21), and the slide rod (23) is slidably connected to the fixed plate (21).

7. A spray cooling tank according to claim 6, characterized in that: The fixing plate (21) is slidably connected to the fixing box (20), and there are two springs (22), both of which are located inside the fixing box (20).