Energy-saving circulating water treatment equipment

CN224646700UActive Publication Date: 2026-08-18GUIZHOU CHENGQIAN TECH DEV CO LTD
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Patent Information

Application Number
CN202521821682.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-26
Publication Date
2026-08-18
Estimated Expiration
2035-08-26

AI Technical Summary

Technical Problem

[0006]本实用新型的目的在于提供一种节能型循环水处理设备,以解决上述背景技术中提出的传统循环水处理设备核心运行组件几乎完全依赖外接电网供电,使得设备运行成本与电价波动直接挂钩,长期使用下来能源消耗总量居高不下,难以适配当前低碳发展需求的问题

Benefits of technology

[0014]与现有技术相比,本实用新型的有益效果是:该一种节能型循环水处理设备,光伏板通过第三连接杆安装在可旋转的安装架上,伸缩杆采用形状记忆合金,其热变形阈值设为15℃温差,当伸缩杆受热伸长时,推动齿条向前滑动,通过齿轮与齿条的啮合传动,带动安装架顺时针转动,当伸缩杆遇冷收缩时,齿条反向滑动,光伏板复位至最佳追光角度,整个过程无需电机驱动,仅依赖环境温差实现,直接为设备核心运行组件供电,从源头减少对传统电网的依赖,既大幅降低了长期运行的能源消耗总量,又通过清洁能源替代减少了化石能源间接消耗产生的碳排放。

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Abstract

The utility model relates to a circulating water treatment equipment related technical field especially, relates to a kind of energy-saving circulating water treatment equipment, including base, the upper end of the base is provided with stand, the upper end of the stand is fixedly installed with jar body, the upper end of the jar body is provided with end cap, the end cap upper end is fixedly installed with mounting seat, the upper end of the mounting seat is provided with telescopic link, the front end of the telescopic link is fixedly installed with first connecting rod, the right end of the first connecting rod is fixedly installed with rack, photovoltaic panel is installed on rotatable mounting bracket by third connecting rod, telescopic link adopts shape memory alloy, when telescopic link is heated and lengthens, rack is pushed and slides forward, drives mounting bracket to rotate clockwise by the meshing transmission of gear and rack, when telescopic link shrinks when cold, rack reversely slides, photovoltaic panel resets to best light-seeking angle, entire process does not need motor drive, only relies on environmental temperature difference to realize, directly power supply for equipment core operating component.
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Description

Technical Field

[0001] This utility model relates to the technical field of circulating water treatment equipment, and in particular to an energy-saving circulating water treatment equipment. Background Technology

[0002] With the dual-carbon goals and the deep penetration of the circular economy concept, the technological upgrading of industrial and civil circulating water systems has focused on the coordinated development of efficiency improvement, energy optimization, and sustainable operation. Currently, circulating water treatment equipment is evolving towards integration and modularization, but there is still room for expansion in terms of the depth of new energy integration, the accuracy of dynamic adaptation, and the synergistic efficiency of functions. Although existing equipment has begun to explore multiple paths in terms of energy supply, the utilization of environmental energy is mostly at the auxiliary level, and an efficient matching mechanism with the core energy consumption of the equipment has not yet been formed.

[0003] Traditional circulating water treatment equipment relies almost entirely on external power grids for its core operating components, making the equipment's operating costs directly linked to electricity price fluctuations. Over the long term, this results in persistently high total energy consumption, making it difficult to meet the current needs of low-carbon development.

[0004] To address the aforementioned issues, a search revealed a patent with publication number CN222505054U that discloses an energy-saving circulating water filtration system. The patent states that "this energy-saving circulating water filtration system can clean the inner wall of the cooling tower using two scrapers, preventing dirt buildup and affecting heat exchange efficiency, thus maintaining the cleanliness of the cooling tower and improving its cooling effect." However, this system relies entirely on motor drive, resulting in high energy consumption during long-term operation.

[0005] In light of this, in-depth research into the aforementioned issues led to the creation of this case. Utility Model Content

[0006] The purpose of this utility model is to provide an energy-saving circulating water treatment device to solve the problem mentioned in the background art that the core operating components of traditional circulating water treatment devices almost entirely rely on external power grids for power supply, making the equipment operating costs directly linked to electricity price fluctuations, resulting in high total energy consumption over long-term use and making it difficult to meet the current low-carbon development needs.

[0007] To achieve the above objectives, this utility model provides the following technical solution: an energy-saving circulating water treatment device, comprising a base, a column at the upper end of the base, a tank body fixedly mounted at the upper end of the column, an end cover at the upper end of the tank body, a mounting base fixedly mounted at the upper end of the end cover, a telescopic rod at the upper end of the mounting base, a first connecting rod fixedly mounted at the front end of the telescopic rod, a rack fixedly mounted at the right end of the first connecting rod, a second connecting rod at the upper end of the end cover, a gear sleeved on the outer ring of the second connecting rod, a mounting frame fixedly mounted at the upper end of the second connecting rod, a third connecting rod fixedly mounted through both ends of the mounting frame, a photovoltaic panel sleeved on the outer ring of the third connecting rod, a cooling water spray pipe corridor connected to the lower end of the end cover, and a circulating cooling pipe on the inner wall of the tank body.

[0008] Preferably, a battery is embedded in the inner side of the mounting base, and the battery is connected to the photovoltaic panel via wires.

[0009] Preferably, the circulating cooling pipe is coiled in a serpentine shape around the inner wall of the tank, and both ends of the circulating cooling pipe penetrate the side wall of the tank and extend to the outside.

[0010] Preferably, a liquid outlet hopper is fixedly installed at the lower end of the tank, and a screen is fixedly installed at the upper end of the liquid outlet hopper.

[0011] Preferably, the upper end of the screen is provided with a rotating shaft, the upper end of the rotating shaft is provided with a protective shell, the inner side of the protective shell is provided with a motor, the outer ring of the rotating shaft is provided with a stirring block, the left end of the rotating shaft is fixedly installed with a fourth connecting rod, and the left end of the fourth connecting rod is fixedly installed with a scraper.

[0012] Preferably, a drive motor is provided at the upper end of the mounting bracket, and the output end of the drive motor is connected to a belt via a synchronous pulley. The belt is connected to a third connecting rod via another set of synchronous pulleys.

[0013] Preferably, an air outlet pipe is provided at the right end of the tank, and a fan is provided on the inner side of the air outlet pipe.

[0014] Compared with existing technologies, the beneficial effects of this utility model are as follows: This energy-saving circulating water treatment equipment uses photovoltaic panels mounted on a rotatable mounting frame via a third connecting rod. The telescopic rod is made of shape memory alloy with a thermal deformation threshold set at a temperature difference of 15°C. When the telescopic rod is heated and elongates, it pushes the rack forward. Through the meshing transmission of the gear and rack, the mounting frame is driven to rotate clockwise. When the telescopic rod is cooled and contracts, the rack slides in the opposite direction, and the photovoltaic panel returns to the optimal tracking angle. The entire process does not require motor drive and relies solely on the ambient temperature difference to directly power the core operating components of the equipment. This reduces dependence on the traditional power grid from the source, significantly reducing the total energy consumption for long-term operation and reducing carbon emissions from the indirect consumption of fossil fuels through clean energy substitution. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall appearance and structure of the present utility model; Figure 2 This is a schematic diagram of the interaction between the mounting frame and the photovoltaic panel of this utility model; Figure 3 This is a schematic diagram of the structure of the tank body and the circulating cooling pipe of this utility model. Figure 4 This is a schematic diagram of the interaction between the rotating shaft and the scraper of this utility model.

[0016] In the diagram: 1. Base; 2. Column; 3. Tank body; 4. End cap; 5. Mounting base; 6. Telescopic rod; 7. First connecting rod; 8. Rack; 9. Second connecting rod; 10. Gear; 11. Mounting frame; 12. Third connecting rod; 13. Photovoltaic panel; 14. Cooling water spray pipe gallery; 15. Circulating cooling pipe; 16. Liquid outlet hopper; 17. Screen; 18. Rotating shaft; 19. Protective shell; 20. Stirring block; 21. Fourth connecting rod; 22. Scraper; 23. Drive motor; 24. Belt; 25. Air outlet pipe; 26. Fan. Detailed Implementation

[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0018] Please see Figure 1-4This utility model provides a technical solution: an energy-saving circulating water treatment device, including a base 1, a column 2 at the upper end of the base 1, a tank 3 fixedly installed at the upper end of the column 2, an end cover 4 at the upper end of the tank 3, an mounting base 5 fixedly installed at the upper end of the end cover 4, a telescopic rod 6 at the upper end of the mounting base 5, a first connecting rod 7 fixedly installed at the front end of the telescopic rod 6, a rack 8 fixedly installed at the right end of the first connecting rod 7, a second connecting rod 9 at the upper end of the end cover 4, a gear 10 sleeved on the outer ring of the second connecting rod 9, an mounting frame 11 fixedly installed at the upper end of the second connecting rod 9, a third connecting rod 12 fixedly installed through both ends of the mounting frame 11, a photovoltaic panel 13 sleeved on the outer ring of the third connecting rod 12, a cooling water spray pipe corridor 14 connected to the lower end of the end cover 4, and a circulating cooling pipe 15 installed on the inner wall of the tank 3.

[0019] Furthermore, a battery is embedded inside the mounting base 5, and the battery is connected to the photovoltaic panel 13 via wires. The photovoltaic panel 13 is model MC-270P. The photovoltaic panel 13 is mounted on the rotatable mounting frame 11 via the third connecting rod 12. With the help of the thermal deformation characteristics of the telescopic rod 6, the angle can be adaptively adjusted through the meshing transmission of the rack 8 and the gear 10 without the need for motor drive, so as to always maintain the best light-chasing posture to maximize the capture of solar energy. The generated electrical energy is transmitted to the battery in the mounting base 5 for storage via wires.

[0020] Furthermore, the circulating cooling pipe 15 is coiled in a serpentine shape around the inner wall of the tank 3. Both ends of the circulating cooling pipe 15 penetrate the side wall of the tank 3 and extend to the outside. The arrangement of the circulating cooling pipe 15 greatly increases the contact area with the water. Combined with the circulation path formed by its two ends penetrating the tank and extending to the outside, the heat exchange efficiency is significantly improved, and the cooling effect of the equipment on the circulating water is enhanced.

[0021] Furthermore, a liquid outlet hopper 16 is fixedly installed at the lower end of the tank body 3, and a screen 17 is fixedly installed at the upper end of the liquid outlet hopper 16. The screen 17 effectively intercepts suspended impurities and particulate matter in the water, preventing them from entering the liquid outlet hopper 16 and subsequent pipelines with the water flow and causing blockage.

[0022] Furthermore, a rotating shaft 18 is provided at the upper end of the screen 17, and a protective shell 19 is provided at the upper end of the rotating shaft 18. A motor is provided inside the protective shell 19. A stirring block 20 is sleeved on the outer ring of the rotating shaft 18. A fourth connecting rod 21 is fixedly installed at the left end of the rotating shaft 18, and a scraper 22 is fixedly installed at the left end of the fourth connecting rod 21. With the setting of the scraper 22, it can rotate synchronously around the inner wall of the tank 3 under the drive of the rotating shaft 18. By using the contact between the scraper 22 and the tank wall, the scale, impurities and other dirt attached to the tank wall are scraped off in real time, so as to avoid the accumulation of dirt during long-term operation and affect the heat exchange efficiency of the circulating cooling pipe 15.

[0023] Furthermore, a drive motor 23 is provided at the upper end of the mounting bracket 11. The output end of the drive motor 23 is connected to the belt 24 via a synchronous pulley. The belt 24 is connected to the third connecting rod 12 via another set of synchronous pulleys. Through the setting of the belt 24, the power is transmitted to the belt 24 via the synchronous pulleys, and then the belt 24 drives the third connecting rod 12 to rotate, thereby driving the photovoltaic panel 13 to adjust its angle.

[0024] Furthermore, an exhaust pipe 25 is provided at the right end of the tank body 3, and a fan 26 is provided inside the exhaust pipe 25. With the fan 26, when the circulating cooling pipe 15 exchanges heat with the spray cooling water, the fan can discharge the high-temperature water vapor generated inside the tank due to heat exchange in a timely manner through the exhaust pipe 25.

[0025] Working principle: The photovoltaic panel 13 is mounted on the rotatable mounting frame 11 via the third connecting rod 12. The telescopic rod 6 is made of shape memory alloy with a thermal deformation threshold of 15°C temperature difference. When the ambient temperature difference reaches the threshold, the telescopic rod 6 elongates when heated or contracts when cooled. This causes the rack 8 to slide via the first connecting rod 7, which in turn drives the gear 10 and the second connecting rod 9 to rotate, thus achieving adaptive adjustment of the angles of the mounting frame 11 and the photovoltaic panel 13. The electrical energy generated by the photovoltaic panel 13 is transmitted via wires to the battery in the mounting base 5 for storage, powering the core components. The circulating water to be cooled is injected into the serpentine circulating cooling pipe 15. The cooling water spray pipe corridor 14 at the lower end of the end cover 4 sprays the cooling water evenly onto the outer surface of the circulating cooling pipe 15, achieving cooling of the circulating water through heat exchange. The serpentine structure significantly increases the heat exchange area and improves cooling efficiency. The motor drives the rotating shaft 18 to rotate, which in turn drives the stirring block 20 on the outer ring to stir the cooling water in the tank 3, preventing impurities from settling. At the same time, the rotating shaft 18 drives the scraper 22 to rotate around the inner wall of the tank 3 through the fourth connecting rod 21, which scrapes away the scale and impurities attached to the tank wall in real time, so as to avoid affecting the heat exchange effect of the circulating cooling pipe 15. The treated water is filtered by the screen 17 at the upper end of the liquid outlet hopper 16, and the impurities are intercepted and discharged. In the air outlet pipe 25 at the right end of the tank 3, the fan 26 runs to discharge the high temperature water vapor generated by heat exchange in time, accelerate the air convection in the tank 3, and enhance heat dissipation. The drive motor 23 on the mounting bracket 11 drives the belt 24 through the synchronous pulley. The belt 24 drives the third connecting rod 12 to rotate through another set of synchronous pulleys, which helps to adjust the angle of the photovoltaic panel 13 to ensure that it is always in the best light-tracking posture.

[0026] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An energy-saving circulating water treatment device, comprising a base (1), characterized in that: The upper end of the base (1) is provided with a column (2), the upper end of the column (2) is fixedly installed with a tank (3), the upper end of the tank (3) is provided with an end cap (4), the upper end of the end cap (4) is fixedly installed with a mounting base (5), the upper end of the mounting base (5) is provided with a telescopic rod (6), the front end of the telescopic rod (6) is fixedly installed with a first connecting rod (7), the right end of the first connecting rod (7) is fixedly installed with a rack (8), the upper end of the end cap (4) is provided with a second connecting rod (9), the outer ring of the second connecting rod (9) is fitted with a gear (10), the upper end of the second connecting rod (9) is fixedly installed with a mounting bracket (11), both ends of the mounting bracket (11) are fixedly installed with a third connecting rod (12), the outer ring of the third connecting rod (12) is fitted with a photovoltaic panel (13), the lower end of the end cap (4) is connected to a cooling water spray pipe gallery (14), and the inner wall of the tank (3) is provided with a circulating cooling pipe (15).

2. The energy-saving circulating water treatment equipment according to claim 1, characterized in that: The mounting base (5) is fitted with a battery on its inner side, and the battery is connected to the photovoltaic panel (13) via a wire.

3. The energy-saving circulating water treatment equipment according to claim 1, characterized in that: The circulating cooling pipe (15) is coiled in a serpentine shape around the inner wall of the tank (3), and the two ends of the circulating cooling pipe (15) penetrate the side wall of the tank (3) and extend to the outside.

4. The energy-saving circulating water treatment equipment according to claim 1, characterized in that: A liquid outlet hopper (16) is fixedly installed at the lower end of the tank (3), and a screen (17) is fixedly installed at the upper end of the liquid outlet hopper (16).

5. The energy-saving circulating water treatment equipment according to claim 4, characterized in that: The upper end of the screen (17) is provided with a rotating shaft (18), the upper end of the rotating shaft (18) is provided with a protective shell (19), the inner side of the protective shell (19) is provided with a motor, the outer ring of the rotating shaft (18) is provided with a stirring block (20), the left end of the rotating shaft (18) is fixedly installed with a fourth connecting rod (21), and the left end of the fourth connecting rod (21) is fixedly installed with a scraper (22).

6. The energy-saving circulating water treatment equipment according to claim 5, characterized in that: The upper end of the mounting bracket (11) is provided with a drive motor (23). The output end of the drive motor (23) is connected to the belt (24) through a synchronous pulley. The belt (24) is connected to the third connecting rod (12) through another set of synchronous pulleys.

7. The energy-saving circulating water treatment equipment according to claim 1, characterized in that: An air outlet pipe (25) is provided at the right end of the tank (3), and a fan (26) is provided on the inner side of the air outlet pipe (25).

Citation Information

Patent Citations

  • Energy-saving circulating water filtering treatment equipment

    CN222505054U