Fog-dissipation water-saving cooling tower

By designing a mist-eliminating and water-saving cooling tower, and utilizing a cooling chamber and water circulation cooling components, the problem of direct water vapor emission from the cooling tower was solved, achieving water resource recycling and improved cooling effect.

CN223940025UActive Publication Date: 2026-02-24ZHUHAI SHENNENG HONGWAN ELECTRICAL POWER CO LTD
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Patent Information

Application Number
CN202520635024.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2026-02-24
Estimated Expiration
2035-04-07

AI Technical Summary

Technical Problem

Existing cooling towers generate a large amount of water vapor during operation, which is directly emitted, affecting the visibility of the surrounding environment and wasting water resources.

Method used

A fog-eliminating and water-saving cooling tower was designed. Through the structure of a cooling chamber, a water circulation cooling component, and a baffle plate, water vapor is circulated, cooled, and cooled. Water vapor is recovered and reused using a water pump, water pipes, and a refrigeration fan.

Benefits of technology

It reduces water waste, improves the cooling effect and uniformity of water vapor, reduces fog emission, and achieves fog elimination and water saving performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a fog dispersal water-saving cooling tower which comprises a cooling tower body, supporting rods are installed at the bottoms of the two sides of the cooling tower body, a cooling bin is installed on one side of the top of the cooling tower body, and an exhaust pipe communicated with the interior of the cooling tower body is arranged on the side, close to the cooling bin, of the top of the cooling tower body. And a return pipe communicated with the top of one side in the cooling tower is arranged in the middle of the bottom of the cooling bin. Through the structural design of the cooling bin, the water pipe, the water storage bin, the refrigeration fan and the water pump, the cooling function of water circulation can be conveniently achieved, water vapor discharged by the cooling tower can be cooled through cooling of water circulation, and water drops generated by cooling of the water vapor can drop to the inner bottom of the cooling bin; and finally, the water can flow back into the cooling tower through the backflow pipe, so that waste of water resources can be reduced, and the function of recycling the water resources in the water vapor in the later period of the cooling tower is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of cooling tower technology, specifically to an anti-fogging and water-saving cooling tower. Background Technology

[0002] A cooling tower is a device that uses water as a circulating coolant to absorb heat from a system and release it into the atmosphere to lower the water temperature. Its cooling effect is achieved by the heat exchange between water and air, which generates steam. The steam evaporates and carries away heat, thus dissipating waste heat generated in industrial processes or refrigeration and air conditioning systems to lower the water temperature and ensure the normal operation of the system. The device is generally barrel-shaped, hence the name cooling tower. Therefore, it is necessary to design a mist-eliminating and water-saving cooling tower.

[0003] Existing cooling towers generate a large amount of water vapor during operation, and most of them currently release the water vapor directly into the air. The direct release of water vapor not only affects the visibility of the surrounding environment, but also carries a large amount of water, resulting in a waste of water resources. Utility Model Content

[0004] The purpose of this utility model is to provide a fog-eliminating and water-saving cooling tower, which solves the problem of direct emission of water vapor from the inside of existing cooling towers. This not only affects the visibility of the surrounding environment, but also carries a large amount of water, resulting in water waste.

[0005] To achieve the above objectives, a defogging and water-saving cooling tower is provided, comprising a cooling tower, support rods installed at the bottom of both sides of the cooling tower, a cooling chamber installed on one side of the top of the cooling tower, an exhaust pipe connected to the interior of the cooling chamber on the side of the top of the cooling tower, a return pipe connected to the top of one side of the interior of the cooling tower at the middle position of the bottom of the cooling chamber, baffles II installed at the top and bottom of the interior of the cooling chamber, exhaust holes II evenly opened on one side of the interior of the two sets of baffles II, a baffle I installed at the middle position of the interior of the cooling chamber, exhaust holes I evenly opened on the side of the baffle I away from the exhaust holes II, and a water circulation cooling component installed on the side of the cooling chamber away from the cooling tower.

[0006] According to the aforementioned anti-fogging and water-saving cooling tower, the water circulation cooling assembly includes a water pump, a water storage tank, a cooling fan, and water pipes. The water storage tank is installed on the side of the cooling tank away from the cooling tower. The water pump is installed on the side of the cooling tank and the top of the water storage tank close to each other. The water pump has a water pipe at its input end, and the water pipe extends into the interior of the cooling tank and communicates with the bottom of the water storage tank through the middle position inside the second baffle plate and the first baffle plate. A cooling fan is installed on the side of the water storage tank away from the cooling tank.

[0007] According to the aforementioned anti-fogging and water-saving cooling tower, symmetrical reinforcing rods are provided at the middle position of the cooling chamber and the water storage chamber on the side close to each other, and the reinforcing rods are connected to the water storage chamber and the cooling chamber, and a set of reinforcing rods has a fixing rod at the bottom that is connected to the support rod.

[0008] According to the aforementioned anti-fogging and water-saving cooling tower, the top and bottom of the water storage tank on the side away from the cooling tank are both equipped with fixing plates, and the bottom of one set of fixing plates and the top of another set of fixing plates are connected to the refrigeration fan, while the bottom of one set of fixing plates is equipped with a reinforcing plate connected to a fixing rod.

[0009] According to the aforementioned anti-fogging and water-saving cooling tower, the top of the cooling chamber and the water storage chamber, which are close to each other, are provided with a mounting plate, and the top of the mounting plate is connected to the bottom of the water pump.

[0010] According to the aforementioned anti-fogging and water-saving cooling tower, both the cooling chamber and the water storage chamber have openings on opposite sides of their tops, and these openings are connected to the interior and exterior of the cooling chamber and the water storage chamber.

[0011] Compared with the prior art, the beneficial effects of this utility model are: through the structural design of the cooling chamber, water pipe, water storage tank, refrigeration fan and water pump, the cooling function of water circulation can be easily realized. The cooling function of water circulation can be used to cool the water vapor discharged from the cooling tower. The cooling of the water vapor can cause it to form water droplets, which then drip to the bottom of the cooling chamber. Finally, it can be returned to the interior of the cooling tower through the return pipe, thereby reducing the waste of water resources and realizing the function of recycling water resources inside the water vapor in the later stage of the cooling tower.

[0012] Meanwhile, through the structural design of the cooling chamber, baffle plate one, exhaust port one, baffle plate two, and exhaust port two, it is easy to limit the flow rate of water vapor in the later stage. By limiting the flow rate of water vapor, the contact time between water vapor and water circulation cooling in the later stage can be increased, thereby improving the cooling quality and uniformity of water vapor in the later stage. Furthermore, the cooling of water vapor in the later stage can also reduce the emission of mist, thus achieving the performance of eliminating mist and saving water.

[0013] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments;

[0015] Figure 1 This is a three-dimensional structural diagram of the cooling chamber of an anti-fogging and water-saving cooling tower according to this utility model;

[0016] Figure 2This is a three-dimensional structural diagram of a defogging and water-saving cooling tower baffle of the present invention;

[0017] Figure 3 This is a three-dimensional structural diagram of a baffle plate 2 for an anti-fogging and water-saving cooling tower according to the present invention;

[0018] Figure 4 This is a front sectional view of a water-saving cooling tower for eliminating fog according to this utility model;

[0019] Figure 5 This is a front sectional view of the cooling chamber of a water-saving cooling tower for eliminating fog, according to this utility model.

[0020] In the diagram: 1. Cooling tower; 2. Support rod; 3. Refrigeration fan; 4. Water tank; 5. Cooling tank; 6. Exhaust pipe; 7. Return pipe; 8. Water pump; 9. Baffle plate one; 10. Exhaust port one; 11. Baffle plate two; 12. Exhaust port two; 13. Water pipe. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0022] Please see Figure 1-5 This utility model provides a technical solution: a fog-eliminating and water-saving cooling tower, including a cooling tower 1, with support rods 2 installed at the bottom of both sides of the cooling tower 1, a cooling chamber 5 installed on one side of the top of the cooling tower 1, an exhaust pipe 6 connected to the interior of the cooling chamber 5 on the side of the top of the cooling tower 1, a return pipe 7 connected to the top of one side of the interior of the cooling tower 1 at the middle position of the bottom of the cooling chamber 5, baffle plates 11 installed at the top and bottom of the interior of the cooling chamber 5, exhaust holes 12 evenly opened on one side of the interior of the two sets of baffle plates 11, a baffle plate 9 installed at the middle position of the interior of the cooling chamber 5, and exhaust holes 10 evenly opened on the side of the baffle plate 9 away from the exhaust holes 12, and a water circulation cooling component installed on the side of the cooling chamber 5 away from the cooling tower 1. This solves the problem of direct emission of water vapor inside the existing cooling tower, which not only affects the visibility of the surrounding environment, but also carries a large amount of water, causing water waste.

[0023] The water circulation cooling assembly includes a water pump 8, a water storage tank 4, a cooling fan 3, and water pipes 13. The water storage tank 4 is installed on the side of the cooling chamber 5 away from the cooling tower 1. The water pump 8 is installed on the side of the cooling chamber 5 and the water storage tank 4 close to each other at the top. The water pump 8 has a water pipe 13 at its input end, and the water pipe 13 extends into the interior of the cooling chamber 5 and is connected to the inner bottom of the water storage tank 4 through the middle position of the baffle plate 11 and baffle plate 9. The cooling fan 3 is installed on the side of the water storage tank 4 away from the cooling chamber 5. Through the aluminum profile design of the water storage tank 4 and the water pipe 13, the cooling process can be improved later. The operation of the cooling fan 3 can cool the coolant inside the water tank 4, ensuring the cooling effect of the coolant in the later stage. Through the aluminum profile design of the water pipe 13, the temperature of the coolant can be transferred to the interior of the cooling chamber 5, which facilitates the cooling of water vapor. The water pump 8 can draw the coolant from the water tank 4 into the water pipe 13. Then, through the connection between the output end of the water pump 8 and the top of the water tank 4, the coolant inside the water pipe 13 can be transferred to the interior of the water tank 4 by the water pump 8, thereby realizing the circulation of the coolant.

[0024] Reinforcing rods are symmetrically arranged at the midpoint of the side where the cooling chamber 5 and the water storage chamber 4 are close to each other. These reinforcing rods are connected to both the water storage chamber 4 and the cooling chamber 5. The bottom of one set of reinforcing rods is equipped with a fixing rod that connects to the support rod 2. The reinforcing rods securely connect the water storage chamber 4 and the cooling chamber 5, while the fixing rods support the installation of the water storage chamber 4 and the cooling chamber 5. Fixing plates are provided at the top and bottom of the side of the water storage chamber 4 away from the cooling chamber 5. The bottom of one set of fixing plates and the top of another set of fixing plates are connected to the refrigeration fan 3. The bottom of one set of fixing plates is connected to the fixing rod. The connecting reinforcement plate, through its design, enables the fixed installation of the refrigeration fan 3 and improves the stability of the subsequent fixed installation of the refrigeration fan 3. The top of the cooling chamber 5 and the water storage chamber 4, which are close to each other, are provided with a mounting plate, and the top of the mounting plate is connected to the bottom of the water pump 8. The design of the mounting plate enables the fixed installation of the water pump 8. The top of the cooling chamber 5 and the water storage chamber 4, which are far apart, are both provided with openings, and the openings are connected to the inside and outside of the cooling chamber 5 and the water storage chamber 4. The design of the openings facilitates the subsequent gas discharge and liquid filling.

[0025] Working principle: During operation, the water vapor generated by the cooling tower 1 enters the interior of the cooling chamber 5 through the exhaust pipe 6. The structural design of the baffle plate 2 11, exhaust hole 2 12, baffle plate 1 9, and exhaust hole 10 can block and slow down the rising speed of the water vapor inside the cooling chamber 5, thereby extending the time of the water vapor flowing at the top inside the cooling chamber 5 and ensuring the quality and uniformity of the water vapor cooling. At the same time, the operation of the water pump 8 can draw the coolant from the water storage tank 4 into the water pipe 13. The water pipe 13 is installed inside the cooling chamber 5, and the coolant inside the water pipe 13 can release cold air into the cooling chamber 5, thereby cooling the water vapor inside the cooling chamber 5. The cooling of the water vapor causes it to liquefy upon contact with the cold, making it easier to drip into water droplets. The water droplets fall to the bottom of the cooling chamber 5 and finally flow back into the cooling tower 1 through the return pipe 7, thereby reducing the waste of water resources and realizing the defogging and water-saving function of the cooling tower 1 in the later stage.

[0026] Finally, the water inside the water pipe 13 can be returned to the water storage tank 4 through the water pump 8, thereby realizing the function of circulating cooling of water vapor. Finally, the operation of the cooling fan 3 can blow air onto the outside of the water storage tank 4. The cold air generated by the cooling fan 3 can cool down the coolant inside the water storage tank 4, so as to keep the coolant inside the water storage tank 4 at a low temperature, which is convenient for cooling water vapor in the later stage.

[0027] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.

Claims

1. A mist-eliminating and water-saving cooling tower, comprising a cooling tower (1), characterized in that, Support rods (2) are installed at the bottom of both sides of the cooling tower (1). A cooling chamber (5) is installed on one side of the top of the cooling tower (1). An exhaust pipe (6) connected to the interior of the cooling chamber (5) is provided on the side of the top of the cooling tower (1) near the cooling chamber (5). A return pipe (7) connected to the top of the interior of the cooling tower (1) is provided at the middle position of the bottom of the cooling chamber (5). Baffle plates (11) are provided at the top and bottom of the interior of the cooling chamber (5). Exhaust holes (12) are evenly opened on one side of the interior of the two sets of baffle plates (11). A baffle plate (9) is provided at the middle position of the interior of the cooling chamber (5). Exhaust holes (10) are evenly opened on the side of the baffle plate (9) away from the exhaust holes (12). A water circulation cooling component is installed on the side of the cooling chamber (5) away from the cooling tower (1).

2. The anti-fogging and water-saving cooling tower as described in claim 1, characterized in that: The water circulation cooling assembly includes a water pump (8), a water storage tank (4), a cooling fan (3), and a water pipe (13). The water storage tank (4) is installed on the side of the cooling chamber (5) away from the cooling tower (1). The water pump (8) is installed on the side of the cooling chamber (5) and the top of the water storage tank (4) close to each other. The input end of the water pump (8) is provided with a water pipe (13), and the water pipe (13) extends into the interior of the cooling chamber (5) and communicates with the bottom of the water storage tank (4) through the middle position inside the baffle plate 2 (11) and the baffle plate 1 (9). The cooling fan (3) is installed on the side of the water storage tank (4) away from the cooling chamber (5).

3. The anti-fogging and water-saving cooling tower as described in claim 1, characterized in that: The cooling chamber (5) and the water storage chamber (4) are symmetrically provided with reinforcing rods at the middle position on the side close to each other, and the reinforcing rods are connected to the water storage chamber (4) and the cooling chamber (5), and the bottom of a set of reinforcing rods is provided with a fixing rod connected to the support rod (2).

4. The anti-fogging and water-saving cooling tower as described in claim 2, characterized in that: The top and bottom of the water storage tank (4) on the side away from the cooling tank (5) are both equipped with fixing plates, and the bottom of one set of fixing plates and the top of another set of fixing plates are connected to the refrigeration fan (3), while the bottom of one set of fixing plates is equipped with a reinforcing plate connected to the fixing rod.

5. A mist-eliminating and water-saving cooling tower as described in claim 1, characterized in that: The cooling chamber (5) and the water storage chamber (4) are provided with a mounting plate on the top of the side closest to each other, and the top of the mounting plate is connected to the bottom of the water pump (8).

6. The anti-fogging and water-saving cooling tower as described in claim 1, characterized in that: Both the cooling chamber (5) and the water storage chamber (4) have openings on opposite sides of their tops, and these openings are connected to the interior and exterior of the cooling chamber (5) and the water storage chamber (4).