Condensation fog-dissipation water-saving module

By installing water-saving demisting components and knocking components in the cooling tower, the problems of water collector blockage and water waste are solved, achieving efficient cooling and water recycling, and improving the stability and economy of the cooling tower.

CN223882794UActive Publication Date: 2026-02-06ZHEJIANG KEFENG COOLING TOWER CO LTD
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Patent Information

Application Number
CN202520272942.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2026-02-06
Estimated Expiration
2035-02-20

AI Technical Summary

Technical Problem

In existing cooling towers, the water collector is prone to scale buildup due to the adhesion of small water droplets, which can cause blockages, affect its use, and result in serious water waste.

Method used

It adopts water-saving demisting components and knocking components. Moisture is adsorbed by fiber membrane, cold water is sprayed from nozzles to cool the gas, and a fan is used to promote gas circulation. The knocking components on the water collector shake off water droplets, and water resources are recycled through the water collection tank.

Benefits of technology

It effectively removes scale from the water collector, improves the operational stability of the cooling tower, reduces water waste, and enhances heat exchange efficiency and system economy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cooling towers, in particular to a condensation fog-dissipation water-saving module which comprises a cooling tower main body, a water-saving fog-dissipation assembly used for cooling and demisting gas is arranged in the cooling tower main body, and a gas outlet is formed in the top of the cooling tower main body. And a fiber membrane for further adsorbing moisture in exhausted gas is mounted in the gas outlet. According to the device, through the arrangement of a beating assembly, when the device is used, a driving motor drives a cam to rotate, a beating rod is extruded and pushed, then a connecting plate and a water collector are driven to move synchronously, and in the process, water drops attached to the water collector can be vibrated off; the problems of incrustation and the like caused by the fact that water drops are attached to the water collector for a long time are solved, loose dirt on the surface of the water collector can be removed, complexity and time cost of cleaning work are reduced, smooth operation of a cooling tower system is kept, and stability and reliability of the system are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cooling tower technical field, concretely is a kind of condensation fog elimination water-saving module. BACKGROUND

[0002] Cooling tower is the device that water is used as circulating coolant, from system absorbs heat and discharges to atmosphere, to reduce water temperature, when hot air is cooled and discharged from cooling tower, water vapor in it can condense into tiny water droplets, form visible white fog, this not only affects visual effect, also possibly bring certain pollution pressure to surrounding environment;

[0003] In order to reduce the generation of white fog, condensing module is generally installed in traditional cooling tower, water in exhaust gas is condensed into liquid, and the water droplets that condense are collected by water collector, but water collector is generally fixed in cooling tower, only water droplets can be made to fall down by gravity, when water droplet is small, it is easy to adhere to water collector and form scale, cause blockage etc., affect normal use. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of condensation fog elimination water-saving module to solve the problems raised in the above background.

[0005] To achieve the above object, the utility model provides the following technical scheme:

[0006] A kind of condensation fog elimination water-saving module, including cooling tower main body, the water-saving demisting assembly for cooling and demisting gas is arranged in the cooling tower main body, the top of the cooling tower main body is provided with gas outlet, the fiber membrane for further adsorbing humidity in exhaust gas is installed in the gas outlet;

[0007] The water-saving demisting assembly includes filler, the air inlet is arranged on the inner wall of one side of the cooling tower main body, and the air inlet is below the filler, the water collector is arranged in the cooling tower main body and close to the end of gas outlet, the knocking assembly for vibrating and falling water droplets on water collector is arranged in the inner wall of both sides of the cooling tower main body, and the condensing tank is further arranged on the water collector.

[0008] Preferably, the water collecting tank is further installed in the cooling tower main body, the communication box is installed at the bottom of the cooling tower main body, and the communication box is communicated with the water collecting tank, and the water pump is arranged at the water outlet end of the communication box.

[0009] Preferably, two groups of communication plates are further installed in the cooling tower main body, and the communication plates are installed between the filler and the water collector, a plurality of spray heads are installed at the bottom of each group of communication plates, and the water outlet is formed at the bottom of each spray head.

[0010] The water inlet end of two groups of spray heads is communicated with the water pump on the communication box.

[0011] Preferably, the inner wall of the cooling tower body is provided with an adjusting groove on each side, and the adjusting grooves are connected with the inside of the cooling tower body, the knocking assembly is arranged in the adjusting groove, and the two ends of the water collector are provided with sealing plates, the two sealing plates slide on the inner wall of the cooling tower body, and the opposite surfaces of the two sealing plates are fixed with adjacent knocking assemblies.

[0012] Preferably, the knocking assembly comprises a connecting plate, one end of the connecting plate close to the sealing plate is fixed with the adjacent sealing plate, and the bottom of the connecting plate is provided with a reset spring, and the other end of the reset spring is fixed with the bottom of the adjacent adjusting groove.

[0013] The knocking assembly further comprises a driving motor, the driving motor is arranged in the inner wall of the cooling tower body, the output end of the driving motor is fixedly connected with a cam through a shaft coupling, the cam is rotatably connected with the inner wall of the cooling tower body, the upper side of the connecting plate is further provided with a knocking rod, the top of the knocking rod penetrates through the top of the adjacent adjusting groove and extends into the inside of the cooling tower body, and the extending end of the knocking rod is in contact with one end of the cam.

[0014] Preferably, a fan for accelerating gas exhaust is arranged in the gas outlet, and the fan is arranged above the fiber membrane.

[0015] Compared with the prior art, the utility model has the advantages that:

[0016] 1. The utility model discloses a knocking assembly, which is arranged in the cooling tower body, and the knocking assembly is arranged in the adjusting groove.

[0017] 2. The utility model discloses a knocking assembly, which is arranged in the cooling tower body, and the knocking assembly is arranged in the adjusting groove. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1The first view schematic diagram of the utility model;

[0019] Figure 2 The internal structure schematic diagram of the cooling tower main body in the utility model;

[0020] Figure 3 The connection schematic diagram of the cooling tower main body and the water collector in the utility model;

[0021] Figure 4 The structure schematic diagram of the water collector and the knocking assembly in the utility model.

[0022] In the drawing: 1, cooling tower main body;11, air outlet;12, water collecting tank;13, communication box;14, fan;15, adjusting groove;2, water saving and demisting assembly;21, filler;22, communication plate;23, spray head;24, water collector;25, sealing plate;3, fiber membrane;4, knocking assembly;41, connecting plate;42, reset spring;43, driving motor;44, cam;45, knocking rod. DETAILED DESCRIPTION

[0023] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all the other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0024] Embodiment one, please refer to Figures 1-4The utility model provides a kind of condensing fog removal water-saving module, including cooling tower body 1, water-saving demisting assembly 2 for being arranged in cooling tower body 1 for cooling demisting gas, the top of cooling tower body 1 is provided with air outlet 11, fiber membrane 3 for further adsorbing moisture in exhaust gas is installed in air outlet 11, water-saving demisting assembly 2 includes filler 21, the air inlet is provided on the inner wall of one side of cooling tower body 1, and the air inlet is below filler 21, the end close to air outlet 11 in cooling tower body 1 is provided with water collector 24, and knocking assembly 4 for making water drop on water collector 24 vibrate and fall is provided in the inner wall of both sides of cooling tower body 1, condensing tank is further provided on water collector 24, water collecting tank 12 is further installed in cooling tower body 1, communication tank 13 is installed at the bottom of cooling tower body 1, and communication tank 13 is communicated with water collecting tank 12, water pump is provided at the water outlet end of communication tank 13, two groups of communication plates 22 are further installed in cooling tower body 1, and the two groups of communication plates 22 are installed between filler 21 and water collector 24, a plurality of evenly distributed spray heads 23 are installed at the bottom of each group of communication plates 22, and water outlet is formed at the bottom of each spray head 23, and the water inlet end of two groups of spray heads 23 is communicated with water pump on communication tank 13, fan 14 for accelerating gas exhaust is further installed in air outlet 11, and fan 14 is installed above fiber membrane 3;

[0025] In use, first start water pump on communication tank 13 and condensing tank on water collector 24, make cold water in communication tank 13 transport to communication plate 22 and spray out through a plurality of spray heads 23, spray on filler 21, the gas needing to be handled is transported into cooling tower body 1 through air inlet, when gas enters, start fan 14 in air outlet 11, make fan 14 rotate, air circulation in cooling tower body 1 is driven by fan 14 rotation, make the gas entering cooling tower body 1 move upwards, when gas moves upwards, first pass through filler 21, gas is contacted with cold water on filler 21 and exchanges heat, make gas preliminary cooling, gas continues to move upwards and contacts water collector 24 after passing through filler 21, make water in gas condense and concentrate on water collector 24 and collect, after being handled, gas passes through fiber membrane 3 and is exhausted through air outlet 11;

[0026] After the above treatment, water in gas can be removed while cooling gas, and the generation of white fog is reduced.

[0027] Meanwhile, through the arrangement of water collecting tank 12, the water falling on filler 21 can be collected for secondary use, reducing waste, and through the arrangement of knocking assembly 4 on water collector 24, water drops on water collector 24 can be removed as much as possible to avoid scale and the like caused by water drops adhering to water collector 24 for a long time.

[0028] Example two, please refer to Figures 1-4The inner wall of the cooling tower body 1 is provided with an adjusting groove 15 on both sides, and the two adjusting grooves 15 are communicated with the inside of the cooling tower body 1. The knocking assembly 4 is arranged in the adjusting groove 15. The both ends of the water collector 24 are provided with sealing plates 25. The two sealing plates 25 slide on the inner wall of the cooling tower body 1. The opposite surfaces of the two sealing plates 25 are fixed with the adjacent knocking assembly 4. The knocking assembly 4 comprises a connecting plate 41. One end of the connecting plate 41 close to the sealing plate 25 is fixed with the adjacent sealing plate 25. The bottom of the connecting plate 41 is provided with a return spring 42. The other end of the return spring 42 is fixed with the bottom of the adjacent adjusting groove 15. The knocking assembly 4 further comprises a driving motor 43. The driving motor 43 is arranged in the inner wall of the cooling tower body 1. The output end of the driving motor 43 is fixedly connected with a cam 44 through a shaft coupling. The cam 44 is rotatably connected with the inner wall of the cooling tower body 1. The upper side of the connecting plate 41 is further provided with a knocking rod 45. The top of the knocking rod 45 penetrates through the top of the adjacent adjusting groove 15 and extends into the inside of the cooling tower body 1. The extending end of the knocking rod 45 is in contact with one end of the cam 44.

[0029] When the gas is treated, after the gas is discharged through the water collector 24, the driving motor 43 is started to drive the cam 44 to rotate. When the cam 44 rotates, the knocking rod 45 is driven to move up and down. When the cam 44 rotates, the knocking rod 45 is pressed to move downward, so that the knocking rod 45 drives the connecting plate 41 to move downward, and the return spring 42 is compressed. When the cam 44 rotates to be separated from the knocking rod 45, the return spring 42 is reset upward to drive the connecting plate 41 and the knocking rod 45 to move upward. Through the up-and-down movement of the connecting plate 41, the water collector 24 and the sealing plate 25 are synchronously moved. Through the movement of the water collector 24, the water droplets attached to the water collector 24 are shaken off.

[0030] Through the sealing plate 25, when the water collector 24 moves, the sealing plate 25 is always in contact with the inner wall of the cooling tower body 1 and shields the adjusting groove 15, so that the water vapor is prevented from entering the adjusting groove 15.

[0031] Working principle: in use, first start the water pump on the communication box 13 and the condenser on the water collector 24, make the cold water in the communication box 13 transport to the communication plate 22 and spray out through the plurality of spray heads 23, spray on the filler 21, the gas to be treated is transported into the cooling tower main body 1 through the gas inlet, when the gas enters, start the fan 14 in the gas outlet 11, make the fan 14 rotate, circulate the air in the cooling tower main body 1 through the rotation of the fan 14, make the gas in the cooling tower main body 1 move upwards, the gas first contacts the cold water on the filler 21 to exchange heat and preliminarily cool, the gas passes through the filler 21 and continues to move upwards and contacts the water collector 24, condenses the water in the gas through the water collector 24 and collects on the water collector 24, the treated gas passes through the fiber membrane 3 and is discharged through the gas outlet 11;

[0032] When the gas is treated, after the gas passes through the water collector 24 and is discharged, the driving motor 43 is started, the driving motor 43 drives the cam 44 to rotate, when the cam 44 rotates, the knocking rod 45 is pressed and knocked at the same time, the knocking rod 45 moves downwards and pushes the connecting plate 41 to move downwards, the reset spring 42 is compressed, when the cam 44 rotates to be separated from the knocking rod 45, the reset spring 42 rebounds upwards to reset, drives the connecting plate 41 and the knocking rod 45 to move upwards to reset, through the up-down movement of the connecting plate 41, the water collector 24 and the sealing plate 25 move synchronously, the water droplets attached to the water collector 24 are shaken off through the movement of the water collector 24;

[0033] At the same time, through the setting of the water collecting box 12, the water falling on the filler 21 can be collected for secondary use, waste is reduced, and through the setting of the knocking assembly 4 on the water collector 24, the water droplets on the water collector 24 can be removed as much as possible to avoid that the water droplets are attached to the water collector 24 for a long time to cause scale and the like.

[0034] It should be noted that the condenser, water pump and the like in the application are common market devices, which can be selected according to requirements in specific use, and the circuit connection relationship of each device is a simple series connection and parallel connection circuit, there is no innovation point in the circuit connection part, the structure, principle and control mode are known by the technical personnel in the art through a technical manual or known through a conventional experimental method, the technical personnel in the art can easily realize, which belongs to the prior art and will not be described in detail.

[0035] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A condensation fog eliminating water saving module comprising a cooling tower body (1) characterized in that: The cooling tower body (1) is provided with a water-saving demisting assembly (2) for cooling and demisting gas, and the top of the cooling tower body (1) is provided with a gas outlet (11) in which a fiber membrane (3) for further adsorbing moisture in the discharged gas is installed. The water-saving demisting assembly (2) comprises a filler (21), and the cooling tower body (1) is provided with a gas inlet on one side inner wall, which is below the filler (21). The cooling tower body (1) is provided with a water collector (24) at one end near the gas outlet (11). The two side inner walls of the cooling tower body (1) are provided with a knocking assembly (4) for knocking off water droplets on the water collector (24). The water collector (24) is further provided with a condenser.

2. A condensation fog eliminating water saving module as claimed in claim 1 wherein: The cooling tower body (1) is further provided with a water collecting tank (12), and the bottom of the cooling tower body (1) is provided with a communication tank (13) which is in communication with the water collecting tank (12). The water outlet end of the communication tank (13) is provided with a water pump.

3. A condensation fog eliminating water saving module as claimed in claim 2 wherein: The cooling tower body (1) is further provided with two groups of communication plates (22), which are installed between the filler (21) and the water collector (24). The bottom of each group of communication plates (22) is provided with a plurality of evenly distributed spray heads (23), and the bottom of each spray head (23) is provided with a water outlet. The water inlet end of the two groups of spray heads (23) is in communication with the water pump on the communication tank (13).

4. A condensation fog eliminating water saving module as claimed in claim 1 wherein: The inner walls of the two sides of the cooling tower body (1) are further provided with adjusting grooves (15), and the two adjusting grooves (15) are in communication with the inside of the cooling tower body (1). The knocking assembly (4) is arranged in the adjusting groove (15). The two ends of the water collector (24) are provided with sealing plates (25), and the two sealing plates (25) slide on the inner wall of the cooling tower body (1). The opposite surfaces of the two sealing plates (25) are fixed with the adjacent knocking assemblies (4).

5. A condensation fog eliminating water saving module as claimed in claim 4 wherein: The knocking assembly (4) comprises a connecting plate (41), one end of the connecting plate (41) near the sealing plate (25) is fixed with the adjacent sealing plate (25), and the bottom of the connecting plate (41) is provided with a reset spring (42), the other end of the reset spring (42) is fixed with the bottom of the adjacent adjusting groove (15). The knocking assembly (4) further comprises a driving motor (43), which is installed in the inner wall of the cooling tower body (1). The output end of the driving motor (43) is fixedly connected with a cam (44) through a shaft coupling, and the cam (44) is rotatably connected in the inner wall of the cooling tower body (1). The top of the connecting plate (41) is further provided with a knocking rod (45), and the top of the knocking rod (45) penetrates through the top of the adjacent adjusting groove (15) and extends into the inside of the cooling tower body (1). The extension end of the knocking rod (45) is in contact with one end of the cam (44).

6. A condensation fog eliminating water saving module as claimed in claim 1 wherein: The gas outlet (11) is further provided with a fan (14) for accelerating the discharge of gas, and the fan (14) is installed above the fiber membrane (3).