Industrial tower packing cooling device

By introducing filtration and cleaning mechanisms into the industrial tower filler cooling device, the problem of impurities in the air entering the cooling water is solved, the cooling efficiency and quality are improved, and the service life of the filler is extended.

CN222824852UActive Publication Date: 2025-05-02SHANDONG SHIHUA NEW MATERIALS CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421467772.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-25
Publication Date
2025-05-02
Estimated Expiration
2034-06-25

AI Technical Summary

Technical Problem

In the existing industrial tower filler cooling technology, impurities in the air enter the cooling water, affecting the quality of the cooling water and reducing the durability of the filler.

Method used

An industrial tower filler cooling device is designed, including a cooling mechanism, a water distribution mechanism, an exhaust mechanism, a filter mechanism, a cleaning mechanism and an auxiliary cleaning mechanism. The intake air is filtered through the filter mechanism, and the cleaning mechanism drives the auxiliary cleaning mechanism to clean the filter mechanism to reduce the pollution of impurities on the cooling water.

Benefits of technology

It effectively reduces the pollution of cooling water by impurities in the air, improves cooling efficiency and quality, and extends the service life of the filler.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222824852U_ABST
    Figure CN222824852U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of industrial tower packing cooling, in particular to an industrial tower packing cooling device, which reduces the influence of impurities in air on cooling water and improves the cooling efficiency and quality. Comprising a cooling mechanism; the water distribution mechanism is installed in the cooling mechanism, the exhaust mechanism is installed on the cooling mechanism, the filtering mechanism is installed on the side wall of the cooling mechanism, the cleaning mechanism is installed on the filtering mechanism, and the auxiliary cleaning mechanism is installed on the filtering mechanism; cooling water is cooled through the cooling mechanism, the cooling water is evenly sprayed into the cooling mechanism through the water distribution mechanism, steam in the cooling mechanism is exhausted through the exhaust mechanism, inlet air is filtered through the filtering mechanism, and the cleaning mechanism drives the auxiliary cleaning mechanism to clean the filtering mechanism.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of industrial tower filler cooling, in particular to an industrial tower filler cooling device. Background Art

[0002] A cooling tower is a device that uses water as a circulating coolant to discharge heat into the atmosphere to lower the water temperature. It uses the flow of water and air to exchange heat and generate steam. The steam evaporates and takes away the heat to achieve evaporative heat dissipation. The device is generally barrel-shaped, hence the name cooling tower. Currently, there are many types of cooling towers, among which the square water cooling tower is an important heat exchange equipment in the industrial field. It uses air inlet on both sides and a fan on the top to allow air to pass through the filler in the cooling tower to exchange the medium with hot water, and the hot and humid air is then discharged out of the tower.

[0003] In the existing industrial tower packing cooling technology, for example, the prior art with application number CN202211130390.5, it includes a frame, a cooling space, an air inlet, a fan, a packing assembly, a circulating water assembly, a water collecting part, a water leakage groove, a first packing part, a second packing part, a water leakage hole, a water storage tank, a water spray part and a drainage part, etc. By moving the drainage part, it is movably arranged in the water storage tank, and the water in the water storage tank is discharged by movement, and the discharged water can flow along the V-shaped inclined surface to the water collecting part. Since the water collecting part has a water leakage groove, the water in the water collecting part will all return to the hot water below the cooling space, which is convenient for subsequent circulation operations, further improving the circulation efficiency, and improving the cooling effect.

[0004] However, the air contains a large amount of impurities. When the air is taken in, the impurities enter the cooling water, affecting the quality of the cooling water and reducing the durability of the packing. Utility Model Content

[0005] In order to solve the above technical problems, the utility model provides an industrial tower packing cooling device which reduces the influence of impurities in the air on cooling water and improves the cooling efficiency and quality.

[0006] The utility model discloses an industrial tower packing cooling device, which comprises a cooling mechanism; a water distribution mechanism, an exhaust mechanism, a filtering mechanism, a cleaning mechanism and an auxiliary cleaning mechanism. The water distribution mechanism is installed in the cooling mechanism, the exhaust mechanism is installed on the cooling mechanism, the filtering mechanism is installed on the side wall of the cooling mechanism, the cleaning mechanism is installed on the filtering mechanism, and the auxiliary cleaning mechanism is installed on the filtering mechanism. The cooling water is cooled by the cooling mechanism, the cooling water is sprayed evenly in the cooling mechanism by the water distribution mechanism, the exhaust mechanism discharges the water vapor in the cooling mechanism, the filtering mechanism filters the intake air, and the cleaning mechanism drives the auxiliary cleaning mechanism to clean the filtering mechanism. The cooling water is cooled by the cooling mechanism, the cooling water is sprayed evenly in the cooling mechanism by the water distribution mechanism, the exhaust mechanism discharges the water vapor in the cooling mechanism, and the outside air is added into the cooling mechanism to improve the quality and efficiency of heat dissipation, the filtering mechanism filters the intake air to reduce the pollution of the cooling water by impurities, and the cleaning mechanism drives the auxiliary cleaning mechanism to clean the filtering mechanism to improve the practicality.

[0007] Preferably, the cooling mechanism includes a tower body and a filler, and the filler is installed on the inner wall of the tower body; the contact time between cooling water and air is increased by the filler, thereby improving the heat dissipation efficiency.

[0008] Preferably, the water distribution mechanism includes a first mounting frame, a rotating cylinder, a water spray pipe, a nozzle, a water pump and a water guide pipe, the first mounting frame is mounted on the inner wall of the tower body, the first mounting frame is located at the top of the filler, the rotating cylinder is rotatably mounted on the first mounting frame, the water spray pipe is mounted on the bottom end of the rotating cylinder, the nozzle is mounted on the water spray pipe, the nozzle is tilted, the water pump is mounted on the outer wall of the tower body, one end of the water guide pipe is mounted on the water pump, and the other end of the water guide pipe is rotatably mounted on the top of the rotating cylinder; by turning on the water pump, the cooling water in the tower body is added to the rotating cylinder through the water guide pipe, and then the cooling water is added to the water spray pipe through the rotating cylinder and sprayed out through the nozzle. Since the nozzle is tilted, the rotating cylinder is driven to rotate by the reaction force, and then the cooling water is evenly sprayed on the filler, thereby improving the heat dissipation efficiency.

[0009] Preferably, the exhaust mechanism includes a wind tube, a second mounting frame, fan blades and a first motor, the wind tube is mounted on the top of the tower body, the second mounting frame is mounted on the inner wall of the wind tube, the fan blades are rotatably mounted on the second mounting frame, the first motor is mounted on the second mounting frame, and the output end of the first motor is connected to the fan blades; the fan blades are driven to rotate by turning on the first motor, and then the outside air is driven into the tower body through the filtering mechanism through the rotation of the fan blades, and the steam in the tower body is discharged at the same time.

[0010] Preferably, the filtering mechanism includes an air intake cylinder and a filter plate, the air intake cylinder is installed on the outer wall of the tower body, and the filter plate is installed on the inner wall of the air intake cylinder; by turning on the first motor to drive the fan blades to rotate, the outside air enters the tower body through the air intake cylinder through the rotation of the fan blades, and at the same time the steam in the tower body is discharged, and the air is filtered through the filter plate to reduce the impact of impurities on the cooling water.

[0011] Preferably, the cleaning mechanism includes a lead screw, a guide rod, a threaded block, a sliding block, a rotating shaft and a second motor. The lead screw is rotatably mounted on the inner wall of the air intake cylinder, the guide rod is mounted on the inner wall of the air intake cylinder, the threaded block is mounted on the lead screw through a threaded relationship, the sliding block is slidably mounted on the guide rod, the rotating shaft is rotatably mounted on the threaded block and the sliding block, the second motor is mounted on the top of the air intake cylinder, and the output end of the second motor is connected to the lead screw; the lead screw is driven to rotate by turning on the second motor, and then the sliding block is driven to slide on the guide rod through the threaded relationship, thereby adjusting the cleaning position of the auxiliary cleaning mechanism.

[0012] Preferably, the auxiliary cleaning mechanism includes a cleaning brush, a slider, a gear and a rack. A slide groove is provided on the side wall of the air intake cylinder, the cleaning brush is mounted on the rotating shaft, the slider is slidably mounted in the slide groove of the side wall of the air intake cylinder, the rotating shaft is rotatably mounted on the slider, the gear is mounted on the rotating shaft, the rack is mounted on the outer wall of the air intake cylinder, and the rack is meshed with the gear; the lead screw is driven to rotate by turning on the second motor, and then the sliding block is driven to slide on the guide rod through the threaded relationship, thereby driving the slider to slide in the slide groove, and the rotating shaft is driven to rotate through the meshing relationship between the rack and the gear, thereby driving the cleaning brush to clean the filter plate.

[0013] Compared with the prior art, the utility model has the following beneficial effects: cooling water is cooled by the cooling mechanism, cooling water is evenly sprayed in the cooling mechanism by the water distribution mechanism, water vapor in the cooling mechanism is discharged by the exhaust mechanism, and outside air is added into the cooling mechanism to improve the quality and efficiency of heat dissipation, the filtering mechanism filters the intake air to reduce the pollution of cooling water by impurities, and the cleaning mechanism drives the auxiliary cleaning mechanism to clean the filtering mechanism to improve practicality. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a first axonometric structural schematic diagram of the utility model;

[0015] Figure 2 It is a second axonometric structural schematic diagram of the utility model;

[0016] Figure 3 It is a schematic diagram of the first front section axonometric structure of the utility model;

[0017] Figure 4 It is a second front cross-sectional structural schematic diagram of the utility model;

[0018] Figure 5 The utility model Figure 2 A schematic diagram of the enlarged structure at A in the middle;

[0019] Markings in the accompanying drawings: 01, cooling mechanism; 11, tower body; 12, filler; 02, water distribution mechanism; 21, first mounting frame; 22, rotating cylinder; 23, water spray pipe; 24, nozzle; 25, water pump; 26, water guide pipe; 03, exhaust mechanism; 31, air cylinder; 32, second mounting frame; 33, fan blade; 34, first motor; 04, filtering mechanism; 41, air intake cylinder; 42, filter plate; 05, cleaning mechanism; 51, screw; 52, guide rod; 53, threaded block; 54, sliding block; 55, rotating shaft; 56, second motor; 06, auxiliary cleaning mechanism; 61, cleaning brush; 62, slider; 63, gear; 64, rack. DETAILED DESCRIPTION

[0020] In order to facilitate the understanding of the utility model, the utility model will be described more comprehensively below with reference to the relevant drawings. The utility model can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive.

[0021] Example 1

[0022] like Figure 3 and Figure 4 As shown, an industrial tower packing cooling device includes a cooling mechanism 01, a water distribution mechanism 02, an exhaust mechanism 03, a filtering mechanism 04, a cleaning mechanism 05 and an auxiliary cleaning mechanism 06, wherein the water distribution mechanism 02 is installed in the cooling mechanism 01, the exhaust mechanism 03 is installed on the cooling mechanism 01, the filtering mechanism 04 is installed on the side wall of the cooling mechanism 01, the cleaning mechanism 05 is installed on the filtering mechanism 04, and the auxiliary cleaning mechanism 06 is installed on the filtering mechanism 04;

[0023] The cooling water is cooled by the cooling mechanism 01, and the cooling water is evenly sprayed in the cooling mechanism 01 by the water distribution mechanism 02. The exhaust mechanism 03 discharges the water vapor in the cooling mechanism 01, and the filter mechanism 04 filters the intake air. The cleaning mechanism 05 drives the auxiliary cleaning mechanism 06 to clean the filter mechanism 04.

[0024] The cooling mechanism 01 includes a tower body 11 and a filler 12, wherein the filler 12 is installed on the inner wall of the tower body 11;

[0025] The water distribution mechanism 02 includes a first mounting frame 21, a rotating cylinder 22, a water spray pipe 23, a nozzle 24, a water pump 25 and a water guide pipe 26. The first mounting frame 21 is mounted on the inner wall of the tower body 11, and the first mounting frame 21 is located at the top of the filler 12. The rotating cylinder 22 is rotatably mounted on the first mounting frame 21. The water spray pipe 23 is mounted on the bottom end of the rotating cylinder 22. The nozzle 24 is mounted on the water spray pipe 23, and the nozzle 24 is installed obliquely. The water pump 25 is mounted on the outer wall of the tower body 11, one end of the water guide pipe 26 is mounted on the water pump 25, and the other end of the water guide pipe 26 is rotatably mounted on the top end of the rotating cylinder 22.

[0026] The exhaust mechanism 03 includes a wind tube 31, a second mounting frame 32, a fan blade 33 and a first motor 34. The wind tube 31 is mounted on the top of the tower body 11, the second mounting frame 32 is mounted on the inner wall of the wind tube 31, the fan blade 33 is rotatably mounted on the second mounting frame 32, the first motor 34 is mounted on the second mounting frame 32, and the output end of the first motor 34 is connected to the fan blade 33;

[0027] The contact time between cooling water and air is increased by the filler 12, and the efficiency of heat dissipation is improved. The cooling water in the tower body 11 is added to the rotating cylinder 22 through the water pipe 26 by turning on the water pump 25, and then the cooling water is added to the water spray pipe 23 through the rotating cylinder 22 and sprayed out through the nozzle 24. Since the nozzle 24 is inclined, the rotating cylinder 22 is driven to rotate by the reaction force, and the cooling water is evenly sprayed on the filler 12 to improve the efficiency of heat dissipation. The fan blades 33 are driven to rotate by turning on the first motor 34, and then the outside air is brought into the tower body 11 through the air intake pipe 41 through the rotation of the fan blades 33. At the same time, the steam in the tower body 11 is discharged, and the air is filtered through the filter plate 42 to reduce the influence of impurities on the cooling water. The cleaning mechanism 05 drives the auxiliary cleaning mechanism 06 to clean the filter mechanism 04 to improve practicality.

[0028] Example 2

[0029] like Figure 3 and Figure 5 As shown, an industrial tower packing cooling device includes a cooling mechanism 01, a water distribution mechanism 02, an exhaust mechanism 03, a filtering mechanism 04, a cleaning mechanism 05 and an auxiliary cleaning mechanism 06, wherein the water distribution mechanism 02 is installed in the cooling mechanism 01, the exhaust mechanism 03 is installed on the cooling mechanism 01, the filtering mechanism 04 is installed on the side wall of the cooling mechanism 01, the cleaning mechanism 05 is installed on the filtering mechanism 04, and the auxiliary cleaning mechanism 06 is installed on the filtering mechanism 04;

[0030] The cooling water is cooled by the cooling mechanism 01, and the cooling water is evenly sprayed in the cooling mechanism 01 by the water distribution mechanism 02. The exhaust mechanism 03 discharges the water vapor in the cooling mechanism 01, and the filter mechanism 04 filters the intake air. The cleaning mechanism 05 drives the auxiliary cleaning mechanism 06 to clean the filter mechanism 04.

[0031] The filter mechanism 04 includes an air inlet cylinder 41 and a filter plate 42. The air inlet cylinder 41 is mounted on the outer wall of the tower body 11, and the filter plate 42 is mounted on the inner wall of the air inlet cylinder 41.

[0032] The cleaning mechanism 05 includes a lead screw 51, a guide rod 52, a threaded block 53, a sliding block 54, a rotating shaft 55 and a second motor 56. The lead screw 51 is rotatably mounted on the inner wall of the air intake cylinder 41, the guide rod 52 is mounted on the inner wall of the air intake cylinder 41, the threaded block 53 is mounted on the lead screw 51 through a threaded relationship, the sliding block 54 is slidably mounted on the guide rod 52, the rotating shaft 55 is rotatably mounted on the threaded block 53 and the sliding block 54, the second motor 56 is mounted on the top end of the air intake cylinder 41, and the output end of the second motor 56 is connected to the lead screw 51;

[0033] The auxiliary cleaning mechanism 06 includes a cleaning brush 61, a slider 62, a gear 63 and a rack 64. A slide groove is provided on the side wall of the air intake cylinder 41. The cleaning brush 61 is mounted on the rotating shaft 55. The slider 62 is slidably mounted in the slide groove of the side wall of the air intake cylinder 41. The rotating shaft 55 is rotatably mounted on the slider 62. The gear 63 is mounted on the rotating shaft 55. The rack 64 is mounted on the outer wall of the air intake cylinder 41, and the rack 64 is meshed with the gear 63.

[0034] The cooling water is cooled by the cooling mechanism 01, and the cooling water is evenly sprayed in the cooling mechanism 01 by the water distribution mechanism 02. The exhaust mechanism 03 discharges the water vapor in the cooling mechanism 01, and adds the outside air into the cooling mechanism 01 to improve the quality and efficiency of heat dissipation. The filter mechanism 04 filters the intake air to reduce the pollution of impurities to the cooling water. The second motor 56 is turned on to drive the lead screw 51 to rotate, and then the sliding block 54 is driven to slide on the guide rod 52 through the threaded relationship, and then the slider 62 is driven to slide in the slide groove. The rotating shaft 55 is driven to rotate through the meshing relationship between the rack 64 and the gear 63, and then the cleaning brush 61 is driven to clean the filter plate 42.

[0035] like Figures 1 to 5As shown, the utility model is an industrial tower packing cooling device. When it is working, the contact time between cooling water and air is increased through the packing 12, so as to improve the heat dissipation efficiency. By turning on the water pump 25, the cooling water in the tower body 11 is added to the rotating cylinder 22 through the water pipe 26, and then the cooling water is added to the water spray pipe 23 through the rotating cylinder 22, and sprayed out through the nozzle 24. Since the nozzle 24 is inclined, the rotating cylinder 22 is driven to rotate by the reaction force, and then the cooling water is evenly sprayed on the packing 12, so as to improve the heat dissipation efficiency. By turning on the first motor 34 The fan blades 33 are driven to rotate, and then the outside air is introduced into the tower body 11 through the air inlet pipe 41 through the rotation of the fan blades 33, and the steam in the tower body 11 is discharged at the same time, and the air is filtered through the filter plate 42 to reduce the influence of impurities on the cooling water. The lead screw 51 is driven to rotate by turning on the second motor 56, and then the sliding block 54 is driven to slide on the guide rod 52 through the threaded relationship, and then the slider 62 is driven to slide in the slide groove, and the rotating shaft 55 is driven to rotate through the meshing relationship between the rack 64 and the gear 63, and then the cleaning brush 61 is driven to clean the filter plate 42.

[0036] The water pump 25, the first motor 34 and the second motor 56 of the utility model are purchased on the market, and technicians in the industry only need to install and operate them according to the accompanying instruction manuals, without the need for technicians in the field to make creative efforts.

[0037] The main functions achieved by the utility model are: in the process of cooling the industrial tower filler, the influence of impurities in the air on the cooling water is reduced, and the cooling efficiency and quality are improved.

[0038] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principle of the present invention. These improvements and modifications should also be regarded as the protection scope of the present invention.

Claims

1. An industrial tower packing cooling device, comprising a cooling mechanism (01); characterized in that: It also includes a water distribution mechanism (02), an exhaust mechanism (03), a filtering mechanism (04), a cleaning mechanism (05) and an auxiliary cleaning mechanism (06); the water distribution mechanism (02) is installed in the cooling mechanism (01); the exhaust mechanism (03) is installed on the cooling mechanism (01); the filtering mechanism (04) is installed on the side wall of the cooling mechanism (01); the cleaning mechanism (05) is installed on the filtering mechanism (04); and the auxiliary cleaning mechanism (06) is installed on the filtering mechanism (04); The cooling mechanism (01) cools down the cooling water and evenly sprays the cooling water in the cooling mechanism (01) through the water distribution mechanism (02); the exhaust mechanism (03) discharges the water vapor in the cooling mechanism (01); the filtering mechanism (04) filters the intake air; and the cleaning mechanism (05) drives the auxiliary cleaning mechanism (06) to clean the filtering mechanism (04).

2. An industrial tower packing cooling device as claimed in claim 1, characterized in that: The cooling mechanism (01) comprises a tower body (11) and a filler (12), wherein the filler (12) is installed on the inner wall of the tower body (11).

3. An industrial tower packing cooling device as claimed in claim 2, characterized in that: The water distribution mechanism (02) comprises a first mounting frame (21), a rotating cylinder (22), a water spray pipe (23), a nozzle (24), a water pump (25) and a water guide pipe (26). The first mounting frame (21) is mounted on the inner wall of the tower body (11), the first mounting frame (21) is located at the top of the filler (12), the rotating cylinder (22) is rotatably mounted on the first mounting frame (21), the water spray pipe (23) is mounted at the bottom end of the rotating cylinder (22), the nozzle (24) is mounted on the water spray pipe (23), the nozzle (24) is tiltedly mounted, the water pump (25) is mounted on the outer wall of the tower body (11), one end of the water guide pipe (26) is mounted on the water pump (25), and the other end of the water guide pipe (26) is rotatably mounted on the top end of the rotating cylinder (22).

4. An industrial tower packing cooling device as claimed in claim 2, characterized in that: The exhaust mechanism (03) comprises a wind tube (31), a second mounting frame (32), a fan blade (33) and a first motor (34); the wind tube (31) is mounted on the top of the tower body (11); the second mounting frame (32) is mounted on the inner wall of the wind tube (31); the fan blade (33) is rotatably mounted on the second mounting frame (32); the first motor (34) is mounted on the second mounting frame (32); and the output end of the first motor (34) is connected to the fan blade (33).

5. An industrial tower packing cooling device as claimed in claim 2, characterized in that: The filtering mechanism (04) comprises an air intake cylinder (41) and a filter plate (42); the air intake cylinder (41) is mounted on the outer wall of the tower body (11), and the filter plate (42) is mounted on the inner wall of the air intake cylinder (41).

6. An industrial tower packing cooling device as claimed in claim 5, characterized in that: The cleaning mechanism (05) comprises a lead screw (51), a guide rod (52), a threaded block (53), a sliding block (54), a rotating shaft (55) and a second motor (56), wherein the lead screw (51) is rotatably mounted on the inner wall of the air intake cylinder (41), the guide rod (52) is mounted on the inner wall of the air intake cylinder (41), the threaded block (53) is mounted on the lead screw (51) through a threaded relationship, the sliding block (54) is slidably mounted on the guide rod (52), the rotating shaft (55) is rotatably mounted on the threaded block (53) and the sliding block (54), the second motor (56) is mounted on the top end of the air intake cylinder (41), and the output end of the second motor (56) is connected to the lead screw (51).

7. An industrial tower packing cooling device as claimed in claim 5, characterized in that: The auxiliary cleaning mechanism (06) comprises a cleaning brush (61), a slider (62), a gear (63) and a rack (64). A slide groove is arranged on the side wall of the air intake cylinder (41). The cleaning brush (61) is mounted on the rotating shaft (55). The slider (62) is slidably mounted in the slide groove of the side wall of the air intake cylinder (41). The rotating shaft (55) is rotatably mounted on the slider (62). The gear (63) is mounted on the rotating shaft (55). The rack (64) is mounted on the outer wall of the air intake cylinder (41). The rack (64) is meshed with the gear (63).