Novel uniform water distribution structure of radiator spraying system

By setting up the structure of water distribution pipe, drainage plate and counter cover in the radiator spray system, the problems of uneven water distribution and aging of fillers are solved, and stable water flow distribution is achieved and manufacturing costs are reduced.

CN223295310UActive Publication Date: 2025-09-02KELVION HEAT EXCHANGERS (CHINA) CO LTD
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Patent Information

Application Number
CN202422103507.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-09-02
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

The existing radiator spray system has problems such as uneven water distribution, easy to cause water and overflow, and accelerated filler aging.

Method used

A water pipe is installed in the diversion sink on the top of the integrated bracket. A water pipe is equipped with a water pipe. A drainage plate is installed in the diversion sink on both sides and a counter-attack cover plate is installed on the top. After the water sprays back from the water pipe to the cover plate, the water flows to the drainage plate and enters the filler area to achieve even water distribution.

Benefits of technology

A uniform and stable water distribution is achieved, avoiding flying water and overflow, slowing down filler aging, reducing manufacturing costs and improving maintenance convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a novel uniform water distribution structure of a radiator spraying system, which relates to the technical field of radiator water distribution structures, and comprises an integrated support, a filler component, a diversion water tank, a water distribution pipe and a water collection disc, the diversion water tank is arranged at the top of the integrated support, the water distribution pipe is arranged in the diversion water tank, and water distribution holes are formed in the water distribution pipe. Drainage plates are arranged in the diversion water tank on two sides of the water distribution pipe; an impact cover plate is arranged at the top of the diversion water tank; according to the utility model, the water distribution pipe fixed by the plurality of hoops is arranged in the diversion water tank at the top of the integrated bracket, the water distribution holes are formed in the water distribution pipe, the drainage plates are arranged in the diversion water tank at the two sides of the water distribution pipe, and the impact cover plate is arranged at the top of the diversion water tank; water from the water distribution holes can be counterattack to the counterattack cover plate, then reach the position of the drainage plate and flow downwards to the filler area along the drainage plate, in the process, water distribution is uniform, water distribution stability is good, the situations of water flying, water overflowing and the like are not prone to occurring, and the problem that filler aging is accelerated due to direct flushing and spraying can be solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of radiator water distribution structures, in particular to a novel uniform water distribution structure of a radiator spray system. Background Art

[0002] The radiator's spray system is a crucial component, particularly in cooling towers and industrial heat dissipation. When the radiator's spray system is operating, the pump starts, drawing cooling water from a source (such as a cooling tower pool) and pipes it to a nozzle. The nozzle atomizes the cooling water into tiny droplets and sprays them evenly onto the radiator's surface or packing. Upon contact with high-temperature components on the radiator's surface or packing, these droplets rapidly evaporate and absorb heat. As the droplets evaporate, a significant amount of heat is removed and released into the air, achieving the desired heat dissipation.

[0003] Currently, radiator spray systems generally use two types: trough type and pipeline direct spray type. Trough type radiator spray systems have high requirements for levelness and water pump flow, making water level difficult to control and prone to uneven water distribution. Pipe direct spray radiator spray systems can easily lead to excessive water collection at the bottom, causing overflow. Directly spraying water onto the spray system's filler can also accelerate filler aging, and excessive water flow rates can increase the risk of water splashing. Therefore, the present invention proposes a new uniform water distribution structure for radiator spray systems to address the shortcomings of the existing technology. Summary of the Invention

[0004] In view of the above problems, the purpose of the present utility model is to provide a new type of uniform water distribution structure for the radiator spray system, by arranging a water distribution pipe fixed by multiple clamps in the diversion water tank on the top of the integrated bracket, by arranging water distribution holes on the water distribution pipe, and arranging drainage plates inside the diversion water tank on both sides of the water distribution pipe and a back-flow cover plate on the top of the diversion water tank. The water coming out of the water distribution holes will back-flow to the back-flow cover plate and then reach the drainage plate position and flow down along the drainage plate to the filler area. During the process, the water distribution is uniform and the water distribution stability is good, and it is not easy to cause water flying, overflowing, etc., which can solve the problem of accelerated filler aging caused by direct spraying.

[0005] To achieve the above objectives, the present invention provides the following technical solutions:

[0006] A novel radiator spray system with uniform water distribution structure includes an integrated bracket, a filler assembly, a diverter trough, a water distribution pipe and a water collecting pan, a filler assembly is provided inside the integrated bracket, a water collecting pan is provided inside the integrated bracket below the filler assembly, a diverter trough is provided on the top of the integrated bracket, a water distribution pipe is provided inside the diverter trough, water distribution holes are provided on the water distribution pipe, diversion plates are provided inside the diverter troughs on both sides of the water distribution pipe, a backlash cover is provided on the top of the diverter trough, a clamp is provided inside the diverter trough, multiple groups of clamps are provided, the water distribution pipe is installed inside the diverter trough through multiple groups of clamps, a water inlet quick-connect interface is provided on the side wall of the integrated bracket at one end of the diverter trough, and one end of the water distribution pipe is connected to the water inlet quick-connect interface.

[0007] A further improvement is that: there are multiple water distribution holes, and the multiple water distribution holes are equidistantly arranged in the middle of the top of the water distribution pipe.

[0008] A further improvement is that: there are multiple water distribution holes, and the multiple water distribution holes are divided into two groups and symmetrically arranged on both sides of the top of the water distribution pipe.

[0009] Further improvements are: the integrated bracket includes a first support frame body, a second support frame body and a third support frame body, the first support frame body is a rectangular plate, the second support frame body and the third support frame body are both triangular plates, a second support frame body is provided at both ends of the top of the first support frame body, a third support frame body is provided on the first support frame body between the two groups of the second support frames, and the third support frame body is provided in multiple groups.

[0010] Further improvements are: the filling assembly includes a filling bracket and a filling support, the filling bracket is provided inside the water collecting tray, the filling bracket is provided in multiple groups, filling supports are symmetrically provided between the second support frame and the third support frame and between adjacent third support frames, the two groups of filling supports are located above the filling bracket, a filling area is formed between the filling bracket and the filling support, and filler is provided in the filling area.

[0011] A further improvement is that the guide plate includes a straight plate and an inclined plate, the lower end of the straight plate is provided with an inclined plate, and the straight plate and the inclined plate are an integrally formed structure.

[0012] The beneficial effects of the utility model are as follows: the utility model provides a water distribution pipe fixed by a plurality of clamps in the diversion water tank at the top of the integrated bracket, provides water distribution holes on the water distribution pipe, and provides drainage plates inside the diversion water tank on both sides of the water distribution pipe and a back-flow cover plate on the top of the diversion water tank. Water coming out of the water distribution holes will back-flow to the back-flow cover plate and then reach the position of the drainage plate and flow down to the filler area along the drainage plate. During the process, the water distribution is uniform and stable, and it is not easy to cause water splashing or overflowing, which can solve the problem of accelerated filler aging caused by direct spraying.

[0013] The structure of the utility model can save manufacturing costs, saves a lot of sheet metal structures and other material requirements compared to structures such as trough types, and is convenient for disassembly and maintenance. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a partial three-dimensional schematic diagram of the structure of the utility model;

[0015] Figure 2 This is a side view schematic diagram of the water distribution hole arrangement structure in Example 1 of the present utility model;

[0016] Figure 3 It is a side view schematic diagram of the water distribution hole arrangement structure in the second embodiment of the present utility model.

[0017] Among them: 1. Integrated bracket; 101. First support frame; 102. Second support frame; 103. Third support frame; 2. Filler assembly; 201. Filler bracket; 202. Filler bracket; 203. Filler area; 3. Diversion trough; 4. Water distribution pipe; 5. Water collection tray; 6. Water distribution hole; 7. Drain plate; 8. Counterattack cover; 9. Clamp; 10. Water inlet quick connect interface. DETAILED DESCRIPTION

[0018] In order to deepen the understanding of the present invention, the present invention will be further described in detail below in conjunction with embodiments. The embodiments are only used to explain the present invention and do not constitute a limitation on the scope of protection of the present invention. Example 1

[0019] according to Figure 1 、 2As shown, this embodiment proposes a novel uniform water distribution structure for a radiator spray system, comprising an integrated bracket 1, a filler assembly 2, a diverter trough 3, a water distribution pipe 4, and a water collection tray 5. The integrated bracket 1 is provided with a filler assembly 2, and a water collection tray 5 is provided inside the integrated bracket 1 below the filler assembly 2. The top of the integrated bracket 1 is provided with a diverter trough 3, and a water distribution pipe 4 is provided inside the diverter trough 3. The water distribution pipe 4 is provided with water distribution holes 6. Drain plates 7 are provided inside the diverter trough 3 on both sides of the water distribution pipe 4. A backlash cover 8 is provided on the top of the diverter trough 3. A clamp 9 is provided inside the diverter trough 3. There are multiple sets of clamps 9. The water distribution pipe 4 is installed inside the diverter trough 3 through the multiple sets of clamps 9. A water inlet quick-connect interface 10 is provided on the side wall of the integrated bracket 1 at one end of the diverter trough 3. One end of the water distribution pipe 4 is connected to the water inlet quick-connect interface 10. There are multiple water distribution holes 6, and the multiple water distribution holes 6 are equidistantly arranged in the middle of the top of the water distribution pipe 4. When the uniform water distribution structure of the present invention distributes water, water enters the water distribution pipe 4 and then flows out from the multiple water distribution holes 6 equidistantly arranged in the middle of the top of the water distribution pipe 4. The water first goes vertically upward to touch the inner side of the impact cover 8, then changes the direction of movement from the impact cover 8 to flow to the guide plate 7, and then flows along the guide plate 7 to the position of the filler assembly 2.

[0020] The integrated bracket 1 includes a first support frame body 101, a second support frame body 102 and a third support frame body 103. The first support frame body 101 is a rectangular plate, the second support frame body 102 and the third support frame body 103 are both triangular plates, and the second support frame body 102 is provided at both ends of the top of the first support frame body 101. The third support frame body 103 is provided on the first support frame body 101 between the two groups of the second support frame bodies 102, and there are multiple groups of the third support frame body 103.

[0021] The filling assembly 2 includes a filling bracket 201 and a filling support 202. The filling bracket 201 is provided inside the water collecting tray 5. The filling bracket 201 is provided in multiple groups. Filling supports 202 are symmetrically provided between the second support frame 102 and the third support frame 103 and between adjacent third support frames 103. The two groups of filling supports 202 are both located above the filling bracket 201. A filling area 203 is formed between the filling bracket 201 and the filling support 202, and filler is provided in the filling area 203.

[0022] The guide plate 7 includes a straight plate and an inclined plate, and the lower end of the straight plate is provided with an inclined plate. The straight plate and the inclined plate are an integrally formed structure. By configuring the guide plate 7 to be composed of a straight plate and an inclined plate, the water flow can be buffered and completely introduced into the position of the filler assembly 2. Example 2

[0023] according to Figure 1 、3 As shown, this embodiment proposes a novel uniform water distribution structure for a radiator spray system, comprising an integrated bracket 1, a filler assembly 2, a diverter trough 3, a water distribution pipe 4, and a water collection tray 5. The integrated bracket 1 is provided with a filler assembly 2, and a water collection tray 5 is provided inside the integrated bracket 1 below the filler assembly 2. The top of the integrated bracket 1 is provided with a diverter trough 3, and a water distribution pipe 4 is provided inside the diverter trough 3. The water distribution pipe 4 is provided with water distribution holes 6. Drain plates 7 are provided inside the diverter trough 3 on both sides of the water distribution pipe 4. A counterattack cover 8 is provided on the top of the diverter trough 3. A clamp 9 is provided inside the diverter trough 3. There are multiple groups of clamps 9. The water distribution pipe 4 is installed inside the diverter trough 3 through the multiple groups of clamps 9. A water inlet quick-connect interface 10 is provided on the side wall of the integrated bracket 1 at one end of the diverter trough 3. One end of the water distribution pipe 4 is connected to the water inlet quick-connect interface 10. There are multiple water distribution holes 6, which are divided into two groups and symmetrically arranged on both sides of the top of the water distribution pipe 4. When the uniform water distribution structure of the present invention distributes water, water enters the water distribution pipe 4 and then flows out from the multiple water distribution holes 6 symmetrically arranged on both sides of the top of the water distribution pipe 4. The water will directly contact the drainage plate 7, which will buffer and control the flow direction, and then flow along the drainage plate 7 to the position of the filler component 2.

[0024] The integrated bracket 1 includes a first support frame body 101, a second support frame body 102 and a third support frame body 103. The first support frame body 101 is a rectangular plate, the second support frame body 102 and the third support frame body 103 are both triangular plates, and the second support frame body 102 is provided at both ends of the top of the first support frame body 101. The third support frame body 103 is provided on the first support frame body 101 between the two groups of the second support frame bodies 102, and there are multiple groups of the third support frame body 103.

[0025] The filling assembly 2 includes a filling bracket 201 and a filling support 202. The filling bracket 201 is provided inside the water collecting tray 5. The filling bracket 201 is provided in multiple groups. Filling supports 202 are symmetrically provided between the second support frame 102 and the third support frame 103 and between adjacent third support frames 103. The two groups of filling supports 202 are both located above the filling bracket 201. A filling area 203 is formed between the filling bracket 201 and the filling support 202, and filler is provided in the filling area 203.

[0026] The guide plate 7 includes a straight plate and an inclined plate. The lower end of the straight plate is provided with an inclined plate. The straight plate and the inclined plate are an integrally formed structure.

[0027] The utility model sets a water distribution pipe 4 fixed by multiple clamps 9 in the diversion trough 3 on the top of the integrated bracket 1, sets water distribution holes 6 on the water distribution pipe 4, and sets drainage plates 7 inside the diversion trough 3 on both sides of the water distribution pipe 4 and sets a back-attack cover plate 8 on the top of the diversion trough 3. Water coming out of the water distribution holes 6 will back-attack to the back-attack cover plate 8 and then reach the position of the drainage plate 7 and flow down to the filler area 203 along the drainage plate 7. During the process, the water distribution is uniform and stable, and it is not easy to cause water flying or overflow, which can solve the problem of accelerated filler aging due to direct spraying. The utility model structure can save manufacturing costs, saves a lot of sheet metal structures and other material requirements compared to structures such as troughs, and is easy to disassemble and maintain.

[0028] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements are intended to fall within the scope of the present invention. The scope of protection claimed in this invention is defined by the appended claims and their equivalents.

Claims

1. A new type of radiator spray system uniform water distribution structure, characterized by: The invention comprises an integrated bracket (1), a filler assembly (2), a diversion water trough (3), a water distribution pipe (4) and a water collecting tray (5), wherein the integrated bracket (1) is provided with a filler assembly (2), the integrated bracket (1) below the filler assembly (2) is provided with a water collecting tray (5), the top of the integrated bracket (1) is provided with a diversion water trough (3), the diversion water trough (3) is provided with a water distribution pipe (4), the water distribution pipe (4) is provided with a water distribution hole (6), and the water distribution pipe (4) has two sides. A diversion trough (3) is provided with a guide plate (7) inside, a counterattack cover (8) is provided on the top of the diversion trough (3), a clamp (9) is provided inside the diversion trough (3), and a plurality of clamps (9) are provided. The water distribution pipe (4) is installed inside the diversion trough (3) through the plurality of clamps (9). A water outlet quick-connect interface (10) is provided on the side wall of the integrated bracket (1) at one end of the diversion trough (3), and one end of the water distribution pipe (4) is connected to the water outlet quick-connect interface (10).

2. The novel uniform water distribution structure of the radiator spray system according to claim 1 is characterized by: There are a plurality of water distribution holes (6), and the plurality of water distribution holes (6) are equidistantly arranged in the middle of the top of the water distribution pipe (4).

3. The novel uniform water distribution structure of the radiator spray system according to claim 1 is characterized by: A plurality of water distribution holes (6) are provided, and the plurality of water distribution holes (6) are divided into two groups and symmetrically arranged on both sides of the top of the water distribution pipe (4).

4. A novel uniform water distribution structure for a radiator spray system according to claim 2 or 3, characterized in that: The integrated bracket (1) comprises a first support frame body (101), a second support frame body (102) and a third support frame body (103), wherein the first support frame body (101) is a rectangular plate, the second support frame body (102) and the third support frame body (103) are both triangular plates, the second support frame bodies (102) are provided at both ends of the top of the first support frame body (101), the third support frame body (103) is provided on the first support frame body (101) between two groups of the second support frame bodies (102), and the third support frame body (103) is provided in multiple groups.

5. The novel uniform water distribution structure of the radiator spray system according to claim 4 is characterized by: The packing assembly (2) includes a packing bracket (201) and a packing support (202). The water collecting tray (5) is provided with a packing bracket (201). The packing bracket (201) is provided in multiple groups. The packing brackets (202) are symmetrically provided between the second support frame (102) and the third support frame (103) and between adjacent third support frames (103). The two groups of packing supports (202) are both located above the packing bracket (201). A packing area (203) is formed between the packing bracket (201) and the packing support (202), and packing is provided in the packing area (203).

6. The novel uniform water distribution structure of the radiator spray system according to claim 5 is characterized by: The guide plate (7) comprises a straight plate and an inclined plate, the inclined plate is provided at the lower end of the straight plate, and the straight plate and the inclined plate are an integrally formed structure.