Modular combined low-noise cooling tower
Through the modular combined design and adaptive locking structure, the cumbersome assembly and inconvenient disassembly of the cooling tower in different environments are solved, and the convenient assembly and rapid disassembly of the cooling tower is achieved, reducing noise and improving practicality.
Patent Information
- Application Number
- CN202510858495.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-25
- Publication Date
- 2025-08-15
AI Technical Summary
When existing cooling towers need to be modularly assembled in different processing environments, they are cumbersome to assemble and inconvenient to disassemble, and have limitations in use.
The modular combined design is adopted, and the adaptive locking structure and quick disassembly structure are used to realize the lateral movement and quick positioning of the cooling tower body through reserved support components and prefabricated guide rollers. Combined with the adaptive positioning and quick disassembly structure of nested docking movable parts and transverse reserved locating parts, it realizes convenient assembly and disassembly.
It realizes convenient modular assembly and rapid disassembly of cooling towers under different processing environments, reducing noise, improving the practicality and operating efficiency of the device.
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Figure CN120488794A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of cooling towers, in particular to a modular combined low-noise cooling tower. Background Art
[0002] A cooling tower is an evaporative heat dissipation device that reduces water temperature through heat exchange between water and air. It is widely used in the fields of industry and refrigeration. Therefore, the quality of the cooling tower determines the quality of the evaporative heat dissipation. For example, patent number CN2573980Y describes a horizontal blast cooling tower, which aims to provide a cooling tower with uniform water distribution and high heat exchange efficiency. The key technical features are: a fan is vertically mounted on the underside of the tower, with an air inlet louver installed on the outside of the fan duct; an air chamber is formed between the bracket and the bottom of the tower, and a guide plate is installed in the air chamber; a filler is mounted on the bracket, and a nozzle is located above the filler, connected to the water inlet pipe; and a square rotary duct is installed on the top of the tower. Another example is the patent with announcement number CN211084885U, which discloses a noise reduction device for a cooling tower, comprising a box body and a water outlet. The water outlet is fixedly connected to the bottom end of the box body, the inner wall of the bottom end of the box body is welded with a bottom plate, and the upper end of the bottom plate is welded with a diversion block, the upper ends of the four groups of diversion blocks are welded with a cross bar, and the upper ends of the cross bars are welded with a guide rod, the guide rods all pass through the bottom end of the water collection tank, and the top ends of the cross bars are all welded to the water collection tank. After the liquid hits the blades, the blades transmit the force to the outer shell, and the outer shell rotates through the bearing to rotate the blades. The rotation of the blades cushions the impact of water droplets, alleviates the sound generated by water droplets hitting the blades, and improves the practicality of the device. At the same time, by pressing the button, the button causes the spring to undergo elastic deformation, so that the spring moves out of the hole opened on the surface of the fixed rod, and then the blades are pulled to remove the connecting rod from the fixed rod, making it easier to replace the blades. For example, the patent with announcement number CN211120836U discloses a cooling tower wind direction adjustment device, comprising a support column, a rear end cover hinged at the bottom end of the rear side of the support column, vents at the middle positions of the three faces of the support column and the middle position of the rear end cover, and three sets of fan blades are connected to the upper, middle and lower uniform bearings on the support column and the rear end cover on both sides of the vent, both ends of the fan blades are fitted with pulleys inside the support column and the rear end cover, belts are fitted on the outer walls of the upper, middle and lower pulleys, the lower sides of the outer ends of the fan blades at the upper ends of the four faces are fixedly connected with pull ropes, the rear ends of the four pull ropes extend to the middle position of the rear end of the rear end cover, and the inner ends of the four pull ropes are fixedly connected with plastic plates. This prevents the outside airflow from entering the cooling zone, reduces the evaporation of the water retained in the cooling zone, and reduces the waste of water resources and the cost of water use in northern regions. Most of the above-mentioned existing technologies have improved their overall structure. During operation, the existing cooling towers are mostly fixed installation structures. In different processing environments, multiple cooling towers need to be adapted for modular assembly. The docking assembly is cumbersome and the disassembly is not convenient, which leads to certain limitations in use. Summary of the Invention
[0003] The purpose of the present invention is to provide a modular combined low-noise cooling tower to solve the problem that most of the above-mentioned background technologies are fixed installation structures, and in different processing environments, multiple cooling towers need to be adapted for modular assembly processing, and their docking and assembly are cumbersome and disassembly is not convenient enough.
[0004] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a modular combined low-noise cooling tower, comprising a reserved support assembly, wherein a cooling tower body is provided at the upper end of the reserved support assembly; a prefabricated guide roller is installed at the lower end of the cooling tower body, and the prefabricated guide roller is docked with the inner side of the reserved support assembly, and the cooling tower body is symmetrically provided with two docking seals on the left and right sides about the upper end of the reserved support assembly, and a first docking seal is fixedly connected to the surface of the cooling tower body on the right side, and a second docking seal is fixedly connected to the surface of the cooling tower body on the left side, and an adaptive locking structure is provided between the first docking seal and the second docking seal, and the cooling tower bodies are combined with each other through the adaptive locking structure.
[0005] Furthermore, the adaptive locking structure is provided with a nested docking movable part, and the nested docking movable part is docked on the inner side of the first docking seal, and a reserved accommodating groove is opened on the inner side of the first docking seal. A transverse reserved positioning part is nested and installed on the outer side of the nested docking movable part, and the transverse reserved positioning parts are docked with the inner side of the nested docking movable part through a spring, and the transverse reserved positioning part is arranged on the inner side of the reserved accommodating groove.
[0006] Furthermore, the inner side of the second docking seal is fixedly connected to a fixed docking rod, and the outer side of the fixed docking rod is fixedly connected to a fixed barrier, and the fixed barrier is in contact with the transverse reserved positioning piece, and the fixed barrier is a truncated cone structure.
[0007] Furthermore, the first butt seal and the second butt seal on the outside of the cooling tower body are adaptively positioned by a transverse reserved positioning piece, and the first butt seal and the second butt seal are arranged to fit each other during the positioning process.
[0008] Furthermore, the cooling tower body forms a transverse sliding structure along the upper end of the reserved support assembly through a prefabricated guide roller, the nested docking movable part forms a sliding structure along the inner side of the first docking seal, and two vertically movable transverse reserved positioning parts are symmetrically arranged on the outer side of the nested docking movable part.
[0009] Furthermore, the nested docking movable member drives the transverse reserved positioning member to move until it contacts the fixed barrier member to form a locking structure.
[0010] Furthermore, a quick-release structure is provided on the outer side of the first docking seal, and the cooling tower bodies in the combined state can be quickly disassembled through the quick-release structure; the quick-release structure is provided with a movable partition, and the movable partition is nested and docked on the outer side of the fixed docking rod, and the outer side of the movable partition is fixedly connected to a return spring, and the return spring is docked on the inner side of the second docking seal, and the outer side of the nested docking movable part is fixedly connected to a movable docking handle assembly, and the movable docking handle assembly passes through the inner side of the first docking seal.
[0011] Furthermore, the movable barrier forms a sliding structure along the outer side of the fixed docking rod, and the outer side of the movable barrier forms an elastic support structure along the outer side of the second docking seal through a reset spring, and the outer side of the movable barrier forms a transverse force-bearing movable work when it contacts the transverse reserved positioning piece.
[0012] Furthermore, the nested docking movable parts form a transverse movable sliding structure along the inner side of the first docking sealing member through the movable docking handle assembly, and the transverse reserved positioning parts are laterally docked along the inner side of the reserved accommodating groove.
[0013] Compared with the prior art, the present invention has the following beneficial effects: The modular combined low-noise cooling tower is provided with an adaptive locking structure, through which the cooling tower bodies are combined with each other. The cooling tower bodies can be moved laterally along the upper end of the reserved support assembly through prefabricated guide rollers as needed, so that modular assembly can be performed quickly and stably according to needs. At the same time, during the process of contact between the cooling tower bodies, the first and second docking seals on their outer sides will be adaptively locked, thereby quickly and stably performing positioning processing, solving the drawbacks of traditional mostly fixed installation structures, and can adapt to multiple cooling towers for modular assembly processing under different processing environments. Its docking assembly is convenient and its disassembly and assembly are quick, thereby improving the practicality of the device. Furthermore, during the contact between the first and second butt seals on the outside of the cooling tower body, the transverse reserved positioning piece on the outside of the nested butt movable piece will move outward along the outer end of the fixed barrier piece and then be reset. When the transverse reserved positioning piece contacts the inclined surface of the fixed barrier piece, it will move outward. After the end of the transverse reserved positioning piece completely leaves the contact state between the fixed barrier piece, it can be positioned along the left side of the fixed barrier piece in a self-locking manner, eliminating the need for manual positioning by the user. Furthermore, after the first butt seal and the second butt seal on the outside of the cooling tower body are adaptively positioned by the transverse reserved positioning piece, the first butt seal and the second butt seal on the outside are fitted with each other during the positioning process, thereby forming a hollow partition structure between the cooling tower bodies, thereby effectively isolating the noise generated when the cooling tower body is working, and effectively performing noise reduction processing on it; Furthermore, a quick-disassembly structure is provided, by which the cooling tower bodies in the combined state can be quickly disassembled. When the combined state of the cooling tower bodies needs to be adjusted, it is only necessary to hold the movable docking handle assembly to drive the nested docking movable parts and the horizontal reserved positioning parts, and move them inward along the interior of the first docking seal, so that the end side of the horizontal reserved positioning parts can push the movable partition part to move to the left, and then slide to the left side of the movable partition part, driving it to move to the right along the outer side of the fixed docking rod, so that the gradually stressed horizontal reserved positioning parts can move upward until they are out of the locked state between the fixed partition part and the movable partition part, and can be quickly disassembled. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention; Figure 2 This is a schematic diagram of the three-dimensional structure of the cooling tower body of the present invention; Figure 3 This is a schematic diagram of the three-dimensional structure of the first docking seal of the present invention; Figure 4 This is a schematic diagram of the three-dimensional structure of the movable docking handle assembly of the present invention; Figure 5 For the present invention Figure 4 Schematic diagram of the partially enlarged structure; Figure 6 This is a schematic diagram of the three-dimensional structure of the nested docking movable parts of the present invention; Figure 7 This is a schematic diagram of the three-dimensional structure of the second docking seal of the present invention; Figure 8 The diagram below is a schematic diagram of the three-dimensional structure of the support assembly reserved for the present invention.
[0015] In the figure: 1. Reserved support assembly; 2. Cooling tower body; 3. Prefabricated guide roller; 4. First docking seal; 5. Second docking seal; 6. Nested docking movable part; 7. Horizontal reserved positioning part; 8. Reserved accommodating groove; 9. Fixed docking rod; 10. Fixed spacer; 11. Movable spacer; 12. Reset spring; 13. Movable docking handle assembly. DETAILED DESCRIPTION
[0016] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0017] Example 1: Please refer to Figures 1-8 The present invention provides the following technical solutions: a modular combined low-noise cooling tower, which solves the problem that most of the cooling towers are fixed installation structures and need to be adapted for modular assembly in different processing environments. The docking assembly is cumbersome and the disassembly is not convenient enough, which leads to certain usage limitations. The cooling tower comprises a reserved support assembly 1, and the upper end of the reserved support assembly 1 is provided with a cooling tower body 2; the lower end of the cooling tower body 2 is provided with a prefabricated guide roller 3, and the prefabricated guide roller 3 and the inner side of the reserved support assembly 1 are docked with each other, and the cooling tower body 2 is symmetrically provided with two left and right parts about the upper end of the reserved support assembly 1, and a first docking seal 4 is fixedly connected to the surface of the cooling tower body 2 on the right side, and a second docking seal 5 is fixedly connected to the surface of the cooling tower body 2 on the left side, and an adaptive locking structure is provided between the first docking seal 4 and the second docking seal 5, and the cooling tower bodies 2 are combined with each other through the adaptive locking structure.
[0018] The adaptive locking structure is provided with a nested docking movable part 6, and the nested docking movable part 6 is docked on the inner side of the first docking seal 4. A reserved accommodating groove 8 is provided on the inner side of the first docking seal 4. A transverse reserved positioning part 7 is nested and installed on the outer side of the nested docking movable part 6, and the transverse reserved positioning parts 7 are docked with the inner side of the nested docking movable part 6 through a spring. At the same time, the transverse reserved positioning part 7 is arranged on the inner side of the reserved accommodating groove 8, and the inner side of the second docking seal 5 is fixedly connected with a fixed docking rod 9, and the outer side of the fixed docking rod 9 is fixedly connected with a fixed spacer 10, and the fixed spacer 10 is connected to the transverse reserved positioning part 7. The positioning parts 7 are in contact with each other, and the fixed barrier 10 is in a truncated cone structure. The first docking seal 4 and the second docking seal 5 on the outside of the cooling tower body 2 are adaptively positioned by a transverse reserved positioning part 7, and the first docking seal 4 and the second docking seal 5 are fitted together during the positioning process. The cooling tower body 2 forms a transverse sliding structure along the upper end of the reserved support assembly 1 through the prefabricated guide roller 3, and the nested docking movable part 6 forms a sliding structure along the inner side of the first docking seal 4, and two vertically movable transverse reserved positioning parts 7 are symmetrically arranged on the outside of the nested docking movable part 6. The movable part 6 drives the lateral reserved positioning part 7 to move until it contacts the fixed partition part 10 to form a locking structure. The cooling tower body 2 can move laterally along the upper end of the reserved support component 1 through the prefabricated guide roller 3 as needed, so as to quickly and stably perform modular assembly work according to needs. At the same time, during the contact between the cooling tower bodies 2, the first docking seals 4 and the second docking seals 5 on their outer sides will be locked adaptively, thereby quickly and stably performing positioning processing, solving the disadvantages of traditional mostly fixed installation structures, and can adapt to multiple cooling towers for modularization under different processing environments. The assembly process is convenient for docking and assembly, and quick for assembly and disassembly. During the contact between the first docking seal 4 and the second docking seal 5 on the outside of the cooling tower body 2, the transverse reserved positioning piece 7 on the outside of the nested docking movable piece 6 will be moved outward along the outer end of the fixed partition 10 for reset positioning. When the transverse reserved positioning piece 7 contacts the inclined surface of the fixed partition 10, it will move outward. After the end of the transverse reserved positioning piece 7 completely leaves the contact state between the fixed partition 10, it can be self-lockingly positioned along the left side of the fixed partition 10 without the need for manual positioning operation by the user.
[0019] Example 2: Based on Example 1, a quick-release structure is also disclosed, and its specific structure is as follows: A quick-disassembly structure is provided on the outer side of the first docking seal 4, through which the cooling tower bodies 2 in the assembled state can be quickly disassembled; The quick-release structure is provided with a movable spacer 11, and the movable spacer 11 is nested and docked on the outside of the fixed docking rod 9. The outside of the movable spacer 11 is fixedly connected with a return spring 12, and the return spring 12 is docked on the inside of the second docking seal 5. The outside of the nested docking movable part 6 is fixedly connected with a movable docking handle assembly 13, and the movable docking handle assembly 13 passes through the inside of the first docking seal 4. The movable spacer 11 forms a sliding structure along the outside of the fixed docking rod 9, and the outside of the movable spacer 11 forms an elastic support structure along the outside of the second docking seal 5 through the return spring 12. When the outside of the movable spacer 11 contacts the transverse reserved positioning part 7, a transverse force-bearing movable work is formed. The nested docking movable part 6 forms a transverse movable sliding structure along the inside of the first docking seal 4 through the movable docking handle assembly 13, and the transverse reserved positioning part 7 is transversely docked along the inside of the reserved accommodating groove 8; the first docking seals on the outside of the cooling tower body 2 are connected to each other. After the adaptive positioning processing of the horizontal reserved positioning piece 7 between the part 4 and the second docking seal 5 is carried out, the first docking seal 4 and the second docking seal 5 on the outside thereof are fitted with each other during the positioning process, thereby forming a hollow partition structure between the cooling tower bodies 2, and then effectively isolating the noise generated when the cooling tower body 2 is working, and effectively reducing the noise thereof; when it is necessary to adjust the combination state of the cooling tower body 2, it is only necessary to hold the movable docking handle assembly 13 to drive the nested docking movable part 6 and the horizontal reserved positioning piece 7, and move them inward along the interior of the first docking seal 4, so that the end side of the horizontal reserved positioning piece 7 can push the movable partition member 11 to move to the left, and then slide to the left side of the movable partition member 11 and drive it to move to the right along the outside of the fixed docking rod 9, so that the gradually stressed horizontal reserved positioning piece 7 can move upward until it is out of the locked state between the fixed partition member 10 and the movable partition member 11, and quickly disassembled.
[0020] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "connected" and "connection" should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integral connection; mechanical connection, electrical connection; direct connection, or indirect connection through an intermediary. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.
[0021] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A modular combined low-noise cooling tower, comprising a reserved support assembly (1), wherein a cooling tower body (2) is provided at the upper end of the reserved support assembly (1); Its characteristics are: A prefabricated guide roller (3) is installed at the lower end of the cooling tower body (2), and the prefabricated guide roller (3) is butted against the inner side of the reserved support assembly (1). The cooling tower body (2) is symmetrically provided with two butt joint seals on the left and right sides of the upper end of the reserved support assembly (1). A first butt joint seal (4) is fixedly connected to the surface of the cooling tower body (2) on the right side, and a second butt joint seal (5) is fixedly connected to the surface of the cooling tower body (2) on the left side. An adaptive locking structure is provided between the first butt joint seal (4) and the second butt joint seal (5), and the cooling tower bodies (2) are combined with each other through the adaptive locking structure.
2. A modular combined low-noise cooling tower according to claim 1, characterized in that: The adaptive locking structure is provided with a nested docking movable part (6), and the nested docking movable part (6) docks on the inner side of the first docking seal (4), and a reserved accommodating groove (8) is provided on the inner side of the first docking seal (4). A transverse reserved positioning part (7) is nested and installed on the outer side of the nested docking movable part (6), and the transverse reserved positioning part (7) docks with the inner side of the nested docking movable part (6) through a spring, and the transverse reserved positioning part (7) is provided on the inner side of the reserved accommodating groove (8).
3. A modular combined low-noise cooling tower according to claim 2, characterized in that: The inner side of the second docking seal (5) is fixedly connected to a fixed docking rod (9), and the outer side of the fixed docking rod (9) is fixedly connected to a fixed spacer (10), and the fixed spacer (10) and the transverse reserved positioning member (7) are in contact with each other, and the fixed spacer (10) has a truncated cone structure.
4. A modular combined low-noise cooling tower according to claim 3, characterized in that: The first butt seal (4) and the second butt seal (5) on the outside of the cooling tower body (2) are adaptively positioned via a transverse reserved positioning piece (7), and the first butt seal (4) and the second butt seal (5) are fitted to each other during the positioning process.
5. A modular combined low-noise cooling tower according to claim 4, characterized in that: The cooling tower body (2) forms a transverse sliding structure along the upper end of the reserved support assembly (1) through a prefabricated guide roller (3), the nested docking movable part (6) forms a sliding structure along the inner side of the first docking seal (4), and two vertically movable transverse reserved positioning parts (7) are symmetrically arranged on the outer side of the nested docking movable part (6).
6. The modular combined low-noise cooling tower according to claim 5, characterized in that: The nested docking movable member (6) drives the transverse reserved positioning member (7) to move until it contacts the fixed barrier member (10) to form a locking structure.
7. The modular combined low-noise cooling tower according to claim 4, characterized in that: A quick-disassembly structure is provided on the outer side of the first docking seal (4), and the cooling tower bodies (2) in the combined state are quickly disassembled through the quick-disassembly structure; The quick-release structure is provided with a movable spacer (11), and the movable spacer (11) is nested and docked on the outside of the fixed docking rod (9); the outside of the movable spacer (11) is fixedly connected to a return spring (12), and the return spring (12) is docked on the inside of the second docking seal (5); the outside of the nested docking movable part (6) is fixedly connected to a movable docking handle assembly (13), and the movable docking handle assembly (13) passes through the inside of the first docking seal (4).
8. The modular combined low-noise cooling tower according to claim 7, characterized in that: The movable barrier member (11) forms a sliding structure along the outer side of the fixed docking rod (9), and the outer side of the movable barrier member (11) forms an elastic support structure along the outer side of the second docking seal (5) through a return spring (12). When the outer side of the movable barrier member (11) contacts the lateral reserved positioning member (7), a lateral force-bearing movable operation is formed.
9. The modular combined low-noise cooling tower according to claim 8, characterized in that: The nested docking movable member (6) forms a transverse movable sliding structure along the inner side of the first docking sealing member (4) through a movable docking handle assembly (13), and the transverse reserved positioning member (7) is laterally docked along the inner side of the reserved accommodating groove (8).
Citation Information
Patent Citations
Noise reduction device of cooling tower
CN211084885U
Wind direction adjusting device of cooling tower
CN211120836U
Transversely blowing cooling tower
CN2573980Y