Efficient water-cooling heat dissipation device for building heating and ventilation
Through the design of mechanical automatic filtration and adjustable air intake, the problems of low traditional heat dissipation efficiency and pipe blockage are solved, efficient and reliable water cooling is achieved, and operating costs and energy consumption are reduced.
Patent Information
- Application Number
- CN202422861075.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-11-22
AI Technical Summary
Traditional heat dissipation methods are inefficient and energy-intensive, and the pipes of water-cooled heat dissipation devices are prone to clogging, affecting heat dissipation efficiency.
A high-efficiency water-cooling heat dissipation device for building heating and cooling was designed. It adopts a mechanical automatic filtration system and a structure with adjustable air intake volume. The structure includes a filter plate, an inclined disc, a sliding rod and a rotating rod driven by an electric motor, combined with fins and a fan to achieve water quality filtration and air intake volume adjustment.
Effectively prevent pipe blockage, ensure water quality is clean, extend equipment life, improve heat dissipation efficiency, optimize energy utilization, and reduce operating costs.
Smart Images

Figure CN223399864U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of heat dissipation, in particular to a high-efficiency water-cooling heat dissipation device for building heating. Background Art
[0002] With the acceleration of urbanization and the rapid development of the construction industry, the number of high-rise buildings, large commercial centers, and residential communities is increasing. During operation, these buildings generate a large amount of heat due to equipment operation, lighting, and personnel activities, causing the indoor temperature to rise. To ensure the comfort of the indoor environment and the normal operation of equipment, these buildings need to be effectively cooled. Therefore, a high-efficiency water-cooling heat dissipation device for building heating is designed.
[0003] Traditional heat dissipation methods mainly rely on natural ventilation or mechanical exhaust systems, but these methods often have problems such as low heat dissipation efficiency and high energy consumption. In addition, the pipes of existing water-cooled heat dissipation devices are prone to blockage, affecting the heat dissipation efficiency. Utility Model Content
[0004] The disclosed embodiments relate to a high-efficiency water-cooling heat dissipation device for building heating, which solves the problems of low heat dissipation efficiency and high energy consumption in traditional heat dissipation methods, as well as the problem that pipes of existing water-cooling heat dissipation devices are easily clogged, affecting the heat dissipation efficiency.
[0005] In a first aspect of the present disclosure, there is provided a high-efficiency universal water-cooling heat dissipation device for building heating, specifically comprising: a box;
[0006] A water tank is fixed to the upper end of the box body, and fixed plates are fixed on the inner walls on the left and right sides of the water tank, and welding frames are welded on the two sets of fixed plates, and a rotating rod is installed on the welding frame through a bearing, an inclined disc is fixed on the rotating rod, and a sliding rod is slid on the welding frame, and two sets of connecting plates are installed between the two sets of sliding rods by bolts, and filter plates are installed on the two sets of connecting plates by bolts. A No. 1 contact rod slides on the welding frame, and the No. 1 contact rod contacts the front end of the inclined disc, and a No. 2 contact rod is provided on the sliding rod, and the No. 2 contact rod contacts the rear end surface of the inclined disc. A bracket is fixed on the front end of the water tank, and a gearbox is installed on the bracket by bolts, and a No. 1 motor is installed on the gearbox by bolts, and two sets of transmission boxes are installed on the bracket by bolts. The front ends of the two sets of rotating rods are respectively connected with the output shafts of the two sets of transmission boxes, and the output shaft of the gearbox is connected with the input shaft of the transmission box.
[0007] In at least some embodiments,
[0008] The rear end of the box body is provided with a through hole, a cover plate is installed on the outside of the through hole by bolts, an air vent is provided on the cover plate, a slide groove is provided on the cover plate, a cylinder seat is installed on the inner side of the through hole of the box body by bolts, an inner cylinder is fixed inside the cylinder seat, a limiting column is fixed on the inner cylinder, and a cover shell is installed on the front end of the cylinder seat by bolts.
[0009] In at least some embodiments,
[0010] An adjusting rod is rotated inside the inner cylinder, and a toggle plate is fixed to the rear end of the adjusting rod. The toggle plate moves in a slide groove on the cover plate, and a matching column is fixed on the adjusting rod. A sealing plate is provided between the cylinder seat and the cover shell, and a spiral groove is provided at the rear end of the sealing plate. The matching column moves in the spiral groove on the sealing plate. A limiting groove is provided at the rear end of the sealing plate, and the limiting column is located in the limiting groove.
[0011] In at least some embodiments,
[0012] A base is fixed inside the box, a mounting frame is installed on the base by bolts, fins are fixed on the mounting frame, and a heat absorption tube is fixed on the fins. A water pump is provided on the left side of the box, the liquid inlet end of the water pump is connected to a water pumping pipe, the water pumping pipe is connected to the water tank, a return water pipe is connected to the water tank, the return water pipe is connected to the water outlet end of the heat absorption tube, and the liquid outlet end of the water pump is connected to the water inlet end of the heat absorption tube.
[0013] In at least some embodiments,
[0014] A fan is mounted on the front end of the mounting frame via bolts, and a protective net is mounted on the front end of the fan via bolts.
[0015] In at least some embodiments,
[0016] An air outlet is provided at the front end of the box, and two sets of rail rods are fixed at the front end of the box, and a No. 2 motor is installed on both sets of rail rods. A pulley is fixed on the output shaft of the No. 2 motor, and a pulley is installed at the lower end of the rail rod. A transmission belt is connected between the pulley on the output shaft of the No. 2 motor and the pulley at the lower end of the rail rod.
[0017] In at least some embodiments,
[0018] A dustproof curtain is fixed on the box body, and movable plates are slid on the two sets of rails. The two sets of movable plates are fixedly connected to the lower ends of the dustproof curtains. Right-angle plates are installed on the movable plates by bolts, and the right-angle plates are fixedly connected to the transmission belt.
[0019] The utility model provides a high-efficiency water-cooling heat dissipation device for building heating, which has the following beneficial effects:
[0020] The utility model is provided with fixed plates on the inner walls on the left and right sides of the water tank, and welding frames are welded on the two sets of fixed plates, and a rotating rod is installed on the welding frame through a bearing, and an inclined disc is fixed on the rotating rod, and a sliding rod is slid on the welding frame, and two sets of connecting plates are installed between the two sets of sliding rods through bolts, and filter plates are installed on the two sets of connecting plates through bolts. By running the No. 1 motor, the two sets of rotating rods are driven to rotate, and then the No. 1 contact rod and the No. 2 contact rod are driven to move in a coordinated manner through the inclined disc to realize the reciprocating movement of the filter plate in the water tank, which can not only effectively filter the water flowing in from the return pipe, remove impurities and particulate matter in the water, and prevent pipe blockage, but also ensure the cleanliness of the water quality and extend the service life of the equipment. In addition, the device simplifies the maintenance process through mechanical automation, improves the reliability and efficiency of the system, reduces the need for manual intervention, thereby reducing operating costs and improving the performance of the overall cooling system.
[0021] In addition, in the utility model, the adjusting rod is rotated by manually controlling the toggle plate, thereby accurately adjusting the distance between the sealing plate and the cylinder seat. This design allows the user to flexibly control the size of the air intake according to actual needs, thereby effectively adjusting the heat dissipation intensity. In a high temperature environment or when the equipment is running at high load, the air intake can be increased to enhance the heat dissipation effect; conversely, in low temperature or low load conditions, the air intake can be reduced to save energy. This function not only optimizes the heat dissipation performance, ensures the stable operation of the equipment and extends its service life, but also realizes efficient use of energy and reduces operating costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings of the embodiments will be briefly introduced below.
[0023] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.
[0024] In the attached figure:
[0025] Figure 1 A schematic diagram showing the overall structure of the present application;
[0026] Figure 2 Shows a schematic structural diagram of the filter plate of the present application;
[0027] Figure 3 Shows the application Figure 2 Schematic diagram of the enlarged structure of part A;
[0028] Figure 4 It shows a schematic structural diagram of the rear end of the box body of the present application;
[0029] Figure 5 Shows a schematic structural diagram of the cartridge seat of the present application;
[0030] Figure 6 A schematic structural diagram of the sealing plate of the present application is shown;
[0031] Figure 7 Shows a schematic structural diagram of the mounting frame of the present application;
[0032] Figure 8 Shows the application Figure 1 Schematic diagram of the enlarged structure of part B.
[0033] Reference Signs List
[0034] 1. Box body; 11. Cover plate; 12. Cylinder seat; 121. Inner cylinder; 1211. Limiting column; 122. Sealing plate; 1221. Limiting groove; 123. Adjusting rod; 1231. Toggle plate; 1232. Matching column; 124. Cover; 13. Base; 131. Mounting frame; 132. Fins; 1321. Heat absorbing pipe; 1322. Return pipe; 133. Fan; 134. Protective net; 14. Rail; 141. Second motor; 142. Drive belt; 143. Movable plate; 1431. Right-angle plate; 15. Dust curtain; 16. Air outlet
[0035] 2. Water tank; 21. Fixed plate; 211. Welding frame; 212. Rotating rod; 2121. Tilt disc; 213. Sliding rod; 2131. Contact rod No. 2; 214. Contact rod No. 1; 215. Connecting plate; 216. Filter plate; 22. Bracket; 221. Gearbox; 2211. Motor No. 1; 222. Transmission box;
[0036] 3. Water pump; 31. Suction pipe. DETAILED DESCRIPTION
[0037] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0038] Example 1: Please refer to Figures 1 to 8 :
[0039] The utility model proposes a high-efficiency universal water-cooling heat dissipation device for building heating, comprising: a box 1;
[0040] A water tank 2 is fixed to the upper end of the box body 1, and a fixed plate 21 is fixed to the inner wall on both sides of the water tank 2. A welding frame 211 is welded on the two sets of fixed plates 21. A rotating rod 212 is installed on the welding frame 211 through a bearing. An inclined disc 2121 is fixed on the rotating rod 212, and a sliding rod 213 is slid on the welding frame 211. Two sets of connecting plates 215 are installed between the two sets of sliding rods 213 by bolts. Filter plates 216 are installed on the two sets of connecting plates 215 by bolts. There is a contact rod 214 sliding on the welding frame 211. The contact rod 214 is fixed to the rotating rod 212. The front end of the inclined disc 2121 is in contact, and a No. 2 contact rod 2131 is provided on the sliding rod 213. The No. 2 contact rod 2131 contacts the rear end face of the inclined disc 2121. The front end of the water tank 2 is fixed with a bracket 22, and a gearbox 221 is installed on the bracket 22 by bolts. A No. 1 motor 2211 is installed on the gearbox 221 by bolts, and two groups of transmission boxes 222 are installed on the bracket 22 by bolts. The front ends of the two groups of rotating rods 212 are respectively connected to the output shafts of the two groups of transmission boxes 222, and the output shaft of the gearbox 221 is connected to the input shaft of the transmission box 222.
[0041] In the embodiment of the present disclosure,
[0042] The rear end of the box body 1 is provided with a through hole, and a cover plate 11 is installed on the outside of the through hole by bolts. A vent hole is provided on the cover plate 11, and a slide groove is provided on the cover plate 11. A cylinder seat 12 is installed on the inner side of the through hole of the box body 1 by bolts. An inner cylinder 121 is fixed inside the cylinder seat 12, and a limiting column 1211 is fixed on the inner cylinder 121. A cover shell 124 is installed on the front end of the cylinder seat 12 by bolts. An adjusting rod 123 is rotated inside the inner cylinder 121, and a toggle plate 1231 is fixed to the rear end of the adjusting rod 123. The toggle plate 1231 moves in the slide groove on the cover plate 11, and a matching column 1211 is fixed on the adjusting rod 123. A sealing plate 122 is arranged between the cylinder seat 12 and the cover shell 124, and a spiral groove is arranged at the rear end of the sealing plate 122. The matching column 1232 moves in the spiral groove on the sealing plate 122, and a limiting groove 1221 is arranged at the rear end of the sealing plate 122. The limiting column 1211 is located in the limiting groove 1221. Its function is: by manually controlling the toggle plate 1231, the adjusting rod 123 is rotated, and then the distance between the sealing plate 122 and the cylinder seat 12 is accurately adjusted. This design allows the user to flexibly control the size of the air intake according to actual needs, thereby effectively adjusting the heat dissipation intensity.
[0043] In the embodiment of the present disclosure,
[0044] A base 13 is fixed inside the box body 1, and a mounting frame 131 is installed on the base 13 by bolts. Fins 132 are fixed on the mounting frame 131, and a heat absorption tube 1321 is fixed on the fin 132. A water pump 3 is provided on the left side of the box body 1, and the liquid inlet end of the water pump 3 is connected to the water pumping pipe 31, and the water pumping pipe 31 is connected to the water tank 2. A return water pipe 1322 is connected to the water tank 2, and the return water pipe 1322 is connected to the water outlet end of the heat absorption tube 1321. The liquid outlet end of the water pump 3 is connected to the water inlet end of the heat absorption tube 1321. A fan 133 is installed at the front end of the mounting frame 131 by bolts, and a protective net 134 is installed at the front end of the fan 133 by bolts. Its function is: through the efficient operation of the water pump 3, the refrigerant is continuously transported from the water tank 2 to the heat absorption tube 1321. In the heat absorption tube 1321, the refrigerant fully exchanges heat with the external air, and the fins 132 are used to increase the heat exchange area, which significantly improves the heat exchange efficiency. At the same time, with the use of the fan 133, the cooled gas is quickly blown out, accelerating the heat dissipation process.
[0045] In the embodiment of the present disclosure,
[0046] The front end of the box body 1 is provided with an air outlet 16, and two sets of rail rods 14 are fixed to the front end of the box body 1, and the two sets of rail rods 14 are both equipped with a No. 2 motor 141, and a pulley is fixed to the output shaft of the No. 2 motor 141, and the lower end of the rail rod 14 is equipped with a pulley, and a transmission belt 142 is connected between the pulley on the output shaft of the No. 2 motor 141 and the pulley at the lower end of the rail rod 14. A dust-proof curtain 15 is fixed on the box body 1, and movable plates 143 are sliding on the two sets of rail rods 14. The two sets of movable plates 143 are fixedly connected to the lower end of the dust-proof curtain 15, and a right-angle plate 1431 is installed on the movable plate 143 by bolts, and the right-angle plate 1431 is fixedly connected to the transmission belt 142. Its function is: by running the No. 2 motor 141, the transmission belt 142 is driven to operate smoothly, thereby driving the automatic opening and closing of the dust-proof curtain 15, effectively preventing external dust, impurities and other pollutants from entering the interior of the box body 1, and maintaining the cleanliness of the environment inside the box body 1.
[0047] The working principle of this embodiment is: through the efficient operation of the water pump 3, the refrigerant is transported from the water tank 2 to the heat absorption pipe 1321. In the heat absorption tube 1321, the refrigerant fully exchanges heat with the external air, and the fins 132 are used to increase the heat exchange area, which significantly improves the heat exchange efficiency. At the same time, with the use of the fan 133, the cooled gas is quickly blown out, which accelerates the heat dissipation process. By manually controlling the toggle plate 1231, the adjustment rod 123 is rotated, and the distance between the sealing plate 122 and the cylinder seat 12 is accurately adjusted. This design allows the user to flexibly control the size of the air intake according to actual needs, thereby effectively adjusting the heat dissipation intensity. By running the No. 1 motor 2211, the two sets of rotating rods 212 are driven to rotate, and then the No. 1 contact rod 214 and the No. 2 contact rod 2131 are driven to coordinate movement through the inclined disk 2121, realizing the reciprocating movement of the filter plate 216 in the water tank 2, which can not only effectively filter the water flowing in from the return pipe 1322, remove impurities and particulate matter in the water, and prevent pipe blockage, but also ensure the cleanliness of the water quality and extend the service life of the equipment.
[0048] In this article, there are several points to note:
[0049] 1. The drawings of the embodiments of the present disclosure only relate to the structures related to the embodiments of the present disclosure. Other structures may refer to conventional designs.
[0050] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to form new embodiments.
[0051] The above are only specific implementation methods of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any technician familiar with this technical field can easily think of changes or replacements within the technical scope disclosed in this disclosure, and they should all be covered by the protection scope of the present disclosure.
Claims
1. A high-efficiency water-cooling heat dissipation device for building heating, comprising: The box body (1) is characterized in that: The upper end of the box body (1) is fixed with a water tank (2), and fixed plates (21) are fixed on the inner walls of the left and right sides of the water tank (2), and welding frames (211) are welded on the two sets of fixed plates (21), and a rotating rod (212) is installed on the welding frame (211) through a bearing, and an inclined disc (2121) is fixed on the rotating rod (212), and a sliding rod (213) is slid on the welding frame (211), and two sets of connecting plates (215) are installed between the two sets of sliding rods (213) through bolts, and filter plates (216) are installed on the two sets of connecting plates (215) through bolts, and a contact rod (214) is slid on the welding frame (211), and the contact rod (214) is slidable. 4) contacts the front end of the inclined disc (2121), a second contact rod (2131) is provided on the sliding rod (213), and the second contact rod (2131) contacts the rear end surface of the inclined disc (2121), a bracket (22) is fixed to the front end of the water tank (2), a gearbox (221) is mounted on the bracket (22) by bolts, a No. 1 motor (2211) is mounted on the gearbox (221) by bolts, two sets of transmission boxes (222) are mounted on the bracket (22) by bolts, the front ends of the two sets of rotating rods (212) are respectively connected to the output shafts of the two sets of transmission boxes (222), and the output shaft of the gearbox (221) is connected to the input shaft of the transmission box (222).
2. The high-efficiency water-cooling heat dissipation device for building heating according to claim 1 is characterized in that: The rear end of the box body (1) is provided with a through hole, a cover plate (11) is installed on the outer side of the through hole by means of bolts, an air vent is provided on the cover plate (11), a slide groove is provided on the cover plate (11), a cylinder seat (12) is installed on the inner side of the through hole of the box body (1) by means of bolts, an inner cylinder (121) is fixed inside the cylinder seat (12), a limiting column (1211) is fixed on the inner cylinder (121), and a cover shell (124) is installed on the front end of the cylinder seat (12) by means of bolts.
3. The high-efficiency water-cooling heat dissipation device for building heating according to claim 2 is characterized in that: An adjusting rod (123) is rotatably provided inside the inner cylinder (121), a toggle plate (1231) is fixed to the rear end of the adjusting rod (123), the toggle plate (1231) moves in a slide groove on the cover plate (11), a matching column (1232) is fixed to the adjusting rod (123), a sealing plate (122) is provided between the cylinder seat (12) and the cover shell (124), a spiral groove is provided at the rear end of the sealing plate (122), the matching column (1232) moves in the spiral groove on the sealing plate (122), a limiting groove (1221) is provided at the rear end of the sealing plate (122), and the limiting column (1211) is located in the limiting groove (1221).
4. The high-efficiency water-cooling heat dissipation device for building heating according to claim 2 is characterized in that: A base (13) is fixed inside the box body (1), a mounting frame (131) is mounted on the base (13) by bolts, a fin (132) is fixed on the mounting frame (131), a heat absorption tube (1321) is fixed on the fin (132), a water pump (3) is provided on the left side of the box body (1), a liquid inlet end of the water pump (3) is connected to a water pumping pipe (31), the water pumping pipe (31) is connected to the water tank (2), a return water pipe (1322) is connected to the water tank (2), the return water pipe (1322) is connected to the water outlet end of the heat absorption tube (1321), and the liquid outlet end of the water pump (3) is connected to the water inlet end of the heat absorption tube (1321).
5. The high-efficiency water-cooling heat dissipation device for building heating according to claim 4 is characterized in that: A fan (133) is mounted on the front end of the mounting frame (131) via bolts, and a protective net (134) is mounted on the front end of the fan (133) via bolts.
6. The high-efficiency water-cooling heat dissipation device for building heating according to claim 4 is characterized in that: The front end of the box body (1) is provided with an air outlet (16), and two sets of rail rods (14) are fixed to the front end of the box body (1), and a second motor (141) is installed on each of the two sets of rail rods (14), a pulley is fixed on the output shaft of the second motor (141), a pulley is installed at the lower end of the rail rod (14), and a transmission belt (142) is connected between the pulley on the output shaft of the second motor (141) and the pulley at the lower end of the rail rod (14).
7. The high-efficiency water-cooling heat dissipation device for building heating according to claim 6 is characterized in that: A dustproof curtain (15) is fixed on the box body (1), and movable plates (143) are slidably mounted on the two sets of rail rods (14). The two sets of movable plates (143) are fixedly connected to the lower ends of the dustproof curtain (15). A right-angle plate (1431) is mounted on the movable plate (143) by bolts, and the right-angle plate (1431) is fixedly connected to the transmission belt (142).