An energy-saving swimming pool heat pump with a purification structure
By incorporating an S-shaped titanium condenser tube, filter, and heating box into the pool heat pump, the problem of condenser tube blockage caused by large particulate impurities in humid air is solved, achieving efficient air purification and energy recovery, and improving heat exchange efficiency and user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HEZE ZHAOKE NEW ENERGY TECH CO LTD
- Filing Date
- 2025-07-22
- Publication Date
- 2026-07-31
AI Technical Summary
Existing pool heat pumps cannot effectively filter large particulate impurities in the humid air they draw in during the dehumidification process, leading to blockage of the condenser tubes and reduced heat exchange efficiency.
An energy-saving swimming pool heat pump with a purification structure was designed, including an S-shaped titanium condenser tube, a filter screen, an activated carbon filter screen, and a heating box. The filter screen filters out large particulate impurities, the activated carbon filter screen filters out fine particles and odors, and the condensed air is heated in the heating box before being discharged, thus realizing heat recovery and humidity regulation.
It effectively prevents condenser tube blockage, improves heat exchange efficiency, achieves air purification and energy reuse, reduces energy consumption, and enhances user experience.
Smart Images

Figure CN224580378U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of swimming pool heat pump technology, specifically an energy-saving swimming pool heat pump with a purification structure. Background Technology
[0002] Pool heat pumps are the core equipment in modern pool systems for achieving constant pool water temperature and environmental control, and are widely used in commercial swimming pools, hotel pools, and high-end residential pools. However, the high temperature and humidity of the pool environment and the large amount of water vapor generated by pool water evaporation can easily lead to excessive indoor air humidity. When the relative humidity exceeds 75%, it will not only breed mold and corrode building structures and equipment, but also make swimmers feel stuffy and uncomfortable, affecting their experience.
[0003] For example, Chinese utility model patent application number 202122711713.7 discloses a multi-functional swimming pool dehumidification heat pump unit, which improves the air exchange speed of the device, making the dehumidification effect better, and at the same time improves the energy efficiency of the device, solving the problem that existing swimming pool dehumidification heat pump units are not convenient to recover the heat dissipated by water vapor condensation. However, the device still has certain defects;
[0004] During dehumidification, it is unable to filter large particulate impurities in the humid air that is drawn in. These large particulate impurities will adhere to the inner wall of the condenser tube during the condensation process, which can easily lead to blockage of the condenser tube and reduce heat exchange efficiency.
[0005] Therefore, we propose an energy-saving pool heat pump with a purification structure to solve the problems mentioned above. Utility Model Content
[0006] The purpose of this invention is to provide an energy-saving swimming pool heat pump with a purification structure to solve the problem mentioned in the background art that current market products cannot filter large particulate impurities in the humid air during dehumidification. These large particulate impurities adhere to the inner wall of the condenser tube during the condensation process, easily causing blockage of the condenser tube and reducing heat exchange efficiency.
[0007] To achieve the above objectives, this utility model provides the following technical solution: an energy-saving swimming pool heat pump with a purification structure, comprising a base and a heat pump housing, wherein the heat pump housing is installed on the top of the base, and a support plate is installed inside the heat pump housing, wherein a first exhaust pump is installed on the top of the support plate, and an air inlet pipe and an air outlet pipe are respectively installed on the left and right sides of the first exhaust pump, the air outlet pipe is connected to a condensing titanium pipe, and an insulation box is provided on the outside of the condensing titanium pipe;
[0008] An installation box is embedded in the left side of the heat pump housing, and slide rails are installed on both the upper and lower sides of the installation box. A first filter screen is provided between the slide rails, and a cleaning column is installed on the right side of the inner wall of the installation box.
[0009] A heating box is installed inside the lower part of the heat pump housing, and a drying tube is installed on the left side of the heating box;
[0010] A second exhaust pump is installed on the right side of the heat pump housing, and a first delivery pipe is installed on the left side of the second exhaust pump. A transition box is installed on the left side of the first delivery pipe, and a second delivery pipe is installed on the left side of the transition box.
[0011] Preferably, the heat pump housing is provided with heat dissipation holes, and the outer side of the heat pump housing is provided with a detachable filter assembly.
[0012] With the above structural design, the heat dissipation holes of the heat pump housing dissipate the heat generated during equipment operation, and the detachable filter assembly filters out impurities from the outside air, preventing dust from entering the equipment.
[0013] Preferably, the condensing titanium tube has an S-shaped structure design, with the right side of the condensing titanium tube connected to the water tank, and the water tank fixed to the upper right surface of the base.
[0014] With the above structural design, the S-shaped condensing titanium tube increases the condensation area, and the humid air condenses into water inside the tube and flows into the water tank, while the insulation box reduces heat loss during the condensation process.
[0015] Preferably, a threaded rod is installed on the mounting box, and the right side of the threaded rod is connected to the first filter screen through a bearing seat. The first filter screen is slidably connected to the slide rail, and the filter holes on the first filter screen are aligned with the cleaning column. A through hole is provided on the left side of the mounting box.
[0016] With the above structural design, when cleaning the first filter screen, rotating the threaded rod drives the first filter screen to slide along the slide rail. The cleaning column passes through the filter holes on the first filter screen, squeezing out the impurities in the filter holes and letting them fall into the installation box. Opening the maintenance door on the installation box allows the impurities to be cleaned, thus facilitating the cleaning of the first filter screen.
[0017] Preferably, a magnetic plate is vertically installed inside the mounting box, and a metal plate is installed on the right side of the first filter screen, with the magnetic plate and the metal plate adsorbing each other.
[0018] With the above structural design, the magnetic plate adsorbs the metal plate of the first filter screen, fixing the position of the first filter screen to prevent shaking during filtration, ensuring the filtration effect, and at the same time facilitating the disassembly and cleaning of the first filter screen.
[0019] Preferably, the heating box is equipped with a heating block inside, the heating box is located below the insulation box, the insulation box and the heating box are connected by a connecting pipe, a connecting box is installed on the left side of the heat pump housing, and an exhaust fan is installed inside the connecting box, and an exhaust pipe is installed on the left side of the connecting box.
[0020] With the above structural design, the heating block of the heating box heats the condensed dry air, and the exhaust fan, under the action of the drying pipe, discharges the heated dry air through the exhaust pipe to regulate the humidity of the pool environment.
[0021] Preferably, the second delivery pipe is connected to the interior of the heat pump box, an air suction pipe is installed on the right side of the heat pump housing, an activated carbon filter and a second filter are installed inside the transition box, the activated carbon filter has a pleated structure design, and an inspection door is provided on the transition box.
[0022] Using the above structural design, the second exhaust pump is started, which sends dry, cold air from the outside environment into the transition box through the first delivery pipe. The pleated structure of the activated carbon filter increases the adsorption area. The activated carbon filter and the second filter filter out odors and fine particles in the air, and then send it out to the insulation box through the second delivery pipe. It absorbs some of the heat released by the condensation of water vapor in the condensing titanium tube, and then sends it to the heating box for heating through the connecting pipe. Finally, the dry, hot air is discharged by the exhaust fan, thus regulating the humidity of the pool environment.
[0023] Compared with the prior art, the beneficial effects of this utility model are: this energy-saving swimming pool heat pump with a purification structure:
[0024] 1. High-efficiency purification and anti-clogging design: The first filter in the installation box filters large particles of impurities in humid air. Rotating the threaded rod drives the filter to slide along the slide rail, and the cleaning column cleans the impurities in the filter holes, preventing impurities from adhering to the inner wall of the condenser titanium tube and causing blockage. At the same time, the activated carbon filter and the second filter in the transition box further filter fine particles and odors, ensuring thorough air purification and maintaining heat exchange efficiency.
[0025] 2. Integrated energy saving and humidity control: The S-shaped design of the condenser titanium tube increases the condensation area, and the insulation box reduces heat loss. The condensed dry air is heated by the heating box and then discharged by the exhaust fan to regulate the humidity of the pool. The second exhaust pump introduces outside air, which is purified and absorbs the heat in the condensation process, realizing heat recovery and reuse, reducing energy consumption, and solving the problems of low dehumidification efficiency and high energy consumption of traditional heat pumps. Attached Figure Description
[0026] Figure 1 This is a schematic diagram of the main cross-section of the present invention;
[0027] Figure 2 This is a schematic diagram of the main structure of this utility model;
[0028] Figure 3 This utility model Figure 1 Enlarged structural diagram at point A in the middle;
[0029] Figure 4 This is a schematic diagram of the internal structure of the mounting box of this utility model;
[0030] Figure 5 This is a schematic diagram of the internal structure of the transition box of this utility model;
[0031] Figure 6 This is a schematic diagram of the structure of Embodiment 2 of this utility model.
[0032] In the diagram: 1. Base; 2. Heat pump housing; 3. Support plate; 4. First exhaust pump; 5. Inlet pipe; 6. Outlet pipe; 7. Condensing titanium pipe; 8. Insulation box; 9. Mounting box; 10. Slide rail; 11. First filter screen; 12. Cleaning column; 13. Threaded rod; 14. Magnetic plate; 15. Metal plate; 16. Heating box; 17. Drying pipe; 18. Connecting box; 19. Exhaust fan; 20. Exhaust pipe; 21. Connecting pipe; 22. Water tank; 23. Second exhaust pump; 24. First conveying pipe; 25. Transition box; 26. Second conveying pipe; 27. Activated carbon filter screen; 28. Second filter screen. Detailed Implementation
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model. Example
[0034] Please see Figures 1-5This utility model provides a technical solution: an energy-saving swimming pool heat pump with a purification structure, including a base 1, a heat pump housing 2, a support plate 3, a first exhaust pump 4, an air inlet pipe 5, an air outlet pipe 6, a condenser titanium pipe 7, an insulation box 8, a mounting box 9, a slide rail 10, a first filter screen 11, a cleaning column 12, a threaded rod 13, a heating box 16, a drying pipe 17, a connecting box 18, an exhaust fan 19, an exhaust pipe 20, a connecting pipe 21, a water tank 22, a second exhaust pump 23, a first delivery pipe 24, a transition box 25, and a third... The system includes two conveying pipes 26, an activated carbon filter 27, and a second filter 28. A heat pump housing 2 is mounted above the base 1. The heat pump housing 2 has heat dissipation holes, and detachable filter assemblies are installed on the outer side of the heat pump housing 2. The heat dissipation holes of the heat pump housing 2 dissipate the heat generated during equipment operation, and the detachable filter assemblies filter out impurities from the outside air to prevent dust from entering the equipment. A support plate 3 is installed inside the heat pump housing 2, and a first exhaust pump 4 is installed above the support plate 3. Inlet valves are installed on the left and right sides of the first exhaust pump 4. Air duct 5 and air outlet duct 6 are connected. Air outlet duct 6 is connected to condenser titanium pipe 7, which has an S-shaped structure. The right side of condenser titanium pipe 7 is connected to water tank 22, and water tank 22 is fixed to the upper right side of base 1. The S-shape of condenser titanium pipe 7 increases the condensation area. Humid air condenses into water inside the pipe and flows into water tank 22. Insulation box 8 reduces heat loss during the condensation process, and insulation box 8 is installed on the outside of condenser titanium pipe 7. Threaded rod 13 is installed on mounting box 9, and the right side of threaded rod 13 is connected to the first filter through bearing seat. The first filter screen 11 is connected to the slide rail 10 and the filter holes on the first filter screen 11 are aligned with the cleaning column 12. A through hole is provided on the left side of the mounting box 9. When cleaning the first filter screen 11, the threaded rod 13 is rotated to drive the first filter screen 11 to slide along the slide rail 10. The cleaning column 12 passes through the filter holes on the first filter screen 11 and squeezes out the impurities in the filter holes, which fall into the mounting box 9. The maintenance door on the mounting box 9 can be opened to clean the impurities, thus facilitating the cleaning of the first filter screen 11.
[0035] The heat pump housing 2 has an embedded mounting box 9 on its left side, and slide rails 10 are installed on both the upper and lower sides of the mounting box 9. A first filter screen 11 is provided between the slide rails 10, and a cleaning column 12 is installed on the right side of the inner wall of the mounting box 9.
[0036] A heating box 16 is installed at the bottom inside the heat pump housing 2, and a drying pipe 17 is installed on the left side of the heating box 16. A heating block is installed inside the heating box 16. The heating box 16 is located below the insulation box 8. The insulation box 8 and the heating box 16 are connected by a connecting pipe 21. A connecting box 18 is installed on the left side of the heat pump housing 2, and an exhaust fan 19 is installed inside the connecting box 18. An exhaust pipe 20 is installed on the left side of the connecting box 18. The heating block of the heating box 16 heats the condensed dry air. Under the action of the drying pipe 17, the exhaust fan 19 discharges the heated dry air through the exhaust pipe 20 to regulate the humidity of the pool environment.
[0037] A second exhaust pump 23 is installed on the right side of the heat pump housing 2, and a first delivery pipe 24 is installed on the left side of the second exhaust pump 23. A transition box 25 is installed on the left side of the first delivery pipe 24, and a second delivery pipe 26 is installed on the left side of the transition box 25. The second delivery pipe 26 is connected to the interior of the insulation box 8. An air intake pipe is installed on the right side of the heat pump housing 2. An activated carbon filter 27 and a second filter 28 are installed inside the transition box 25. The activated carbon filter 27 has a pleated structure. An inspection door is provided on the transition box 25. The second exhaust pump 23 is started. The second exhaust pump 23 draws dry, cold air from the outside environment into the transition box 25 through the first delivery pipe 24. The pleated structure of the activated carbon filter 27 increases the adsorption area. The activated carbon filter 27 and the second filter 28 filter out odors and fine particles from the air. The air is then delivered to the insulation box 8 through the second delivery pipe 26, where it absorbs some of the heat released by the liquefaction of water vapor in the condensing titanium tube 7. The air is then delivered to the heating box 16 through the connecting pipe 21 for heating. Finally, the dry, hot air is exhausted by the exhaust fan 19, thus regulating the humidity of the swimming pool environment. Example
[0038] Please see Figure 6 This utility model provides a technical solution: an energy-saving swimming pool heat pump with a purification structure, including a magnetic plate 14 and a metal plate 15. The difference between this embodiment and Embodiment 1 is that:
[0039] A magnetic plate 14 is vertically installed inside the mounting box 9. A metal plate 15 is installed on the right side of the first filter screen 11. The magnetic plate 14 and the metal plate 15 attract each other. The magnetic plate 14 attracts the metal plate 15 of the first filter screen 11, fixing the position of the first filter screen 11, preventing it from shaking during filtration, ensuring the filtration effect, and facilitating the disassembly and cleaning of the first filter screen 11.
[0040] Working principle: When using this energy-saving pool heat pump with purification structure, firstly, the first exhaust pump 4 and the second exhaust pump 23 are started. The second exhaust pump 23 sends dry, cold air from the outside environment into the transition box 25 through the first delivery pipe 24. The pleated structure of the activated carbon filter 27 increases the adsorption area. The activated carbon filter 27 and the second filter 28 filter odors and small particles in the air, and then send it out to the insulation box 8 through the second delivery pipe 26. The first exhaust pump 4 draws in humid air from the pool environment through the air inlet pipe 5 and the through holes on the mounting box 9. The first filter 11 filters the larger particles in the humid air, and then sends it to the condensing titanium pipe 7 through the air outlet pipe 6 for condensation. The condensing titanium pipe 7 is S-shaped to increase the condensation area. The humid air condenses into water in the pipe and flows into the water tank 22. The insulation box 8 reduces heat loss during the condensation process.
[0041] The gas in the heat preservation box 8 absorbs the heat released by the condensation of water vapor in the titanium tube 7, and then is transported to the heating box 16 for heating through the connecting pipe 21. Finally, the exhaust fan 19, under the action of the drying pipe 17, discharges the heated and dry air through the exhaust pipe 20 to regulate the humidity of the pool environment.
[0042] When cleaning the first filter screen 11, rotating the threaded rod 13 causes the first filter screen 11 to slide along the slide rail 10. The cleaning column 12 passes through the filter holes on the first filter screen 11, squeezing out the impurities in the filter holes and causing them to fall into the mounting box 9. Opening the inspection door on the mounting box 9 allows the impurities to be cleaned, thus facilitating the cleaning of the first filter screen 11 and completing a series of tasks. Content not described in detail in this specification belongs to prior art known to those skilled in the art.
[0043] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. An energy-saving swimming pool heat pump with a purification structure, comprising a base (1) and a heat pump housing (2), wherein the heat pump housing (2) is mounted on top of the base (1), and a support plate (3) is installed inside the heat pump housing (2), characterized in that: A first exhaust pump (4) is installed above the support plate (3), and an air inlet pipe (5) and an air outlet pipe (6) are installed on the left and right sides of the first exhaust pump (4), respectively. The air outlet pipe (6) is connected to the condensing titanium pipe (7), and an insulation box (8) is provided on the outside of the condensing titanium pipe (7). The heat pump housing (2) has an installation box (9) embedded in its left side, and slide rails (10) are installed on both the upper and lower sides of the installation box (9). A first filter screen (11) is provided between the slide rails (10), and a cleaning column (12) is installed on the right side of the inner wall of the installation box (9). A heating box (16) is installed inside the lower part of the heat pump housing (2), and a drying tube (17) is installed on the left side of the heating box (16). A second exhaust pump (23) is installed on the right side of the heat pump housing (2), and a first delivery pipe (24) is installed on the left side of the second exhaust pump (23). A transition box (25) is installed on the left side of the first delivery pipe (24), and a second delivery pipe (26) is installed on the left side of the transition box (25).
2. The energy-saving swimming pool heat pump with a purification structure according to claim 1, characterized in that: The heat pump housing (2) is provided with heat dissipation holes, and the outer side of the heat pump housing (2) is provided with a detachable filter assembly.
3. The energy-saving swimming pool heat pump with a purification structure according to claim 1, characterized in that: The condensing titanium tube (7) has an S-shaped structure design. The right side of the condensing titanium tube (7) is connected to the water tank (22), and the water tank (22) is fixed on the upper right side surface of the base (1).
4. The energy-saving swimming pool heat pump with a purification structure according to claim 1, characterized in that: The mounting box (9) is equipped with a threaded rod (13), and the right side of the threaded rod (13) is connected to the first filter screen (11) through a bearing seat. The first filter screen (11) is slidably connected to the slide rail (10). The filter holes on the first filter screen (11) are aligned with the cleaning column (12). A through hole is provided on the left side of the mounting box (9).
5. The energy-saving swimming pool heat pump with a purification structure according to claim 4, characterized in that: A magnetic plate (14) is vertically installed inside the mounting box (9), and a metal plate (15) is installed on the right side of the first filter screen (11). The magnetic plate (14) and the metal plate (15) are attracted to each other.
6. The energy-saving swimming pool heat pump with a purification structure according to claim 1, characterized in that: The heating box (16) is equipped with a heating block inside. The heating box (16) is located below the heat preservation box (8). The heat preservation box (8) and the heating box (16) are connected by a connecting pipe (21). A connecting box (18) is installed on the left side of the heat pump housing (2). An exhaust fan (19) is installed inside the connecting box (18). An exhaust pipe (20) is installed on the left side of the connecting box (18).
7. The energy-saving swimming pool heat pump with a purification structure according to claim 1, characterized in that: The second delivery pipe (26) is connected to the interior of the heat insulation box (8). A suction pipe is installed on the right side of the heat pump housing (2). An activated carbon filter (27) and a second filter (28) are installed inside the transition box (25). The activated carbon filter (27) has a pleated structure design. An inspection door is provided on the transition box (25).