A pool heat pump that facilitates the removal of condensed water
By designing support components and curved side plates on the base of the pool heat pump, the problem of condensate buildup was solved, enabling smooth drainage of condensate and improving the operational stability and aesthetics of the equipment.
Patent Information
- Application Number
- CN202211520332.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-30
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2042-11-30
AI Technical Summary
During operation, condensate tends to accumulate on the base of existing pool heat pumps, causing water to remain on the base for extended periods and affecting the normal operation of the equipment.
Design a pool heat pump base that supports the heating components and heat exchange fins through a support structure, allowing condensate to flow through a clearance channel to the drain outlet, avoiding direct contact with the base plate. Combined with the design of the curved side plate and the support bending component, the flow resistance of condensate is reduced, ensuring smooth drainage of condensate.
It effectively prevents water accumulation on the base, improves the operational stability and aesthetics of the equipment, reduces the flow resistance of condensate, and ensures smooth drainage of condensate.
Smart Images

Figure CN115682421B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of heat pump technology, and in particular to a swimming pool heat pump that facilitates the removal of condensate. Background Technology
[0002] Commercially available heat pump pool units include components such as heating elements, heat exchange fins, a fan, a base, a front panel, a rear panel, side panels, and a top cover. The heating elements consist of a compressor and a heat exchanger. Both the heating elements and heat exchange fins are mounted on the base. The outer casing surrounds and secures the heating elements and heat exchange fins to the base. The top cover covers the heating elements, heat exchange fins, and fan, thus enclosing them. During operation, the compressor compresses and heats the liquid before sending it to the heat exchanger. Pool water enters the heat exchanger and exchanges heat with the heated pipes, thus increasing its temperature. The liquid then flows back to the heat exchange fins for cooling and finally returns to the compressor, forming a cycle. The fan cools the heat exchange fins. During operation, the compressor produces condensate, which, due to gravity, falls onto the base, forming condensate. Since the heating element and heat exchange fins are both mounted on the base, and the heating element produces condensate during operation, which falls onto the base due to gravity, the bottom of the heating element and heat exchange fins will come into contact with the condensate, preventing it from flowing to the drain. This results in water accumulation on the base for a long time. Summary of the Invention
[0003] To overcome the shortcomings of existing technologies, the present invention provides a swimming pool heat pump that facilitates the removal of condensate, thereby solving the aforementioned problems.
[0004] The technical solution adopted by the present invention to solve its technical problem is: a swimming pool heat pump that facilitates the removal of condensate, including a base, a shell, a top cover plate, a heating component and heat exchange fins, wherein the base, the shell and the top cover plate form an installation cavity, and the heating component and the heat exchange fins are disposed in the installation cavity;
[0005] The base includes a base plate, a support member, and a drain outlet; both the support member and the drain outlet are disposed on the base plate; the support member includes a connecting part and a supporting part, the upper side of the supporting part is connected to the connecting part, the lower side of the supporting part is connected to the base plate, and an avoidance channel is formed between the connecting part and the base plate;
[0006] The heating assembly and the heat exchange fins are connected to the upper surface of the connecting part.
[0007] It is worth noting that the base also includes arc-shaped side plates, which are symmetrically arranged on the left and right sides of the base plate;
[0008] The support member is divided into a first bending plate, a second bending plate, and a third bending plate;
[0009] The first bending plate is disposed at the rear edge of the base plate, and the support portion is provided on both sides of the connecting portion of the first bending plate;
[0010] The second bending plate is disposed on the left edge of the base plate, the support part is provided on the right side of the connecting part of the second bending plate, and the left side of the second bending plate is connected to the inner wall of the arc-shaped side plate located on the left side of the base plate.
[0011] The third bending plate is disposed on the right edge of the base plate, the support part is provided on the left side of the third bending plate, and the right side of the third bending plate is connected to the inner wall of the arc-shaped side plate located on the right side of the base plate.
[0012] The connecting portion of the first bent plate and the connecting portion of the second bent plate are used to install the heat exchange fins, and the connecting portion of the third bent plate is used to install the heating assembly.
[0013] Optionally, a second folded edge is provided on the right side of the connecting part of the second bent plate. The second folded edge is inclined upward and connected to the inner wall of the arc-shaped side plate located on the right side of the base plate.
[0014] The third bending plate has a third folded edge on both the front and rear sides of the connecting part. The lower side of the third folded edge is connected to the bottom plate. The left side of the third folded edge is an arc-shaped structure that matches the inner wall of the arc-shaped side plate located on the left side of the bottom plate.
[0015] Specifically, the connecting part has a first through hole, and a first mounting bolt is provided in the first through hole.
[0016] Preferably, the lower side of the support portion is provided with a first folded edge portion, which is parallel to the base plate and connected to the base plate.
[0017] It is worth noting that the pool heat pump also includes an exhaust assembly, which includes a fan, a bracket, and an exhaust cover. The fan is mounted on the base via the bracket, the exhaust cover is located on the front side of the fan, the exhaust cover has an exhaust hole, and the impeller of the fan is located inside the exhaust hole.
[0018] Specifically, both the base plate and the top cover plate are provided with a front flange and a supporting bending member; the front flange is located on the front side of the base plate and is perpendicular to the base plate, and / or the front flange is located on the front side of the top cover plate and is perpendicular to the top cover plate; the supporting bending member is located on the rear edge of the base plate, and / or the supporting bending member is located on the rear edge of the top cover plate;
[0019] The supporting bending member includes a support portion and a bent edge portion. One side of the bent edge portion is connected to the support portion, and the other side of the bent edge portion is connected to the base plate or the top cover plate. A condensate channel is formed between the support portion and the base plate, and / or between the support portion and the top cover plate. In the front flange and supporting bending member provided on the base plate, the upper surface of the support portion is flush with the upper surface of the front flange. In the front flange and supporting bending member provided on the top cover plate, the lower surface of the support portion is flush with the lower surface of the front flange.
[0020] The bottom of the air outlet cover is connected to the upper surface of the support portion of the supporting bent member provided on the base plate, and the top of the air outlet cover is connected to the lower surface of the support portion of the supporting bent member provided on the top cover plate.
[0021] Preferably, the support portion has a second through hole, and a second mounting bolt is provided in the second through hole.
[0022] Optionally, the housing includes a front grille, a rear grille, side grilles, a rear panel, and side panels;
[0023] The front grille is disposed on the front side of the mounting cavity; the rear grille and the rear panel are both disposed on the rear side of the mounting cavity, the rear grille is disposed near the heat exchange fins, the rear panel is disposed near the heating assembly, and the rear panel has a pipe interface; the side grille is disposed on the left side of the mounting cavity and near the heat exchange fins; the side panel is disposed on the right side of the mounting cavity, and the side panel has an operation panel.
[0024] It is worth noting that the left and right sides of the top cover plate have an arc-shaped structure.
[0025] The beneficial effects of this invention are as follows: In the base of the pool heat pump, the supporting member can support the heating element and heat exchange fins, preventing them from being directly connected to the base plate. Thus, condensate from the heating element dripping onto the base plate can flow through the clearance channel formed between the connecting part and the base plate, and then flow to the drain outlet, preventing water accumulation in the base. Furthermore, the supporting member is vertically arranged, and compared to the heating element and heat exchange fins, the contact area between the supporting member and the base plate is very small, thereby reducing the resistance to condensate flow and allowing the condensate to flow smoothly to the drain outlet. Attached Figure Description
[0026] Figure 1 An exploded view of a swimming pool heat pump that facilitates the removal of condensate in one embodiment of the present invention;
[0027] Figure 2An exploded view of a swimming pool heat pump that facilitates the removal of condensate water, according to another embodiment of the present invention;
[0028] Figure 3 This is a schematic diagram of the structure of a swimming pool heat pump that facilitates the removal of condensate in one embodiment of the present invention;
[0029] Figure 4 This is a schematic diagram of the top cover plate in one embodiment of the present invention;
[0030] Figure 5 This is a schematic diagram of the structure of the base plate and heating assembly in one embodiment of the present invention;
[0031] Figure 6 This is a schematic diagram of the structure of the base plate in one embodiment of the present invention;
[0032] Figure 7 This is a schematic diagram of the base plate in another embodiment of the present invention;
[0033] Figure 8 This is a schematic diagram of the structure of the first bending plate in one embodiment of the present invention;
[0034] Figure 9 This is a schematic diagram of the structure of the second bending plate in one embodiment of the present invention;
[0035] Figure 10 This is a schematic diagram of the structure of the third bending plate in one embodiment of the present invention;
[0036] Figure 11 This is a schematic diagram of the structure supporting the bending member in one embodiment of the present invention;
[0037] In the diagram: 1. Base; 11. Base plate; 12. Arc-shaped side plate; 13. Front flange; 15. Support component; 151. Connecting part; 1511. First through hole; 1512. First mounting bolt; 152. Support part; 1521. First folded edge; 153. Clearance passage; 154. First bent plate; 155. Second bent plate; 1551. Second folded edge; 156. Third bent plate; 1561. Third folded edge; 16. Supporting bent component; 161. Support part; 162. Second through hole; 163. Second mounting bolt; 164. Bent edge; 165. Condensate passage; 166. Drain outlet; 2. Outer shell; 21. Front grille; 22. Rear grille; 23. Side grille; 24. Rear panel; 241. Pipe interface; 25. Side panel; 3. Top cover plate; 4. Heating component; 5. Heat exchange fins; 6. Mounting cavity; 7. Exhaust assembly; 71. Fan; 72. Bracket; 73. Air outlet cover; 74. Air outlet hole. Detailed Implementation
[0038] The specific embodiments of the present invention will be further described below with reference to the accompanying drawings. It should be noted that these descriptions are for the purpose of aiding understanding the present invention, but do not constitute a limitation thereof. Furthermore, the technical features involved in the various embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.
[0039] like Figure 1-11 As shown, a pool heat pump that facilitates the removal of condensate includes a base 1, a housing 2, a top cover plate 3, a heating element 4, and heat exchange fins 5. The base 1, housing 2, and top cover plate 3 form an installation cavity 6, and the heating element 4 and the heat exchange fins 5 are disposed within the installation cavity 6.
[0040] The base 1 includes a base plate 11, a support member 15, and a drain outlet 166; both the support member 15 and the drain outlet 166 are disposed on the base plate 11, and the opening direction of the drain outlet 166 is vertically downward; the support member 15 includes a connecting part 151 and a supporting part 152, the upper side of the supporting part 152 is connected to the connecting part 151, and the lower side of the supporting part 152 is connected to the base plate 11, forming a clearance channel 153 between the connecting part 151 and the base plate 11; the connecting part 151 is parallel to the base plate 11;
[0041] The heating assembly 4 and the heat exchange fins 5 are connected to the upper surface of the connecting part 151.
[0042] In the base 1 of the pool heat pump, the support member 15 supports the heating element 4 and the heat exchange fins 5, preventing them from being directly connected to the base plate 11. This allows condensate from the heating element 4 to drip onto the base plate 11 and flow through the clearance channel 153 formed between the connection part 151 and the base plate 11, before flowing to the drain outlet 166, preventing water accumulation in the base 1. Furthermore, the support part 152 is vertically positioned, resulting in a smaller contact area with the base plate 11 compared to the heating element 4 and heat exchange fins 5. This reduces resistance to condensate flow, allowing it to flow smoothly to the drain outlet 166.
[0043] It is worth noting that the base 1 also includes arc-shaped side plates 12, which are symmetrically arranged on the left and right sides of the base plate 11; this avoids sharp edges on the base 1, thereby preventing the user from being injured by sharp edges; Figure 5-7As shown, the support member 15 is divided into a first bent plate 154, a second bent plate 155, and a third bent plate 156. The first bent plate 154 is disposed on the rear edge of the base plate 11, and the support portion 152 is provided on both sides of the connecting portion 151 of the first bent plate 154. The second bent plate 155 is disposed on the left edge of the base plate 11, and the support portion 152 is provided on the right side of the connecting portion 151 of the second bent plate 155. The left side of the second bent plate 155 is connected to the inner wall of the arc-shaped side plate 12 located on the left side of the base plate 11. The third bent plate 156 is disposed on the right edge of the base plate 11, and the support portion 152 is provided on the left side of the third bent plate 156. The right side of the third bent plate 156 is connected to the inner wall of the arc-shaped side plate 12 located on the right side of the base plate 11. The inner wall of plate 12 is connected; in this embodiment, the first bent plate 154 is supported by two support parts 152, thereby forming a clearance channel 153 below the connecting part 151; the right side of the second bent plate 155 is supported by the support part 152, and the left side is supported by the inner wall of the arc-shaped side plate 12, thereby forming a clearance channel 153 below the connecting part 151; the left side of the third bent plate 156 is supported by the support part 152, and the right side is supported by the inner wall of the arc-shaped side plate 12, thereby forming a clearance channel 153 below the connecting part 151; the connecting part 151 of the first bent plate 154 and the connecting part 151 of the second bent plate 155 are used to install the heat exchange fins 5, and the connecting part 151 of the third bent plate 156 is used to install the heating assembly 4. Figure 1 As shown, the heat exchange fins 5 have an L-shaped structure, allowing them to wrap around the rear and left sides of the pool heat pump, extending the length of the heat exchange pipes inside the heat exchange fins 5 and improving cooling efficiency. The first bending plate 154 and the second bending plate 155 together support the heat exchange fins 5; as shown... Figure 6 As shown, the surface area of the connecting portion 151 of the third bending plate 156 in the horizontal direction is larger than that of the first bending plate 154 in the horizontal direction, and also larger than that of the second bending plate 155 in the horizontal direction, so that the heating assembly 4 can be supported by the third bending plate 156.
[0044] Optional, such as Figure 9As shown, a second folded edge 1551 is provided on the right side of the connecting portion 151 of the second bent plate 155. The second folded edge 1551 is inclined upward and connected to the inner wall of the arc-shaped side plate 12 located on the right side of the base plate 11. The upwardly inclined second folded edge 1551 can cooperate with the inner wall of the arc-shaped side plate 12. Preferably, the second folded edge 1551 is connected to the inner wall of the arc-shaped side plate 12 by welding. In this embodiment, the connecting portion 151, the supporting portion 152, the first folded edge 1521, and the second folded edge 1551 are integrally formed and bent by a bending machine.
[0045] The connecting portion 151 of the third bent plate 156 has a third folded edge portion 1561 on both its front and rear sides. The lower side of the third folded edge portion 1561 is connected to the base plate 11. The left side of the third folded edge portion 1561 is an arc-shaped structure that cooperates with the inner wall of the arc-shaped side plate 12 located on the left side of the base plate 11. After the third folded edge portion 1561 is provided, the third folded edge portion 1561, the support portion 152, and the inner wall of the arc-shaped side plate 12 jointly support the connecting portion 151. After the heating component 4 is installed on the connecting portion 151, the third bent plate 156 can be prevented from being damaged by the excessive weight of the heating component 4. The left side of the arc-shaped third folded edge portion 1561 can increase the contact area with the inner wall of the arc-shaped side plate 12, thereby increasing the load-bearing capacity of the third folded edge portion 1561, and thus increasing the load-bearing capacity of the third bent plate 156. In this embodiment, the support portion 152 and the third folded edge portion 1561 are integrally formed and formed by bending with a bending machine.
[0046] Specifically, such as Figure 8-10 As shown, the connecting part 151 has a first through hole 1511, and a first mounting bolt 1512 is provided in the first through hole 1511. The head of the first mounting bolt 1512 is located in the clearance channel 153. After the screw of the first mounting bolt 1512 passes through the first through hole 1511, it is locked to the bottom of the heating component 4 or the heat exchange fin 5, thereby fixing the heating component 4 or the heat exchange fin 5. In this way, the first mounting bolt 1512 can be hidden, avoiding the need to open a hole in the base plate 11 or the arc-shaped side plate 12 to install the first mounting bolt 1512, thus improving the aesthetics.
[0047] Preferred, such as Figure 8-10As shown, the lower side of the support portion 152 is provided with a first folded edge portion 1521, which is parallel to the base plate 11 and connected to it. Thus, the first folded edge portion 1521 can fit snugly against the base plate 11. Preferably, the first folded edge portion 1521 is connected to the base plate 11 by welding. In this embodiment, the connecting portion 151, the support portion 152, and the first folded edge portion 1521 are integrally formed and bent using a bending machine.
[0048] It is worth noting that, such as Figure 1 As shown, the pool heat pump also includes an exhaust assembly 7, which includes a fan 71, a bracket 72, and an exhaust cover 73. The fan 71 is mounted on the base 1 via the bracket 72. The exhaust cover 73 is located on the front side of the fan 71 and has an exhaust hole 74. The impeller of the fan 71 is disposed within the exhaust hole 74. The fan 71 is supported by the bracket 72, away from the base plate 11, thus preventing the fan 71 from coming into contact with condensate and short-circuiting. The exhaust cover 73 prevents the drive mechanism of the fan 71 from being exposed. When the impeller of the fan 71 rotates, the heat in the mounting cavity 6 is exhausted to the outside through the exhaust hole 74.
[0049] Optional, such as Figure 4-7 As shown, both the base plate 11 and the top cover plate 3 are provided with a front flange 13 and a supporting bending member 16; the front flange 13 is provided on the front side of the base plate 11 and perpendicular to the base plate 11, and / or the front flange 13 is provided on the front side of the top cover plate 3 and perpendicular to the top cover plate 3; the supporting bending member 16 is provided on the rear edge of the base plate 11, and / or the supporting bending member 16 is provided on the rear edge of the top cover plate 3;
[0050] The supporting bending member 16 includes a supporting portion 161 and a bent edge portion 164. One side of the bent edge portion 164 is connected to the supporting portion 161, and the other side of the bent edge portion 164 is connected to the base plate 11 or the top cover plate 3. A condensate channel 165 is formed between the supporting portion 161 and the base plate 11, and / or between the supporting portion 161 and the top cover plate 3. In the front flange 13 and the supporting bending member 16 provided on the base plate 11, the upper surface of the supporting portion 161 is flush with the upper surface of the front flange 13. In the front flange 13 and the supporting bending member 16 provided on the top cover plate 3, the lower surface of the supporting portion 161 is flush with the lower surface of the front flange 13. The bent edge portion 164 is perpendicular to the supporting portion 161.
[0051] The bottom of the air outlet cover 73 is connected to the upper surface of the support portion 161 of the support bending member 16 provided on the base plate 11, and the top of the air outlet cover 73 is connected to the lower surface of the support portion 161 of the support bending member 16 provided on the top cover plate 3.
[0052] The front flange 13 is used to prevent condensate from seeping out from the front side of the base plate 11. The supporting bend 16 is used to install the air outlet cover 73 of the fan 71. The support portion 161 is supported by the bend 164, allowing condensate to flow through the condensate channel 165, thus preventing condensate from accumulating on the base plate 11. If the height of the support portion 161 is too low, condensate cannot flow through the condensate channel 165, resulting in water accumulation on the base plate 11. If the height of the support portion 161 is too high, the front flange 13 cannot cover the gap between the air outlet cover 73 and the base plate 11, exposing the drive mechanism of the fan 71. In the front flange 13 and supporting bend 16 on the base plate 11, when the upper surface of the support portion 161 is flush with the upper surface of the front flange 13, it not only prevents condensate from accumulating on the base plate 11, but also prevents water from accumulating on the base plate 11. The condensate can flow smoothly through the condensate channel 165, and the front flange 13 can also cover the gap between the air outlet cover 73 and the base plate 11, so that the drive mechanism of the fan 71 will not be exposed. Similarly, in the front flange 13 and the support bending member 16 provided on the top cover plate 3, when the lower surface of the support part 161 is flush with the lower surface of the top cover plate 3, the front flange 13 can cover the gap between the air outlet cover 73 and the top cover plate 3, so that the drive mechanism of the fan 71 will not be exposed.
[0053] Preferred, such as Figure 11 As shown, the support portion 161 has a second through hole 162, and a second mounting bolt 163 is provided in the second through hole 162. The head of the second mounting bolt 163 is located in the condensate channel 165, and the screw of the second mounting bolt 163 passes through the second through hole 162 and locks onto the air outlet cover 73 of the fan 71, thereby fixing the air outlet cover 73. In this way, the second mounting bolt 163 can be hidden, avoiding the need to open a hole in the base plate 11 or the top cover plate 3 to install the second mounting bolt 163, thus improving the aesthetics.
[0054] Specifically, such as Figure 1 and 2 As shown, the outer casing 2 includes a front grille 21, a rear grille 22, a side grille 23, a rear panel 24, and a side panel 25;
[0055] The front grille 21 is disposed on the front side of the mounting cavity 6; the rear grille 22 and the rear panel 24 are both disposed on the rear side of the mounting cavity 6, the rear grille is disposed near the heat exchange fins 5, the rear panel 24 is disposed near the heating assembly 4, and the rear panel 24 has a pipe interface 241; the side grille 23 is disposed on the left side of the mounting cavity 6 and near the heat exchange fins 5; the side panel 25 is disposed on the right side of the mounting cavity 6, and the side panel 25 has an operation panel.
[0056] The front grille 21 is located on the outside of the air outlet cover 73, allowing air blown from the air outlet 74 to pass through the front grille 21 and be discharged to the outside. The rear grille 22 and the side grilles 23 are both located close to the heat exchange fins 5, dissipating heat from the heat exchange fins 5 to the outside for cooling. A pipe for transporting pool water is connected to the pipe interface 241 on the rear panel 24, passing through the pipe interface 241 and connecting to the heat exchanger in the heating assembly 4. The wiring terminals of the operation panel on the side panel 25 are electrically connected to the heating assembly 4 and the fan 71, allowing the user to control the heating assembly 4 and the fan 71 by operating the operation panel.
[0057] Optional, such as Figure 1 As shown, the left and right sides of the top cover plate 3 have an arc-shaped structure. This avoids sharp edges on the top cover plate 3, thereby preventing the user from being injured by sharp edges.
[0058] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings, but the present invention is not limited to the described embodiments. For those skilled in the art, various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and these variations still fall within the protection scope of the present invention.
Claims
1. A swimming pool heat pump that facilitates the removal of condensate, characterized in that: It includes a base, a housing, a top cover, a heating assembly, and heat exchange fins. The base, housing, and top cover form an installation cavity, and the heating assembly and heat exchange fins are disposed within the installation cavity. The base includes a base plate, a support member, and a drain outlet; both the support member and the drain outlet are disposed on the base plate; the support member includes a connecting part and a supporting part, the upper side of the supporting part is connected to the connecting part, the lower side of the supporting part is connected to the base plate, and an avoidance channel is formed between the connecting part and the base plate; The heating assembly and the heat exchange fins are connected to the upper surface of the connecting part; The base also includes arc-shaped side plates, which are symmetrically arranged on the left and right sides of the base plate; The support member is divided into a first bending plate, a second bending plate, and a third bending plate; The first bending plate is disposed at the rear edge of the base plate, and the support portion is provided on both sides of the connecting portion of the first bending plate; The second bending plate is disposed on the left edge of the base plate, the support part is provided on the right side of the connecting part of the second bending plate, and the left side of the second bending plate is connected to the inner wall of the arc-shaped side plate located on the left side of the base plate. The third bending plate is disposed on the right edge of the base plate, the support part is provided on the left side of the third bending plate, and the right side of the third bending plate is connected to the inner wall of the arc-shaped side plate located on the right side of the base plate. The connecting portion of the first bent plate and the connecting portion of the second bent plate are used to install the heat exchange fins, and the connecting portion of the third bent plate is used to install the heating assembly; The second bent plate has a second folded edge on the right side of the connecting part. The second folded edge is inclined upward and connected to the inner wall of the arc-shaped side plate located on the right side of the base plate. The third bending plate has a third folded edge on both the front and rear sides of the connecting part. The lower side of the third folded edge is connected to the bottom plate. The left side of the third folded edge is an arc-shaped structure that matches the inner wall of the arc-shaped side plate located on the left side of the bottom plate. The connecting part has a first through hole, and a first mounting bolt is provided in the first through hole.
2. A swimming pool heat pump for easy condensate removal according to claim 1, characterized in that: The lower side of the support is provided with a first folded edge, which is parallel to the base plate and connected to the base plate.
3. A swimming pool heat pump for easy condensate removal according to claim 1, characterized in that: The pool heat pump also includes an exhaust assembly, which includes a fan, a bracket, and an exhaust cover. The fan is mounted on the base via the bracket, and the exhaust cover is located on the front side of the fan. The exhaust cover has an exhaust hole, and the impeller of the fan is located inside the exhaust hole.
4. A swimming pool heat pump for easy condensate removal according to claim 3, characterized in that: Both the base plate and the top cover plate are provided with a front flange and a supporting bending member; the front flange is provided on the front side of the base plate and perpendicular to the base plate, and / or the front flange is provided on the front side of the top cover plate and perpendicular to the top cover plate; the supporting bending member is provided on the rear edge of the base plate, and / or the supporting bending member is provided on the rear edge of the top cover plate; The supporting bending member includes a support portion and a bent edge portion. One side of the bent edge portion is connected to the support portion, and the other side of the bent edge portion is connected to the base plate or the top cover plate. A condensate channel is formed between the support portion and the base plate, and / or between the support portion and the top cover plate. In the front flange and supporting bending member provided on the base plate, the upper surface of the support portion is flush with the upper surface of the front flange. In the front flange and supporting bending member provided on the top cover plate, the lower surface of the support portion is flush with the lower surface of the front flange. The bottom of the air outlet cover is connected to the upper surface of the support portion of the supporting bent member provided on the base plate, and the top of the air outlet cover is connected to the lower surface of the support portion of the supporting bent member provided on the top cover plate.
5. A swimming pool heat pump for easy condensate removal according to claim 4, characterized in that: The support portion has a second through hole, and a second mounting bolt is provided in the second through hole.
6. A swimming pool heat pump for easy condensate removal according to claim 1, characterized in that: The housing includes a front grille, a rear grille, side grilles, a rear panel, and side panels; The front grille is disposed on the front side of the mounting cavity; the rear grille and the rear panel are both disposed on the rear side of the mounting cavity, the rear grille is disposed near the heat exchange fins, the rear panel is disposed near the heating assembly, and the rear panel has a pipe interface; the side grille is disposed on the left side of the mounting cavity and near the heat exchange fins; the side panel is disposed on the right side of the mounting cavity, and the side panel has an operation panel.
7. A swimming pool heat pump for easy condensate removal according to claim 6, characterized in that: The top cover plate has an arc-shaped structure on both the left and right sides.
Citation Information
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