A pool environment conditioning apparatus

CN224771665UActive Publication Date: 2026-09-18ZHONGSHAN PUPAIKE HEAT RECOVERY TECH CO LTD
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Patent Information

Application Number
CN202521327922.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-26
Publication Date
2026-09-18
Estimated Expiration
2035-06-26

AI Technical Summary

Technical Problem

[0002]现有室内泳池馆,为了提高用户舒适度,会对室内环境进行调节,如采用除湿机进行室内空气除湿,采用空调对室内空气温度进行调节,以及采用换热器对池水温度进行调节,需要采用多个设备实现环境调节,成本高,占地空间大,能源利用率低

Benefits of technology

本实用新型提供了一种泳池环境调节设备,包括设有第一腔体和第二腔体以及进风口和出风口的安装箱、设于第一腔体内的蒸发器、设于第一腔体内且位于蒸发器远离进风口一侧的冷凝器、设于安装箱上与冷凝器连通的进水口和出水口、设于第二腔体内与蒸发器和冷凝器连接的压缩机、以及位于冷凝器远离蒸发器一侧的送风机,使用时,压缩机将制冷剂压缩并输送至冷凝器中释放热量,散热后制冷剂输送至蒸发器中进行吸热,通过送风机将室内空气从进风口吸入,先经过蒸发器除湿,再经过冷凝器进行加热使空气温度升高,最后经出风口将除湿升温后的空气排回室内,同时池水从进水口通入冷凝器,使经压缩机排出的制冷剂的热量释放到池水中,实现池水加热,集除湿、空气温度调节、池水温度调节于一体,降低成本,减少占地空间,提高能源利用率。

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Abstract

This utility model belongs to the technical field of environmental control equipment, and particularly relates to a swimming pool environmental control device. It includes a mounting box with a first chamber, a second chamber, an air inlet, and an air outlet; an evaporator and a condenser located in the first chamber; a compressor located in the second chamber; and a blower located on the side of the condenser away from the evaporator. In use, the compressor compresses the refrigerant and delivers it to the condenser to release heat. After heat dissipation, the refrigerant is delivered to the evaporator for heat absorption. Indoor air is drawn in through the air inlet by the blower, first dehumidified by the evaporator, then heated by the condenser to raise the air temperature, and finally discharged back into the room through the air outlet. Simultaneously, pool water enters the condenser through the water inlet, releasing the heat from the refrigerant discharged by the compressor into the pool water, thus heating the pool water. This device integrates dehumidification, air temperature regulation, and pool water temperature regulation, reducing costs, minimizing space requirements, and improving energy efficiency.
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Description

Technical Field

[0001] This utility model belongs to the technical field of environmental control equipment, and in particular relates to a swimming pool environmental control device. Background Technology

[0002] To improve user comfort, existing indoor swimming pool facilities typically employ various methods to regulate the indoor environment. These include using dehumidifiers to dehumidify the indoor air, air conditioners to regulate the indoor air temperature, and heat exchangers to regulate the pool water temperature. This requires multiple devices to achieve environmental regulation, resulting in high costs, large footprints, and low energy efficiency. Summary of the Invention

[0003] The purpose of this invention is to provide a swimming pool environment control device that integrates dehumidification, indoor air temperature control, and indoor swimming pool water temperature control, thereby reducing costs, minimizing space requirements, and improving energy efficiency.

[0004] This utility model is achieved by the following technical solution: A swimming pool environment control device, comprising: The installation box contains a first cavity, a second cavity, an air inlet and an air outlet communicating with the first cavity; The evaporator is located within the first cavity; A condenser is located in the first cavity and on the side of the evaporator away from the air inlet. The mounting box is provided with an inlet and an outlet that communicate with the condenser. The compressor is located in the second chamber and is connected to both the evaporator and the condenser. A blower, located on the side of the condenser away from the evaporator, is used to exhaust air from the first chamber through the air outlet.

[0005] As described above, in a swimming pool environment control device, an air filter is provided on the air inlet, and a return air chamber is formed between the air filter and the evaporator.

[0006] As described above, in a swimming pool environment control device, the mounting box is provided with a fresh air inlet communicating with the first cavity.

[0007] As described above, in a swimming pool environment control device, a fresh air valve is provided on the fresh air inlet, and the fresh air valve includes: A damper mounting housing is provided on a mounting box, and the damper mounting housing is provided with a fresh air channel communicating with a fresh air inlet; The damper plate, which is rotatably mounted in the fresh air duct, is used to open or close the fresh air duct; The damper motor is mounted on the mounting box and its output end is connected to the damper plate to drive the damper plate to rotate.

[0008] As described above, in a swimming pool environment control device, an electrical control box is provided inside the second cavity, and the electrical control box is electrically connected to the compressor and the blower respectively.

[0009] As described above, in a swimming pool environment conditioning device, the second cavity is further provided with a liquid reservoir, which is connected to a condenser.

[0010] As described above, in a swimming pool environment control device, a third cavity is provided in the second cavity and communicates with the air outlet, and the blower is located in the third cavity and its air inlet is communicated with the first cavity.

[0011] As described above, in a swimming pool environment control device, the air outlet is located on the top or side of the mounting box.

[0012] Compared with the prior art, the present invention has the following advantages: This utility model provides a swimming pool environment control device, including an installation box with a first chamber, a second chamber, an air inlet, and an air outlet; an evaporator located in the first chamber; a condenser located in the first chamber on the side of the evaporator away from the air inlet; a water inlet and an outlet on the installation box connected to the condenser; a compressor located in the second chamber connected to the evaporator and the condenser; and a blower located on the side of the condenser away from the evaporator. In use, the compressor compresses the refrigerant and delivers it to the condenser to release heat. After heat dissipation, the refrigerant is delivered to the evaporator for heat absorption. The blower draws indoor air in through the air inlet, dehumidifies it first, then heats it in the condenser to raise its temperature, and finally discharges the dehumidified and heated air back into the room through the air outlet. Simultaneously, pool water flows into the condenser through the water inlet, releasing the heat from the refrigerant discharged by the compressor into the pool water, thus heating the pool water. This device integrates dehumidification, air temperature control, and pool water temperature control, reducing costs, minimizing space requirements, and improving energy efficiency. Attached Figure Description To more clearly illustrate the technical solutions in the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below.

[0013] Figure 1 This is a schematic diagram of the structure of the swimming pool environment control device in a specific embodiment of this utility model; Figure 2 This is a schematic diagram of the structure of the hidden installation box upper shell of the swimming pool environment control equipment in a specific embodiment of this utility model; Figure 3 This is an exploded structural diagram of the swimming pool environment control device in a specific embodiment of this utility model. Detailed Implementation To make the technical problems solved, technical solutions, and beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0014] When ordinal numbers such as "first" and "second" are mentioned in the embodiments of this utility model, unless they actually express the meaning of order according to the context, they should be understood as being used only for differentiation.

[0015] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0016] Specific embodiments, such as Figure 1-3 The swimming pool environment control device shown includes: a mounting box 1, which has a first cavity 2, a second cavity 3, an air inlet 41 and an air outlet 42 communicating with the first cavity 2; an evaporator 5, which is located in the first cavity 2; a condenser 6, which is located in the first cavity 2 and on the side of the evaporator 5 away from the air inlet 41, and the mounting box 1 has a water inlet 71 and a water outlet 72 communicating with the condenser 6; a compressor 8, which is located in the second cavity 3 and is connected to the evaporator 5 and the condenser 6 respectively; and a blower 9, which is located on the side of the condenser 6 away from the evaporator 5, for discharging the air in the first cavity 2 from the air outlet 42. In operation, the compressor, driven by a motor, compresses the refrigerant and delivers it to the condenser to release heat. After heat dissipation, the refrigerant is delivered to the evaporator to absorb heat. Indoor air is drawn in through the air inlet by a blower, first passing through the evaporator for dehumidification, then through the condenser where the heat from the refrigerant is released into the dehumidified air, raising its temperature. Finally, the dehumidified and heated air is discharged back into the room through the air outlet. Simultaneously, pool water is introduced into the condenser through the water inlet, allowing the heat from the refrigerant discharged by the compressor to be released into the pool water, thus heating the pool water. This system integrates dehumidification, air temperature regulation, and pool water temperature regulation, reducing costs, minimizing floor space, and improving energy efficiency.

[0017] Specifically, an air filter 10 is provided on the air inlet 41, and a return air chamber 11 is formed between the air filter 10 and the evaporator 5. More specifically, the air filter 10 is made of materials such as synthetic fiber, glass fiber, or activated carbon, and is used to filter out dust, bacteria, pollen, and other substances, making the air cleaner and more hygienic. The air to be dehumidified is drawn in under negative pressure by the blower and enters the return air chamber 11 through the air inlet 41. After passing through the air filter, it enters the evaporation and condensation section. The evaporator and condenser are integrated in the evaporation and condensation section, with the evaporator located near the inlet of the air to be dehumidified. The air to be dehumidified passes sequentially through the air filter, evaporator, and condenser in the evaporation and condensation section, transforming the air into dehumidified air with reduced humidity, increased cleanliness, and a more suitable temperature.

[0018] In addition, the mounting box 1 is provided with a fresh air inlet 12 that communicates with the first cavity 2. The dehumidified air will enter the fresh air mixing section, which is provided with a fresh air inlet to introduce external fresh air and mix it with the dehumidified air to form mixed air, replenishing the oxygen content of the air and making the air fresher and healthier.

[0019] Specifically, the fresh air inlet 12 is equipped with a fresh air valve 13, which includes: a valve mounting housing 131, which is mounted on the mounting box 1, and a fresh air channel 132 communicating with the fresh air inlet 12; a valve plate 133, which is rotatably mounted in the fresh air channel 132 for opening or closing the fresh air channel 132; and a valve motor (not shown in the figure), which is mounted on the mounting box 1 and whose output end is connected to the valve plate 133 for driving the valve plate 133 to rotate. In use, the valve plate 133 is driven to rotate by the motor, thereby adjusting the size of the ventilation opening between the valve plate 133 and the fresh air channel 132. This allows the external fresh air entering the fresh air mixing section to be adjusted according to actual needs, thereby controlling the amount of fresh air introduced. The valve motor is current technology and will not be described in detail here.

[0020] Furthermore, an electrical control box 14 is installed inside the second cavity 3, which is electrically connected to the compressor 8 and the blower 9. Specifically, the compressor and blower adopt full DC inverter technology, which can automatically and intelligently adjust according to the temperature and humidity load of the pool space to achieve energy-saving operation. For example, when the temperature and humidity load of the pool space is detected to be relatively high, the compressor and blower will operate at high frequency to ensure that the load demand of the pool space is met, and the constant temperature and humidity can be quickly achieved. Conversely, when the temperature and humidity load of the pool space is detected to be relatively low or has reached the set target values ​​for the pool environment, or when the client requests a silent mode during nighttime operation, the compressor and blower will operate at low frequency to ensure that the load demand of the pool space is met. Because it is operating at low frequency, the noise of the compressor and blower can be controlled very low, and the electrical input power is also very low, achieving the purpose of low-frequency noise reduction and energy saving.

[0021] More specifically, the second cavity 3 is also equipped with a liquid receiver 15, which is connected to the condenser 6. Specifically, the second cavity 3 is also equipped with a solenoid valve 17. The liquid receiver, connected to the condenser, is used to store refrigerant and can adjust the refrigerant supply according to changes in the evaporator load via the solenoid valve 17, making its use more flexible.

[0022] Furthermore, the second cavity 3 is provided with a third cavity 16 that communicates with the air outlet 42, and the blower 9 is located in the third cavity 16 and its air inlet communicates with the first cavity 2.

[0023] Furthermore, the air outlet 42 is located on the top or side of the mounting box 1. The position of the air outlet 42 can be set according to the actual situation, making it more flexible to use.

[0024] The above description is one embodiment provided in conjunction with specific content, and does not imply that the specific implementation of this utility model is limited to these descriptions. Furthermore, due to different industry naming conventions, it is not limited to the above names or English names. Any methods or structures similar to or identical to those of this utility model, or any technical deductions or substitutions made based on the concept of this utility model, should be considered within the scope of protection of this utility model.

Claims

1. A swimming pool environment control device, characterized in that, include: The installation box (1) is provided with a first cavity (2), a second cavity (3), an air inlet (41) and an air outlet (42) connected to the first cavity (2); Evaporator (5), which is located inside the first cavity (2); The condenser (6) is located in the first cavity (2) and on the side of the evaporator (5) away from the air inlet (41). The mounting box (1) is provided with an inlet (71) and an outlet (72) that communicate with the condenser (6). The compressor (8) is located in the second cavity (3) and is connected to the evaporator (5) and the condenser (6) respectively; A blower (9), located on the side of the condenser (6) away from the evaporator (5), is used to exhaust air from the first chamber (2) through the air outlet (42).

2. The swimming pool environment control device according to claim 1, characterized in that, An air filter (10) is provided on the air inlet (41), and a return air cavity (11) is formed between the air filter (10) and the evaporator (5).

3. The swimming pool environment control device according to claim 1, characterized in that, The mounting box (1) is provided with a fresh air inlet (12) that communicates with the first cavity (2).

4. The swimming pool environment control device according to claim 3, characterized in that, The fresh air inlet (12) is provided with a fresh air valve (13), the fresh air valve (13) comprising: A damper mounting housing (131) is provided on the mounting box (1), and the damper mounting housing (131) is provided with a fresh air channel (132) that communicates with the fresh air inlet (12). The damper plate (133) is rotatably disposed in the fresh air duct (132) and is used to open or close the fresh air duct (132). The air valve motor is mounted on the mounting box (1) and its output end is connected to the air valve plate (133) to drive the air valve plate (133) to rotate.

5. The swimming pool environment control device according to claim 1, characterized in that, The second cavity (3) is equipped with an electrical control box (14), which is electrically connected to the compressor (8) and the blower (9).

6. The swimming pool environment control device according to claim 1, characterized in that, The second cavity (3) is also provided with a liquid reservoir (15), which is connected to the condenser (6).

7. The swimming pool environment control device according to claim 1, characterized in that, The second cavity (3) is provided with a third cavity (16) that communicates with the air outlet (42), and the blower (9) is located in the third cavity (16) and its air inlet communicates with the first cavity (2).

8. A swimming pool environment control device according to claim 7, characterized in that, The air outlet (42) is located on the top or side of the mounting box (1).