CN217685654U - Swimming pool dehumidification heat pump unit with oxygenation, purification and dehumidification functions - Google Patents

Swimming pool dehumidification heat pump unit with oxygenation, purification and dehumidification functions Download PDF

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Publication number
CN217685654U
CN217685654U CN202221170786.8U CN202221170786U CN217685654U CN 217685654 U CN217685654 U CN 217685654U CN 202221170786 U CN202221170786 U CN 202221170786U CN 217685654 U CN217685654 U CN 217685654U
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air
box
oxygen
pump unit
swimming pool
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CN202221170786.8U
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曾凡东
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Hangzhou Zibon Environment Equipment Co ltd
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Hangzhou Zibon Environment Equipment Co ltd
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Abstract

The utility model discloses a dehumidifying heat pump unit with oxygenation, purification and dehumidification functions for a swimming pool, which comprises an oxygen generating mechanism, a filtering mechanism, a condenser and an evaporator; the return air inlet is connected with the input port of the oxygen generating mechanism, the nitrogen output port of the oxygen generating mechanism is connected with the exhaust outlet, and the oxygen output port of the oxygen generating mechanism is communicated with the filtering mechanism; the fresh air inlet is arranged at the upstream of the filtering mechanism; and the downstream of the filtering mechanism is sequentially provided with an evaporator, a condenser and an air supply outlet. The oxygen generation mechanism discharges nitrogen to the air outlet and provides oxygen to the downstream, so that the oxygen content of the air supply outlet is improved, and the oxygen increasing function is achieved; the purification function is achieved through the filtering mechanism; the air temperature is reduced through the evaporator, a dehumidification function is achieved, the air of the condenser is heated, and the air supply comfort is improved.

Description

Swimming pool dehumidification heat pump unit with oxygenation, purification and dehumidification functions
Technical Field
The utility model relates to a swimming pool heat pump unit that dehumidifies technical field, concretely relates to take oxygenation, purify, dehumidification function's swimming pool heat pump unit that dehumidifies.
Background
If the air humidity of the indoor swimming pool is high and dehumidification is not timely adopted to control the proper humidity, water drops can be condensed on a ceiling, a wall and glass, indoor decoration is corroded, and meanwhile, people feel uncomfortable. Therefore, a pool dehumidification heat pump unit is needed to dehumidify the indoor pool. The existing dehumidifying heat pump unit for the swimming pool achieves the effect of energy saving by being provided with an air return opening and repeatedly utilizing indoor air, but the oxygen content of the indoor air is reduced to some extent, and the oxygen content of air supply is improved by adjusting the air inlet volume of fresh air generally, but the oxygen content of the indoor air still cannot reach outdoor oxygen content.
Therefore, it is necessary to design a dehumidifying heat pump unit with oxygenation, purification and dehumidification functions for a swimming pool.
SUMMERY OF THE UTILITY MODEL
To the above-mentioned technical problem one that exists among the prior art, the utility model provides a take oxygenation, purification, dehumidification function's swimming pool dehumidification heat pump set to improve the oxygen content of air supply, improve the air oxygen content of indoor swimming pool, improve the travelling comfort.
The utility model discloses a dehumidifying heat pump unit with functions of oxygenation, purification and dehumidification for a swimming pool, which comprises an oxygen generating mechanism, a filtering mechanism, a condenser and an evaporator; the return air inlet is connected with the input port of the oxygen generating mechanism, the nitrogen output port of the oxygen generating mechanism is connected with the air exhaust port, and the oxygen output port of the oxygen generating mechanism is communicated with the filtering mechanism; the fresh air inlet is arranged at the upstream of the filtering mechanism; and the downstream of the filtering mechanism is sequentially provided with an evaporator, a condenser and an air supply outlet.
Preferably, the filtering mechanism comprises a filtering bracket and a filtering net arranged on the filtering bracket.
Preferably, one end of the outdoor condenser is connected with the output end of the compressor, and the other end of the outdoor condenser is connected with the liquid storage tank;
and a drying filter is also arranged between the expansion valve and the liquid storage tank.
Preferably, the box body comprises an air return box and a fresh air box, and the fresh air opening is formed in the fresh air box;
the air return box is provided with an air return inlet and an air outlet,
the air return box is arranged at the upstream of the fresh air box, and the air outlet and the fresh air inlet are sequentially arranged at the downstream of the air return inlet.
Preferably, the box body further comprises a control box and an air supply box, the compressor is arranged in the control box, and the air supply outlet is arranged on the air supply box.
Preferably, the evaporator is arranged in the dehumidification box, the evaporator is provided with a heat pipe and a fin,
the control box, the air return box, the fresh air box, the dehumidification box and the air supply box are connected in sequence;
one end of the heat pipe is connected with the liquid storage tank, and the other end of the heat pipe is connected with the input end of the compressor through the gas collecting pipe.
Preferably, the liquid storage tank is connected with the heat pipe through a liquid inlet pipe,
one end of the liquid inlet pipe is provided with a plurality of shunting heads, and the shunting heads are connected with one end of the heat pipe through shunting pipes;
the other end of the heat pipe is connected with the gas collecting pipe through a collecting pipe;
two ends of the collecting pipe are respectively provided with a sealing cover,
and a nozzle is arranged in the liquid inlet pipe.
Preferably, a liquid collecting disc is arranged on the lower side of the evaporator.
Preferably, the oxygen generating mechanism comprises an oxygen generating compressor, a switching valve, a double throttle bridge and two molecular sieve adsorption pieces,
the input end of the oxygen generating compressor is connected with the input port, the output end of the oxygen generating compressor is connected with the air inlet of the switching valve,
two air outlets of the switching valve are respectively connected with two molecular sieve adsorption pieces, and the air outlets of the molecular sieve adsorption pieces are connected with an oxygen output port through double throttle bridges;
and the exhaust port of the switching valve is connected with the nitrogen output port.
Compared with the prior art, the beneficial effects of the utility model are that: the oxygen generation mechanism discharges nitrogen to the air outlet and provides oxygen to the downstream, so that the oxygen content of the air supply outlet is improved, and the oxygen increasing function is achieved; the purification function is achieved through the filtering mechanism; the air temperature is reduced through the evaporator, a dehumidification function is achieved, air of the condenser is heated, and the comfort of air supply is improved.
Drawings
FIG. 1 is a schematic view of the structure of the dehumidifying heat pump unit with aeration, purification and dehumidification functions for the swimming pool of the present invention;
FIG. 2 is a cross-sectional view of a swimming pool dehumidification heat pump unit;
FIG. 3 is a schematic view of a header connection;
FIG. 4 is a logic block diagram of a swimming pool dehumidification heat pump unit;
fig. 5 is a logic block diagram of an oxygen generation mechanism.
The mark in the figure is:
1 box body, 11 evaporator, 12 condenser, 13 compressor, 14 liquid storage tank, 15 expansion valve, 16 drying filter, 17 filtering mechanism,
2 gas collecting pipe, 21 collecting pipe, 22 shunt pipe, 23 shunt head, 26 heat pipe elbow, 27 sealing cover, 28 spray nozzle, 29 liquid inlet pipe,
31 return air inlet, 32 exhaust outlet, 33 exhaust component, 34 fresh air inlet, 36 air supply outlet, 37 air supply component,
41 air return boxes, 42 new air boxes, 44 liquid collecting trays, 45 control boxes, 46 dehumidification boxes and 47 air supply boxes;
5 oxygen generating mechanism, 51 input port, 52 oxygen output port, 53 nitrogen output port, 54 oxygen generating compressor, 55 switching valve, 56 double throttle bridge, 57 molecular sieve adsorbing member.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
The invention is described in further detail below with reference to the accompanying drawings:
a swimming pool dehumidifying heat pump unit with oxygenation, purification and dehumidification functions, as shown in fig. 1-5, comprises an oxygen generating mechanism 5, a filtering mechanism 17, a condenser 12 and an evaporator 11; the return air inlet 31 is connected with the input port 51 of the oxygen making mechanism 5, the nitrogen output port 53 of the oxygen making mechanism 5 is connected with the exhaust port 32, and the oxygen output port 52 of the oxygen making mechanism 5 leads to the filtering mechanism 17; the fresh air port 34 is provided upstream of the filter mechanism 17; the evaporator 11, the condenser 12, and the air supply outlet 36 are provided in this order downstream of the filter mechanism 17.
The oxygen generation mechanism discharges nitrogen to the air outlet and provides oxygen to the downstream so as to improve the oxygen content of the air outlet and achieve the function of oxygenation; the purification function is achieved through the filtering mechanism; the air temperature is reduced through the evaporator, a dehumidification function is achieved, the condenser heats the dehumidified air, and the air supply comfort is improved.
Wherein, the filter mechanism 17 comprises a filter support and a filter screen arranged on the filter support, and air is purified through the filter screen. The fresh air inlet is arranged at the downstream of the air return inlet and the air outlet.
The utility model discloses can also include outdoor condenser (not shown in the figure), outdoor condenser one end is connected with the output of compressor, and the other end is connected with the liquid storage pot. The outdoor condenser and the condenser form a double-path heat radiation function. A filter drier 16 may also be provided between the expansion valve 15 and the reservoir tank 14.
As shown in fig. 1 and fig. 2, the present invention is provided with a box body 1, the box body 1 comprises a return air box 41 and a fresh air box 42, and a fresh air port 34 is arranged on the fresh air box 42; the return air box 41 is provided with an air return opening 31 and an air discharge opening 32, and the return air box 41 is provided upstream of the fresh air box 42, and as shown in fig. 4, the air discharge opening 32 and the fresh air opening 34 are provided downstream of the air return opening 31 in this order. Indoor return air enters from the return air inlet 31, part of the indoor return air is discharged from the exhaust outlet 32, and part of the indoor return air enters the fresh air box to be mixed with fresh air, so that the return air is recycled. The amount of return air used can be set by the amount of air discharged through the air outlet, and can be discharged through the air discharge assembly 33 and supplied through the air supply assembly 37.
The box body also comprises a control box 45, an air supply box 47 and a dehumidification box 46, and the compressor 13 is arranged in the control box 45; the air blowing port 36 is provided in the air blowing box 47, and the evaporator 11 is provided in the dehumidifying box 46. The control box, the air return box, the fresh air box, the dehumidification box and the air supply box are connected in sequence.
The evaporator 11 is disposed in the dehumidification tank 46 (not shown), and the evaporator 11 is provided with heat pipes and fins (not shown), one end of each heat pipe is connected to the liquid storage tank 14, and the other end of each heat pipe is connected to the input end of the compressor 13 through the gas collecting pipe 2.
The liquid storage tank 14 is connected with the heat pipe through a liquid inlet pipe 29, as shown in fig. 3, one end of the liquid inlet pipe 29 is provided with a plurality of shunting heads 23, and the shunting heads 23 are connected with one end of the heat pipe through shunting pipes 22; the other end of the heat pipe is connected with the gas collecting pipe 2 through a collecting pipe 21; both ends of the header 21 are provided with caps 27, respectively. Wherein the heat pipe may be connected to the shunt tube 22 via a heat pipe elbow 26. Nozzles 28 may be provided in the inlet pipe to provide more uniform distribution of the coolant.
A sump 44 is provided at a lower side of the evaporator 11 to collect the dehumidified condensed water.
As shown in fig. 5, the oxygen generation mechanism 5 includes an oxygen generation compressor 54, a switching valve 55, a double throttle bridge 56 and two molecular sieve adsorbers 57, the input end of the oxygen generation compressor 54 is connected to the input port 51, the output end is connected to the air inlet of the switching valve 55, two air outlets of the switching valve 55 are respectively connected to the two molecular sieve adsorbers 57, and the air outlet of the molecular sieve adsorbers 57 is connected to the oxygen output port 52 through the double throttle bridge 56; the exhaust port of the switching valve 55 is connected to the nitrogen gas output port 53.
The switching valve is used for switching gas paths, the molecular sieve adsorption piece adsorbs nitrogen in air under pressurization, and releases the adsorbed nitrogen under low pressure, so that the effects of nitrogen discharge and oxygen increase are achieved.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (9)

1. A dehumidifying heat pump unit with oxygenation, purification and dehumidification functions for a swimming pool is characterized by comprising an oxygen generating mechanism, a filtering mechanism, a condenser and an evaporator;
the return air inlet is connected with the input port of the oxygen generating mechanism, the nitrogen output port of the oxygen generating mechanism is connected with the air exhaust port, and the oxygen output port of the oxygen generating mechanism is communicated with the filtering mechanism;
the fresh air inlet is arranged at the upstream of the filtering mechanism;
and the downstream of the filtering mechanism is sequentially provided with an evaporator, a condenser and an air supply outlet.
2. The swimming pool dehumidification heat pump unit of claim 1, wherein the filter mechanism comprises a filter support and a filter screen mounted on the filter support, and the fresh air inlet is disposed downstream of the return air inlet.
3. The swimming pool dehumidification heat pump unit of claim 1, further comprising an outdoor condenser, wherein one end of the outdoor condenser is connected to the output end of the compressor, and the other end of the outdoor condenser is connected to the liquid storage tank;
a drying filter is also arranged between the expansion valve and the liquid storage tank.
4. The swimming pool dehumidification heat pump unit of claim 1, further comprising a box body, wherein the box body comprises a return air box and a fresh air box, and the fresh air port is arranged on the fresh air box;
the air return box is provided with an air return inlet and an air outlet,
the air return box is arranged at the upstream of the fresh air box, and the air outlet and the fresh air inlet are sequentially arranged at the downstream of the air return inlet.
5. The swimming pool dehumidification heat pump unit as recited in claim 4, wherein said housing further comprises a control box and a supply box, the compressor is disposed in said control box, and the supply opening is disposed on the supply box.
6. The swimming pool dehumidification heat pump unit of claim 5, wherein the evaporator is arranged in the dehumidification tank, the evaporator is provided with heat pipes and fins,
the control box, the air return box, the fresh air box, the dehumidification box and the air supply box are connected in sequence;
one end of the heat pipe is connected with the liquid storage tank, and the other end of the heat pipe is connected with the input end of the compressor through the gas collecting pipe.
7. The swimming pool dehumidification heat pump unit of claim 6, wherein said liquid storage tank is connected with said heat pipe by a liquid inlet pipe,
one end of the liquid inlet pipe is provided with a plurality of shunting heads, and the shunting heads are connected with one end of the heat pipe through shunting pipes;
the other end of the heat pipe is connected with the gas collecting pipe through a collecting pipe;
two ends of the collecting pipe are respectively provided with a sealing cover,
and a nozzle is arranged in the liquid inlet pipe.
8. The swimming pool dehumidification heat pump unit of claim 4, wherein a liquid collecting pan is provided under said evaporator.
9. The swimming pool dehumidification heat pump unit of claim 1, wherein the oxygen generation mechanism comprises an oxygen generation compressor, a switching valve, a double throttle bridge and two molecular sieve adsorption pieces,
the input end of the oxygen generating compressor is connected with the input port, the output end of the oxygen generating compressor is connected with the air inlet of the switching valve,
two air outlets of the switching valve are respectively connected with two molecular sieve adsorption pieces, and the air outlets of the molecular sieve adsorption pieces are connected with an oxygen output port through double throttle bridges;
and the exhaust port of the switching valve is connected with the nitrogen output port.
CN202221170786.8U 2022-05-16 2022-05-16 Swimming pool dehumidification heat pump unit with oxygenation, purification and dehumidification functions Active CN217685654U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221170786.8U CN217685654U (en) 2022-05-16 2022-05-16 Swimming pool dehumidification heat pump unit with oxygenation, purification and dehumidification functions

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221170786.8U CN217685654U (en) 2022-05-16 2022-05-16 Swimming pool dehumidification heat pump unit with oxygenation, purification and dehumidification functions

Publications (1)

Publication Number Publication Date
CN217685654U true CN217685654U (en) 2022-10-28

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ID=83738577

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221170786.8U Active CN217685654U (en) 2022-05-16 2022-05-16 Swimming pool dehumidification heat pump unit with oxygenation, purification and dehumidification functions

Country Status (1)

Country Link
CN (1) CN217685654U (en)

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