CN219127162U - Oxygen cabin air conditioning system - Google Patents

Oxygen cabin air conditioning system Download PDF

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Publication number
CN219127162U
CN219127162U CN202223421738.4U CN202223421738U CN219127162U CN 219127162 U CN219127162 U CN 219127162U CN 202223421738 U CN202223421738 U CN 202223421738U CN 219127162 U CN219127162 U CN 219127162U
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oxygen cabin
water
radiation plate
air conditioning
conditioning system
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CN202223421738.4U
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潘向辉
孙磊
姚振涛
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Shanghai Hengyi Environmental Technology Co ltd
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Shanghai Hengyi Environmental Technology Co ltd
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Abstract

The utility model discloses an oxygen cabin air conditioning system, which relates to the field of oxygen cabin air conditioning systems, and is technically characterized in that: including setting up the host computer outside the oxygen cabin, the host computer can provide circulation hot water and circulation cold water, be provided with delivery port and return water mouth on the host computer, be provided with dehumidifier and radiant panel in the oxygen cabin, the radiant panel is inside hollow platy structure, be provided with respectively on the radiant panel with its inside intercommunication's entry and export, through advancing water piping connection between the delivery port of host computer and the entry of dehumidifier and radiant panel, through return water piping connection between the return water mouth of export and host computer of radiant panel. According to the utility model, the temperature in the oxygen cabin is regulated and controlled by radiating the cold quantity or the heat quantity through the radiation plate, so that the blowing sense is avoided, the radiating cold quantity or the heat quantity is more uniform, the temperature fluctuation is small, and the comfort level is good.

Description

Oxygen cabin air conditioning system
Technical Field
The utility model relates to the field of oxygen cabin air conditioning systems, in particular to an oxygen cabin air conditioning system.
Background
Along with the acceleration of the rhythm of life, our health suffers from invasion, dizziness, insomnia, dysphoria and other sub-health states, which afflict daily life work at all times. A significant portion of the sub-health characterization is intimately associated with long-term chronic hypoxia. When the body is in a sub-health state, blood viscosity increases and blood oxygen transport capacity correspondingly decreases. High-intensity work and bad living habits lead to the increase of oxygen consumption of the body, and when the oxygen transmission capacity is insufficient and exceeds the physiological limit, the body is tired for a long time and relatively lacks oxygen, and sub-health symptoms also appear.
The oxygen cabin with oxygen inhalation or proper air pressure can quickly improve the harm to the body caused by hypoxia. More and more health institutions, leisure places and families begin to adopt a household hyperbaric oxygen chamber as an oxygen therapy carrier, the household hyperbaric oxygen chamber is regulated in oxygen concentration and pressure value for safety, and fresh air and high-concentration oxygen are continuously input into the chamber, so that the oxygen chamber is stabilized in the oxygen-enriched environment with the atmospheric pressure of not more than 1.3 and safety. At this time, the pressure and the oxygen concentration in the cabin are slightly higher than those in normal atmosphere and lower than those in the medical oxygen cabin, so that the medical oxygen cabin is suitable for more groups in a wider range.
However, in the conventional micro-hyperbaric oxygen chamber, the air tightness (131 kPa) inside the oxygen chamber is ensured by isolating the chamber space, so that the air in the chamber cannot be exchanged with the air in the oxygen chamber, and the air cannot be adjusted. If air conditioning is not adopted, the interior of the oxygen cabin is overheated or supercooled, and the comfort level cannot be met. At present, a common wall-mounted split air conditioner is generally adopted in an oxygen cabin to adjust the indoor temperature, but the following problems still exist:
1. the oxygen cabin space is smaller, and no small air conditioner corresponds to the oxygen cabin space, so that the temperature fluctuation in the oxygen cabin is easy to be caused greatly;
2. the air outlet of the air conditioner directly blows towards people, and the blowing sense is too strong;
3. the indoor unit components are extremely easy to cause oxidation, and the aging of electronic components is accelerated (oxygen-enriched environment in an oxygen cabin).
Aiming at the problems, the Chinese patent with publication number of CN211214042U discloses an oxygen cabin air conditioning system, which has the technical scheme that: the device comprises an external machine, a compressor and a condenser, wherein the external machine is positioned outside an oxygen cabin and comprises a box body, and the compressor and the condenser are positioned in the box body; the inner machine is installed in the base of the oxygen cabin and comprises a shell and an evaporator located in the shell, an expansion valve is arranged at the inlet end of the evaporator and connected with the output end of the condenser through a high-pressure pipe, the input end of the evaporator is connected with the input end of the compressor through a low-pressure pipe, a fan facing the evaporator is arranged in the shell, a flexible air outlet pipe is arranged at the air outlet of the inner machine, and the flexible air outlet pipe is installed on the inner wall of the oxygen cabin in a fitting mode and used for conveying cold air to the upper portion of the oxygen cabin.
The air conditioning system has simple and compact structure, small volume and light weight, but the internal machine of the air conditioning system is still similar to the internal machine principle of the traditional air conditioner, and the air conditioning system still has air flow entering an oxygen cabin to generate blowing sense, so that human body discomfort is caused, and the aging speed of internal machine elements is increased.
There is therefore a need to propose a new solution to this problem.
Disclosure of Invention
Aiming at the defects of the prior art, the utility model aims to provide an oxygen cabin air conditioning system which regulates and controls the temperature in an oxygen cabin by radiating cold or heat through a radiation plate, so that blowing sense is avoided, the radiating cold or heat is more uniform, the temperature fluctuation is small, and the comfort level is better.
The technical aim of the utility model is realized by the following technical scheme: the utility model provides an oxygen cabin air conditioning system, includes the host computer that sets up outside the oxygen cabin, the host computer can provide circulation hot water and circulation cold water, be provided with delivery port and return water mouth on the host computer, be provided with dehumidifier and radiant panel in the oxygen cabin, the radiant panel is inside hollow platy structure, be provided with respectively on the radiant panel rather than the entry and the export of inside intercommunication, through advancing water piping connection between the delivery port of host computer and the entry of dehumidifier and radiant panel, through return piping connection between the return water mouth of export and host computer of radiant panel.
In one embodiment, the radiation plates are arranged in a plurality, and the radiation plates are connected in series through pipelines.
In one embodiment, the radiating plate is a metal radiating plate.
In one embodiment, the radiation plate is internally provided with a return waterway.
In one embodiment, the dehumidifier comprises a heat exchange tube, a fin arranged on the heat exchange tube and a water collecting box arranged below the heat exchange tube and the fin, wherein the water inlet pipe comprises a first tube body and a second tube body, one end of the first tube body is connected with a water outlet of a host, the other end of the first tube body is connected with one end of the heat exchange tube, the other end of the heat exchange tube is connected with one end of the second tube body, the other end of the second tube body is connected with an inlet of a radiation plate, the dehumidifier further comprises a fan for blowing air into an oxygen cabin, and one side of the fan is further provided with an electric heater.
In one embodiment, the host comprises a shell, a water tank arranged in the shell, a circulating water pump connected between the water tank and the water outlet, and an air conditioner refrigerating and heating system for refrigerating or heating water in the water tank, wherein the water return port is communicated with the water tank.
In summary, the utility model has the following beneficial effects: when the air conditioner is in operation, the host machine conveys circulating cold water into the dehumidifier, so that the dehumidifier is cooled to remove moisture in the oxygen cabin, the oxygen cabin is in a dry and comfortable environment, after the circulating cold water or the circulating hot water enters the radiation plate, the radiation plate can radiate cold energy or heat so as to control the temperature in the oxygen cabin, the radiation plate is adopted to replace an indoor unit of the air conditioner, the host machine is arranged outside the oxygen cabin, the radiation plate is arranged in the oxygen cabin, the structure is smaller and more compact, the whole aesthetic property of the oxygen cabin is not damaged, the radiation plate is not provided with complex electrical elements, the damage is not easy, meanwhile, the temperature in the oxygen cabin is regulated and controlled through the radiation of the radiation plate, the blowing sense is avoided, the radiated cold energy or heat is more uniform, the temperature fluctuation is small, and the air conditioner has better comfort degree.
Drawings
FIG. 1 is a schematic view of an oxygen cabin air conditioning system according to an embodiment of the present application;
FIG. 2 is an enlarged view of portion A of FIG. 1;
fig. 3 is an enlarged view of the portion B in fig. 1.
In the figure: 1. an oxygen compartment; 2. a host; 21. a housing; 22. an air conditioner refrigerating and heating system; 23. a water tank; 24. a circulating water pump; 3. a dehumidifier; 31. a heat exchange tube; 32. a fin; 33. a water collecting box; 34. an electric heater; 35. a blower; 4. a radiation plate; 5. a water inlet pipe; 51. a first tube body; 52. a second tube body; 6. and a water return pipe.
Detailed Description
In order that the above objects, features and advantages of the utility model will be readily understood, a more particular description of the utility model will be rendered by reference to the appended drawings.
As shown in fig. 1 to 3, an embodiment of the present application provides an air conditioning system for an oxygen cabin 1, which includes a main unit 2 disposed outside the oxygen cabin 1, wherein the main unit 2 can provide circulating hot water and circulating cold water, and a water outlet and a water return port are disposed on the main unit 2. The oxygen cabin 1 is internally provided with a dehumidifier 3 and a radiation plate 4, the radiation plate 4 is of a hollow plate-shaped structure, the radiation plate 4 is respectively provided with an inlet and an outlet which are communicated with the interior of the radiation plate 4, a water outlet of the host 2 is connected with the dehumidifier 3 and the inlet of the radiation plate 4 through a water inlet pipe 5, and the outlet of the radiation plate 4 is connected with a water return port of the host 2 through a water return pipe 6.
During operation, the host 2 conveys the circulating cold water into the dehumidifier 3, so that the dehumidifier 3 is cooled to remove the moisture in the oxygen cabin 1, the oxygen cabin 1 is in a dry and comfortable environment, and after the circulating cold water or the circulating hot water enters the radiation plate 4, the radiation plate 4 can radiate cold energy or heat, so as to control the temperature in the oxygen cabin 1, and it should be noted that in the embodiment, when the circulating hot water is introduced to heat the radiation plate 4, the dehumidifier 3 does not perform dehumidification operation, that is, the temperature rise and the dehumidification in the oxygen cabin 1 cannot be performed simultaneously.
Above-mentioned mode adopts radiation board 4 to replace the indoor set of air conditioner to set up host computer 2 outside oxygen cabin 1, set up radiation board 4 in oxygen cabin 1, the structure is more small and exquisite compact, can not destroy the whole aesthetic property in oxygen cabin 1, and radiation board 4 does not also have complicated electrical components, is difficult to damage, comes the temperature in the oxygen cabin 1 to regulate and control through radiation board 4 radiation cold or heat simultaneously, has avoided the sense of blowing, and radiating cold or heat is more even, and the temperature fluctuation is little, has better comfort level.
In this embodiment, a plurality of radiation plates 4 are provided, and a plurality of radiation plates 4 are connected in series through a pipeline.
By the arrangement of a plurality of radiation plates 4, the refrigerating or heating capacity of the present utility model is advantageously improved.
In this embodiment, the radiation plate 4 is a metal radiation plate. The metal radiating plate is made of metal materials with high heat conduction and heat dissipation capacity, and can be silver, copper, aluminum and the like.
In this embodiment, a return waterway is disposed inside the radiation plate 4. By arranging the circular waterway, the circulation path of the circulating water in the radiation plate 4 is increased, thereby being beneficial to improving the radiation capacity of the radiation plate 4 on cold or heat.
In this embodiment, the dehumidifier 3 includes a heat exchange tube 31, a fin 32 disposed on the heat exchange tube 31, and a water collection box 33 disposed below the heat exchange tube 31 and the fin 32, the water inlet pipe 5 includes a first pipe body 51 and a second pipe body 52, one end of the first pipe body 51 is connected with a water outlet of the host 2, the other end is connected with one end of the heat exchange tube 31, the other end of the heat exchange tube 31 is connected with one end of the second pipe body 52, the other end of the second pipe body 52 is connected with an inlet of the radiation plate 4, the dehumidifier 3 further includes a fan 35 for blowing air into the oxygen cabin 1, and one side of the fan 35 is further provided with an electric heater 34.
When the air conditioner works, the fan 35 blows air into the oxygen cabin 1, air in the oxygen cabin 1 is circulated and is made to form convection, the host machine 2 supplies cold water into the heat exchange tube 31 to cool the fins 32, when the air in the oxygen cabin 1 contacts with the fins 32, moisture in the air can be cooled to form liquid, the water collecting box 33 collects the liquid, and the dried air is heated by the electric heater 34 and then is sent into the oxygen cabin 1 by the fan 35, so that dehumidification in the oxygen cabin 1 is achieved, and comfort of the oxygen cabin 1 is guaranteed.
In this embodiment, the host 2 includes a casing 21, a water tank 23 disposed in the casing 21, a circulating water pump 24 connected between the water tank 23 and a water outlet, and an air-conditioning refrigerating and heating system 22 for refrigerating or heating water in the water tank 23, where the water return port is communicated with the water tank 23.
It should be noted that the air conditioning and cooling system 22 may be a cooling and heating air conditioning system with a cooling medium or a semiconductor cooling and heating air conditioning system.
The above description is only a preferred embodiment of the present utility model, and the protection scope of the present utility model is not limited to the above examples, and all technical solutions belonging to the concept of the present utility model belong to the protection scope of the present utility model. It should be noted that modifications and adaptations to the present utility model may occur to one skilled in the art without departing from the principles of the present utility model and are intended to be within the scope of the present utility model.

Claims (6)

1. The utility model provides an oxygen cabin air conditioning system, includes host computer (2) that set up outside the oxygen cabin, host computer (2) can provide circulation hot water and circulation cold water, be provided with delivery port and return water mouth on host computer (2), its characterized in that: the oxygen cabin is internally provided with a dehumidifier (3) and a radiation plate (4), the radiation plate (4) is of a plate-shaped structure with a hollow inside, an inlet and an outlet which are communicated with the inside of the radiation plate (4) are respectively arranged on the radiation plate (4), a water outlet of the host machine (2) is connected with the inlet of the dehumidifier (3) and the inlet of the radiation plate (4) through a water inlet pipe (5), and the outlet of the radiation plate (4) is connected with a water return port of the host machine (2) through a water return pipe (6).
2. The oxygen cabin air conditioning system of claim 1, wherein: the radiation plates (4) are arranged in a plurality, and the radiation plates (4) are connected in series through pipelines.
3. The oxygen cabin air conditioning system of claim 1, wherein: the radiation plate (4) is a metal radiation plate.
4. An oxygen cabin air conditioning system according to claim 3, characterized in that: the inside of the radiation plate (4) is provided with a return waterway.
5. The oxygen cabin air conditioning system of claim 1, wherein: dehumidifier (3) are including heat exchange tube (31), fin (32) and setting on heat exchange tube (31) set up water catch bowl (33) in heat exchange tube (31) and fin (32) below, inlet tube (5) are including first body (51) and second body (52), the one end of first body (51) is connected with the delivery port of host computer (2), the other end is connected with the one end of heat exchange tube (31), the other end of heat exchange tube (31) is connected with the one end of second body (52), the other end of second body (52) is connected with the entry linkage of radiation plate (4), dehumidifier (3) still include be used for to fan (35) of blowing in the oxygen cabin, one side of fan (35) still is provided with electric heater (34).
6. The oxygen cabin air conditioning system of claim 1, wherein: the host machine (2) comprises a shell (21), a water tank (23) arranged in the shell (21), a circulating water pump (24) connected between the water tank (23) and a water outlet, and an air conditioner refrigerating and heating system (22) for refrigerating or heating water in the water tank (23), wherein the water return port is communicated with the water tank (23).
CN202223421738.4U 2022-12-20 2022-12-20 Oxygen cabin air conditioning system Active CN219127162U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223421738.4U CN219127162U (en) 2022-12-20 2022-12-20 Oxygen cabin air conditioning system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223421738.4U CN219127162U (en) 2022-12-20 2022-12-20 Oxygen cabin air conditioning system

Publications (1)

Publication Number Publication Date
CN219127162U true CN219127162U (en) 2023-06-06

Family

ID=86592837

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223421738.4U Active CN219127162U (en) 2022-12-20 2022-12-20 Oxygen cabin air conditioning system

Country Status (1)

Country Link
CN (1) CN219127162U (en)

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