CN214370802U - Dispersion type oxygen supply system - Google Patents

Dispersion type oxygen supply system Download PDF

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Publication number
CN214370802U
CN214370802U CN202120200248.8U CN202120200248U CN214370802U CN 214370802 U CN214370802 U CN 214370802U CN 202120200248 U CN202120200248 U CN 202120200248U CN 214370802 U CN214370802 U CN 214370802U
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oxygen
exhaust
oxygen supply
monitoring module
pipe
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CN202120200248.8U
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吴文华
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Abstract

The utility model discloses a diffuse oxygen supply system, which comprises an oxygen generation unit, a diffusion unit, an exhaust unit, a control unit and a power supply unit, wherein the oxygen generation unit comprises an air compressor, a condenser, an oil-water separator, a gas filter, a molecular sieve oxygen generator and an oxygen storage tank which are connected in sequence, the diffusion unit comprises an oxygen supply main pipe, oxygen supply branch pipes and diffusion ports, the air outlet end of the oxygen storage tank passes through the oxygen supply main pipe and is connected with a plurality of oxygen supply branch pipes, the oxygen supply branch pipes are provided with a plurality of diffusion ports, the oxygen supply main pipe and the inner walls of the oxygen supply branch pipes are provided with heating sheets, the diffusion ports are internally provided with diffusion fans, the exhaust unit comprises an exhaust main pipe, exhaust branch pipes and exhaust ports, the exhaust main pipe is connected with a plurality of exhaust branch pipes, the exhaust ports are provided with exhaust ports, the exhaust fans are arranged in the exhaust ports, and the exhaust main pipe is provided with a return pipe connected with the oxygen supply main pipe.

Description

Dispersion type oxygen supply system
Technical Field
The utility model relates to an oxygen generation technical field, concretely relates to diffuse oxygen system.
Background
In the known data, when the oxygen content of the indoor air is lower than 21%, discomfort can be caused to human body, and when the oxygen content of the indoor air is lower than 15%, injury can be caused to human body, and symptoms such as shortness of breath, headache, dizziness and the like can be caused, however, if the oxygen content of the indoor air is higher than 30%, the human body function can be damaged, and when the oxygen concentration is between 22% and 35%, the optimal state is achieved.
For the building fields of high-rise buildings, high-grade houses, hotels and the like, a large oxygen supply system is needed. In high altitude areas, there is also an environmental problem of oxygen deprivation. Therefore, a need exists for a decentralized oxygen supply system.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a diffuse oxygen system realizes central oxygen suppliment, is applicable to the place of the large-scale oxygen system of various needs, and reducible occupation needs the local interior space of oxygen suppliment, uses safe and reliable, and it is convenient to overhaul.
A diffusion type oxygen supply system comprises an oxygen generation unit, a diffusion unit, an exhaust unit, a control unit and a power supply unit, wherein the oxygen generation unit comprises an air compressor, a condenser, an oil-water separator, a gas filter, a molecular sieve oxygen generator and an oxygen storage tank which are connected in sequence, the diffusion unit comprises an oxygen supply main pipe, oxygen supply branch pipes and diffusion ports, the air outlet end of the oxygen storage tank is connected with a plurality of oxygen supply branch pipes through the oxygen supply main pipe, the oxygen supply branch pipes are provided with a plurality of diffusion ports, the oxygen supply main pipe and the inner walls of the oxygen supply branch pipes are provided with heating sheets, the diffusion ports are internally provided with diffusion fans, the exhaust unit comprises an exhaust main pipe, an exhaust main pipe and an exhaust port, the exhaust main pipe is connected with a plurality of exhaust branch pipes, the exhaust branch pipe is provided with an exhaust port, the exhaust port is internally provided with an exhaust fan, the exhaust main pipe is provided with a return pipe connected with the oxygen supply main pipe, the control unit controls the oxygen generation unit, the dispersion unit and the exhaust unit, and the power supply unit is used for supplying power.
Preferably, the oxygen suppliment is responsible for oxygen suppliment branch pipe and back flow and is connected through three solenoid valve, all be equipped with the electromagnetic switch valve on exhaust person in charge, exhaust branch pipe and the oxygen suppliment branch pipe, be equipped with gas flowmeter in the exhaust person in charge, molecular sieve oxygenerator is equipped with and is used for connecting oxygen therapy pipe and the nitrogen discharging pipe of oxygen storage tank, be connected with the muffler on oxygen therapy pipe and the nitrogen discharging pipe.
Preferably, still include the humidification unit, the humidification unit includes humidifier and its be used for connecting the humidification connecting pipe of oxygen suppliment person in charge, be equipped with the electromagnetic switch valve on the humidification connecting pipe.
Preferably, the control unit includes a control panel, a central processing unit, an indoor monitoring module, an outdoor monitoring module, an oxygen supply branch pipe monitoring module and an exhaust main pipe monitoring module, the indoor monitoring module is disposed indoors and used for monitoring indoor environment indexes, the outdoor monitoring module is disposed outdoors and used for outdoor environment indexes, the oxygen supply branch pipe monitoring module is used for monitoring environment indexes in the oxygen supply branch pipes, the exhaust main pipe monitoring module is used for detecting environment indexes in the exhaust main pipe, the control panel is electrically connected with the central processing unit, and the central processing unit is respectively electrically connected with the control panel, the indoor monitoring module, the outdoor monitoring module, the oxygen supply branch pipe monitoring module and the exhaust main pipe monitoring module.
Preferably, the environmental indexes monitored by the indoor monitoring module, the outdoor monitoring module, the oxygen supply branch pipe monitoring module and the exhaust main pipe monitoring module respectively comprise temperature, humidity, pressure, oxygen content and carbon dioxide content, wherein the environmental indexes monitored by the indoor monitoring module further comprise smoke alarm monitoring, and the environmental indexes monitored by the outdoor monitoring module further comprise wind power and illumination monitoring.
Preferably, when the detected oxygen concentration in the indoor monitoring module is 25%, the dispersion port stops supplying oxygen.
Preferably, the power supply unit comprises one or more of an alternating current power supply module, a solar power generation module or a wind power generation module.
After the technical scheme is adopted, compared with the background art, the utility model, have following advantage:
1. the utility model relates to a diffuse formula oxygen system, realize the oxygen suppliment of central authorities, the oxygen storage in oxygen storage tank made through the system oxygen unit, many oxygen supply branch pipes of accessible are carried respectively in a plurality of rooms, all be equipped with the electromagnetic switch valve on every oxygen delivery branch pipe and can control the oxygen suppliment respectively, when the oxygen concentration in one of them room is too high, accessible exhaust branch pipe discharges outdoor or links into the oxygen suppliment through the back flow and is responsible for carrying the room of other needs oxygen suppliments, oxygen is practiced thrift, be applicable to various needs large-scale oxygen system's place, reducible indoor space who occupies the place of needs oxygen suppliment, safety and reliability in utilization, it is convenient to overhaul.
2. The utility model relates to a diffuse oxygen system, indoor, outdoor, oxygen suppliment branch pipe and exhaust person in charge all are equipped with temperature, humidity, pressure, oxygen content and carbon dioxide content's detection module, real-time supervision environment index. The control parameters are set through the control panel, and then the central processing unit carries out automatic regulation and control,
3. the utility model relates to a diffuse oxygen system can concentrate oxygen generation unit and power supply and set up outdoor, and is connected with the muffler on molecular sieve oxygen generator's oxygen therapy pipe and the denitrogenation pipe. Effectively reduce the work noise when indoor dispersion unit oxygen suppliment.
Drawings
Fig. 1 is a block diagram of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is 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 invention and are not intended to limit the invention.
In the present invention, it should be noted that the terms "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are all based on the orientation or position relationship shown in the drawings, and are only for convenience of description and simplification of the present invention, but do not indicate or imply that the device or element of the present invention must have a specific orientation, and thus, should not be construed as limiting the present invention.
Examples
Referring to fig. 1, the utility model discloses a dispersive oxygen supply system, which comprises an oxygen generation unit 1, a dispersion unit 2, an exhaust unit 3, a control unit 4 and a power supply unit 5, wherein the oxygen generation unit 1 comprises an air compressor 11, a condenser 12, an oil-water separator 13, a gas filter 14, a molecular sieve oxygen generator 15 and an oxygen storage tank 16 which are connected in sequence, the dispersion unit 2 comprises an oxygen supply main pipe 21, oxygen supply branch pipes 22 and dispersion ports 23, the air outlet end of the oxygen storage tank 16 is connected with a plurality of oxygen supply branch pipes 22 through the oxygen supply main pipe 21, the oxygen supply branch pipes 22 are provided with a plurality of dispersion ports 23, the inner walls of the oxygen supply main pipe 21 and the oxygen supply branch pipes 22 are provided with heating sheets (not shown in the figure) for heating oxygen, dispersion fans 231 are arranged in the dispersion ports 23, the exhaust unit 3 comprises an exhaust main pipe 31, exhaust branch pipes 32 and exhaust ports 33, the exhaust main pipe 31 is connected with a plurality of exhaust branch pipes 32, the exhaust branch pipe 32 is provided with an exhaust port 33, an exhaust fan 331 is arranged in the exhaust port 33, the exhaust main pipe 31 is provided with a return pipe 34 connected with the oxygen supply main pipe 21, the control unit 4 controls the oxygen generation unit 1, the dispersion unit 2 and the exhaust unit 3, and the power supply unit 5 is used for supplying power.
The oxygen supply main pipe 21 is connected with the oxygen supply branch pipe 22 and the return pipe 34 through the three-way electromagnetic valve 6, the exhaust main pipe 31, the exhaust branch pipe 32 and the oxygen supply branch pipe 22 are all provided with the electromagnetic switch valve 7, the exhaust main pipe 31 is internally provided with the gas flowmeter 311, the molecular sieve oxygen generator 15 is provided with the oxygen supply pipe 151 for connecting the oxygen storage tank 16 and the nitrogen discharge pipe 152 for discharging nitrogen to the outside, and the oxygen supply pipe 151 and the nitrogen discharge pipe 152 are all connected with the silencer 17.
The oxygen supply device further comprises a humidifying unit 8, wherein the humidifying unit 8 comprises a humidifier 81 and a humidifying connecting pipe 83 used for being connected with the oxygen supply main pipe 21, and an electromagnetic switch valve 7 is arranged on the humidifying connecting pipe 83.
The control unit 9 includes a control panel 91, a central processing unit 92, an indoor monitoring module 93, an outdoor monitoring module 94, an oxygen supply branch pipe monitoring module 95 and an exhaust main pipe monitoring module 96, the indoor monitoring module 93 is disposed indoors for monitoring indoor environmental indexes, the outdoor monitoring module 94 is disposed outdoors for outdoor environmental indexes, the oxygen supply branch pipe monitoring module 95 is used for monitoring environmental indexes in the oxygen supply branch pipes 22, the exhaust main pipe monitoring module 96 is used for detecting environmental indexes in the exhaust main pipe 31, the control panel 91 is electrically connected with the central processing unit 92, the central processing unit 92 respectively controls the panel 91, the indoor monitoring module 93, the outdoor monitoring module 94, the oxygen supply branch pipe monitoring module 95 and the exhaust main pipe monitoring module 96 to be electrically connected, the control panel 91 of the embodiment adopts a liquid crystal touch screen, and the central processing unit 92 adopts a 64-bit MCU single chip processor,
the environmental indexes monitored by the indoor monitoring module 93, the outdoor monitoring module 94, the oxygen supply branch pipe monitoring module 95 and the exhaust main pipe monitoring module 96 all include temperature, humidity, pressure, oxygen content and carbon dioxide content, and when the detected oxygen concentration in the indoor monitoring module 93 is 25%, the dispersion port 23 stops supplying oxygen. The environment index monitored by the indoor monitoring module 93 also comprises smoke alarm monitoring, when a fire disaster occurs indoors, oxygen supply is cut off in time, the fire is prevented from spreading, the environment index monitored by the outdoor monitoring module also comprises wind power and illumination monitoring, a power supply mode can be selected according to the wind power and illumination conditions, and energy is saved. The power supply unit 5 comprises an alternating current power supply module 51, a solar power generation module 52 and a wind power generation module 53, and the monitoring mode adopts a temperature sensor, a humidity sensor, a pressure sensor, an oxygen content sensor, a carbon dioxide content sensor, a smoke sensor, an illumination sensor and a wind power sensor.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention should be covered by the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (7)

1. A kind of dispersion type oxygen supply system, characterized by: the oxygen making unit comprises an air compressor, a condenser, an oil-water separator, a gas filter, a molecular sieve oxygen making machine and an oxygen storage tank which are connected in sequence, the dispersion unit comprises an oxygen supply main pipe, oxygen supply branch pipes and dispersion ports, the air outlet end of the oxygen storage tank is connected with a plurality of oxygen supply branch pipes through the oxygen supply main pipe, the oxygen supply branch pipes are provided with a plurality of dispersion ports, heating sheets are arranged on the oxygen supply main pipe and the inner walls of the oxygen supply branch pipes, dispersion fans are arranged in the dispersion ports, the exhaust unit comprises an exhaust main pipe, exhaust branch pipes and exhaust ports, the exhaust main pipe is connected with a plurality of exhaust branch pipes, the exhaust branch pipes are provided with exhaust ports, the exhaust ports are provided with exhaust fans, the exhaust main pipe is provided with a return pipe for connecting the oxygen supply main pipe, the control unit controls the oxygen generation unit, the dispersion unit and the exhaust unit, and the power supply unit is used for supplying power.
2. The decentralized oxygen supply system according to claim 1, wherein: the oxygen suppliment is responsible for oxygen suppliment branch pipe and back flow and passes through three solenoid valve and connect, all be equipped with the electromagnetic switch valve on exhaust person in charge, exhaust branch pipe and the oxygen suppliment branch pipe, the exhaust is responsible for and is equipped with gas flowmeter, molecular sieve oxygenerator is equipped with and is used for connecting oxygen therapy pipe and the nitrogen discharging pipe of oxygen storage tank, be connected with the muffler on oxygen therapy pipe and the nitrogen discharging pipe.
3. The decentralized oxygen supply system according to claim 1, wherein: still include the humidification unit, the humidification unit includes humidifier and its is used for connecting the humidification connecting pipe that the oxygen suppliment was responsible for, be equipped with the electromagnetic switch valve on the humidification connecting pipe.
4. The decentralized oxygen supply system according to claim 1, wherein: the control unit comprises a control panel, a central processing unit, an indoor monitoring module, an outdoor monitoring module, an oxygen supply branch pipe monitoring module and an exhaust main pipe monitoring module, wherein the indoor monitoring module is arranged indoors and used for monitoring indoor environment indexes, the outdoor monitoring module is arranged outdoors and used for outdoor environment indexes, the oxygen supply branch pipe monitoring module is used for monitoring the environment indexes in the oxygen supply branch pipe, the exhaust main pipe monitoring module is used for detecting the environment indexes in the exhaust main pipe, the control panel is electrically connected with the central processing unit, and the central processing unit is respectively connected with the control panel, the indoor monitoring module, the outdoor monitoring module, the oxygen supply branch pipe monitoring module and the exhaust main pipe monitoring module electrically.
5. The decentralized oxygen supply system according to claim 4, wherein: the environment indexes monitored by the indoor monitoring module, the outdoor monitoring module, the oxygen supply branch pipe monitoring module and the exhaust main pipe monitoring module all comprise temperature, humidity, pressure, oxygen content and carbon dioxide content, wherein the environment indexes monitored by the indoor monitoring module further comprise smoke alarm monitoring, and the environment indexes monitored by the outdoor monitoring module further comprise wind power and illumination monitoring.
6. The decentralized oxygen supply system according to claim 5, wherein: when the concentration of oxygen detected in the indoor monitoring module is 25%, the dispersion port stops supplying oxygen.
7. The decentralized oxygen supply system according to claim 1, wherein: the power supply unit comprises one or more of an alternating current power supply module, a solar power generation module or a wind power generation module.
CN202120200248.8U 2021-01-25 2021-01-25 Dispersion type oxygen supply system Active CN214370802U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120200248.8U CN214370802U (en) 2021-01-25 2021-01-25 Dispersion type oxygen supply system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120200248.8U CN214370802U (en) 2021-01-25 2021-01-25 Dispersion type oxygen supply system

Publications (1)

Publication Number Publication Date
CN214370802U true CN214370802U (en) 2021-10-08

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120200248.8U Active CN214370802U (en) 2021-01-25 2021-01-25 Dispersion type oxygen supply system

Country Status (1)

Country Link
CN (1) CN214370802U (en)

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