Pressurizing and oxygen increasing room group
By designing a group of pressurized oxygenation rooms, the problems of redundant configuration of mobile pressurized oxygenation room equipment and sewage treatment were solved, realizing coordinated control of multiple rooms and sewage treatment, and improving equipment efficiency and comfort.
Patent Information
- Application Number
- CN202520324294.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-02-27
AI Technical Summary
Existing mobile pressurized oxygenation room equipment is redundant, wastes space, and has high energy consumption. It does not take into account the coordination of multiple rooms and sewage treatment, which affects comfort and environmental hygiene.
Design a group of pressurized oxygenation chambers, which are connected by an equipment room. Centralized control and sewage treatment are achieved using air supply pipes and sewage discharge pipes. The system is equipped with retractable pipes and sewage collection devices, and valves and controllers are provided for coordinated regulation.
It improves equipment efficiency and flexibility, reduces space occupation and energy consumption, ensures room comfort and environmental hygiene, and realizes coordinated control of multiple rooms and sewage treatment.
Smart Images

Figure CN223880828U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of pressurized building, specifically relates to a pressurized oxygenation room group. BACKGROUND
[0002] In order to guarantee the health and safety of the personnel working, living and residing in plateau areas, it is necessary to provide a pressurized oxygenation equipment capable of simulating plain environment, so that the human body can rest and recover in a relatively comfortable environment. A common method is to use a pressurized oxygenation room, that is, in a closed room, air and oxygen are delivered into the room through a fan, so that the pressure and oxygen concentration in the room reach a level similar to or equivalent to that in plain areas, thereby relieving or eliminating the maladjustment of the human body to the plateau environment. At present, there are various types of pressurized oxygenation rooms, including mobile and fixed types and the like. Among them, the mobile pressurized oxygenation room has the advantages of high flexibility, strong adaptability, convenience for carrying and installation, and is suitable for temporary or long-term use in plateau areas. However, the existing mobile pressurized oxygenation room also has some problems and deficiencies:
[0003] 1. The existing mobile pressurized oxygenation room is generally used alone, and each room needs to be separately configured with a fan, an air filter, an oxygen generator and other equipment to provide air and oxygen. This not only occupies the space inside the room, but also causes duplication and waste of equipment, and also increases energy consumption and maintenance cost.
[0004] 2. The existing mobile pressurized oxygenation room generally does not consider the problem of sewage discharge, that is, the mobile pressurized oxygenation room after installation does not consider sewage treatment and discharge, which will affect the hygiene and environment inside the room in the case of long-term living, and may also pollute and destroy the surrounding ecology.
[0005] 3. The existing mobile pressurized oxygenation room generally does not consider the coordination and control problem between multiple rooms, that is, how to adjust the delivery amount and proportion of air and oxygen according to the use situation and demand of different rooms. This not only affects the comfort and effect inside each room, but also may lead to waste or deficiency of air and oxygen.
[0006] In summary, there is an urgent need for a pressurized oxygenation room group to solve the problems existing in the prior art. INVENTION CONTENTS
[0007] The utility model aims at providing a pressurized oxygenation room group, and the specific technical scheme is as follows:
[0008] A pressurized oxygenation room group, comprising a plurality of pressurized oxygenation rooms, equipment rooms, air supply pipes, sewage discharge pipes and sewage collection devices, the pressurized oxygenation rooms and the equipment rooms are connected through air supply pipes, and the pressurized oxygenation rooms and the sewage collection devices are connected through sewage discharge pipes;
[0009] The air supply pipe is provided with a pressure increasing valve corresponding to the pressure increasing and oxygen increasing room, and the sewage pipe is provided with a sewage valve corresponding to the pressure increasing and oxygen increasing room.
[0010] The equipment room is provided with a pressure increasing and oxygen increasing device connected to the air supply pipe for realizing pressure increasing and oxygen increasing.
[0011] Preferably, the pressure increasing and oxygen increasing room is a movable pressure increasing building.
[0012] Preferably, the air supply pipe or the sewage pipe is a telescopic or bendable pipe.
[0013] Preferably, the sewage collecting device comprises a sewage pump and a sewage collecting tank, both of which are connected to the sewage pipe.
[0014] Preferably, the pressure increasing and oxygen increasing device comprises a plurality of air fans and oxygen devices for realizing air and oxygen delivery.
[0015] Preferably, the pressure increasing and oxygen increasing room is further provided with a detection sensor for detecting whether the pressure increasing and oxygen increasing room is used by a person.
[0016] Preferably, the equipment room is further provided with a controller connected to the sewage collecting device, the pressure increasing valve, the sewage valve and the pressure increasing and oxygen increasing device for coordinately controlling the multiple pressure increasing and oxygen increasing rooms to realize pressure increasing and oxygen increasing and sewage treatment.
[0017] The technical scheme of the utility model has the following beneficial effects:
[0018] The utility model discloses a pressure increasing and oxygen increasing room group, and multiple pressure increasing and oxygen increasing rooms are connected side by side through the equipment room, and the coordinative control between the multiple pressure increasing and oxygen increasing rooms is realized.
[0019] In addition to the purposes, features and advantages described above, the utility model has other purposes, features and advantages. BRIEF DESCRIPTION OF DRAWINGS
[0020] The accompanying drawings, which form a part of this application, are included to provide a further understanding of the application and are incorporated in and constitute a part of this application. The embodiments of the present application illustrated in the drawings and their descriptions are used to explain the present application and are not intended to limit the present application. In the drawings:
[0021] Figure 1 is a structural schematic view of the pressurized and oxygenated room group in the preferred embodiment of the present application.
[0022] Among them, 1 is a pressurized and oxygenated room, 2 is an equipment room, 3 is a air supply pipe, 4 is a sewage discharge pipe, 5 is a sewage collection device, 6 is a pressurizing valve, 7 is a sewage valve. DETAILED DESCRIPTION
[0023] The embodiments of the present application will be described in detail below with reference to the accompanying drawings, but the present application can be implemented in various different ways limited and covered by the claims.
[0024] Embodiment:
[0025] Referring to Figure 1 The embodiment discloses a pressurized and oxygenated room group, comprising a plurality of pressurized and oxygenated rooms 1, an equipment room 2, an air supply pipe 3, a sewage discharge pipe 4 and a sewage collection device 5, the pressurized and oxygenated room 1 is connected with the equipment room 2 through the air supply pipe 3, and the pressurized and oxygenated room 1 is connected with the sewage collection device 5 through the sewage discharge pipe 4.
[0026] The pressurizing valve 6 is arranged on the air supply pipe 3 corresponding to the pressurized and oxygenated room 1, and the sewage valve 7 is arranged on the sewage discharge pipe 4 corresponding to the pressurized and oxygenated room 1; it should be noted that the pressurizing valve 6 and the sewage valve 7 in the embodiment can be any device capable of controlling and adjusting the flow and pressure of fluid, the pressurizing valve 6 is used for controlling the entry of air and oxygen, and the sewage valve 7 is used for controlling the discharge of sewage and waste.
[0027] The equipment room 2 is provided with a pressurized and oxygenated device, the pressurized and oxygenated device is connected with the air supply pipe 3, and is used for realizing pressurization and oxygenation.
[0028] Preferably, the pressurized and oxygenated room 1 is a movable pressurized building, and the inside of the pressurized and oxygenated room 1 can be equipped with a bed, a table and chairs, a bathroom and other living facilities, and the outside of the pressurized and oxygenated room 1 is provided with doors and windows, ventilation openings and other ventilation facilities.
[0029] It should be noted that the embodiment can connect multiple mobile pressure and oxygen increasing rooms to form a room group, thereby improving the use efficiency and flexibility and meeting the personnel demand of different occasions and different scales. In addition, the embodiment can realize the time-division and section-division discharge of the sewage through the sewage discharge pipe 4 and the sewage collection device 5 and the sewage discharge valve 7 corresponding to the pressure and oxygen increasing room 1, avoid the influence of the sewage on the air pressure in the room, ensure the high-pressure environment in the room, collect the discharged sewage by using the sewage collection device, and reduce the pollution and harm of the sewage to the external environment.
[0030] Preferably, the air supply pipe 3 or the sewage discharge pipe 4 is a telescopic or bendable pipe.
[0031] Preferably, the sewage collection device 5 includes a sewage pump and a sewage collection tank, and the sewage pump and the sewage collection tank are connected to the sewage discharge pipe 4.
[0032] Preferably, the pressure and oxygen increasing device includes several fans and oxygen devices for realizing the delivery of air and oxygen.
[0033] The pressure and oxygen increasing device in the embodiment can control the number and frequency of the opened fans according to the number of the opened mobile pressure and oxygen increasing rooms, can deliver different contents of air and oxygen according to different use demands, realizes the dynamic adjustment of the pressure increasing effect, and improves the intelligence and adaptability of the system.
[0034] Preferably, the device further includes a detection sensor arranged in the pressure and oxygen increasing room for detecting whether the pressure and oxygen increasing room is used by personnel.
[0035] Preferably, the device further includes a controller arranged in the equipment room, the controller is connected to the sewage collection device 5, the pressure valve 6, the sewage discharge valve 7 and the pressure and oxygen increasing device through a signal line or a wireless signal, and is used for coordinately controlling the multiple pressure and oxygen increasing rooms to realize the pressure increasing and oxygen increasing and sewage treatment. It should be noted that the controller in the embodiment can be a PLC controller or any electronic device with functions of data processing, signal transmission, logical judgment and the like, such as a computer.
[0036] In addition, it should be noted that the equipment switch can be arranged in the pressure and oxygen increasing room 1 in the embodiment, and personnel can directly control the sewage collection device 5, the pressure valve 6, the sewage discharge valve 7 and the pressure and oxygen increasing device through the equipment switch to realize the sewage discharge and the pressure and oxygen increasing.
[0037] The embodiment adopts the central centralized control mode to realize the pressure increasing and sewage discharge functions of the rooms in the room group, thereby simplifying the structure and operation of the system, reducing the number and length of the fans and the pipes, saving the space and cost, and improving the stability and reliability of the system.
[0038] The working principle of the embodiment is as follows:
[0039] When it is necessary to use one or more pressurized oxygen-enriched rooms, the corresponding pressurization valve 6 is opened, the controller detects the number of opened rooms, and controls the number and frequency of the opened air fans and the opening time and flow of the oxygen device according to the preset parameters, so that the air and oxygen in each opened pressurized oxygen-enriched room are mixed in a certain proportion and maintain a certain pressure and flow. When it is not necessary to use one or more pressurized oxygen-enriched rooms, the corresponding pressurization valve 6 is closed, the controller detects the number of closed rooms, and adjusts the working state of the air fan and the oxygen device accordingly.
[0040] When it is necessary to remove the sewage in one or more pressurized oxygen-enriched rooms, the corresponding sewage valve 7 is opened, the controller detects the number of opened valves, and controls the opening time and flow of the sewage pump according to the preset parameters, so that the sewage in each opened pressurized oxygen-enriched room is discharged through the sewage pipe. When it is not necessary to remove the sewage in one or more pressurized oxygen-enriched rooms, the corresponding sewage valve 7 is closed, and the controller detects the number of closed valves and strictly controls the sewage in each closed pressurized oxygen-enriched room from flowing out.
[0041] The specific implementation method of the embodiment is as follows:
[0042] When the product of the embodiment needs to be used, a flat site is selected in a plateau area, a plurality of mobile pressurized oxygen-enriched rooms are arranged in a certain layout, and the pressurization and sewage equipment room is placed in a suitable position, then the mobile pressurized oxygen-enriched rooms and the pressurization and sewage equipment room are connected by the air supply pipe, the mobile pressurized oxygen-enriched rooms and the sewage collection device are connected by the sewage pipe, and the controller is connected with the pressurization valve and the sewage valve in each mobile pressurized oxygen-enriched room by wire or wireless signal, thereby completing the installation of the system.
[0043] When a person needs to enter the mobile pressurized oxygen-enriched room 1, the door is first opened, then the room is entered, and the door is closed. At this time, the controller detects the use state of the room, and adjusts the number and frequency of the opened air fans and the delivery amount and proportion of air and oxygen according to the preset parameters or the input of the person, so as to deliver appropriate air and oxygen into the room. At the same time, the controller opens the corresponding pressurization valve 6 of the room, so that air and oxygen can smoothly enter the room, and closes the corresponding control valves of other unused rooms to prevent air and oxygen from leaking or being wasted. After a period of delivery, the pressure and oxygen concentration in the room reach the target value preset or input, thereby forming a high-pressure environment. At this time, the person can rest, work or carry out other activities in the room.
[0044] When a person needs to use the toilet and other facilities in the mobile hyperbaric oxygen chamber 1, the controller detects the sewage state in the toilet and adjusts the opening time and frequency of the sewage collection device 5, as well as the sewage and waste pumping volume and speed, according to the preset parameters or the input of the person, so as to pump the sewage and waste generated in the toilet into the sewage collection device 5 for temporary storage or treatment. At the same time, the controller opens the sewage valve 7 corresponding to the toilet, so that the sewage and waste can flow out of the toilet smoothly, and closes the sewage valves corresponding to other unused toilets to prevent backflow or overflow of the sewage and waste. After a period of pumping, the sewage and waste in the toilet will be emptied, thereby keeping the toilet clean and the environment. At this time, the person can wash, change clothes or perform other activities in the toilet.
[0045] When maintenance or repair of the utility model is needed, the running state and fault information of each device can be checked through the controller, and corresponding operation or adjustment can be performed according to the need. For example, when the fan fails, the controller can be used to close the fan and start the standby fan to ensure the normal operation of the system. When the sewage collection device is full, the controller can be used to close the sewage pump and treat or transfer the sewage and waste in the sewage tank to ensure the cleanliness and environmental protection of the system.
[0046] The above is only the preferred embodiment of the utility model and is not used to limit the utility model. For those skilled in the art, the utility model can have various changes and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the utility model shall be included in the protection scope of the utility model.
Claims
1. A hyperbaric oxygenation chamber cluster, comprising: The application relates to a sewage treatment system, which comprises several pressurized oxygenation rooms (1), equipment rooms (2), air supply pipes (3), sewage discharge pipes (4) and sewage collecting devices (5), wherein the pressurized oxygenation rooms (1) are connected with the equipment rooms (2) through the air supply pipes (3), the pressurized oxygenation rooms (1) are connected with the sewage collecting devices (5) through the sewage discharge pipes (4); The air supply pipes (3) are provided with pressurized valves (6) corresponding to the pressurized oxygenation rooms (1), and the sewage discharge pipes (4) are provided with sewage discharge valves (7) corresponding to the pressurized oxygenation rooms (1); The equipment rooms (2) are provided with pressurized oxygenation devices, which are connected with the air supply pipes and used for realizing pressurization and oxygenation.
2. The pressurized oxygenation room cluster of claim 1, wherein, The pressurized oxygenation rooms (1) are movable pressurized buildings.
3. The pressurized oxygenation room cluster of claim 1, wherein, The air supply pipes (3) or the sewage discharge pipes (4) are telescopic or bendable pipes.
4. The pressurized oxygenation room cluster of claim 1, wherein, The sewage collecting devices (5) comprise sewage discharge pumps and sewage collecting tanks, which are connected with the sewage discharge pipes (4).
5. The pressurized oxygenation room cluster of claim 1, wherein, The pressurized oxygenation devices comprise several fans and oxygen devices, which are used for realizing air and oxygen delivery.
6. The pressurized oxygenation room cluster of claim 1, wherein, The sewage treatment system further comprises detection sensors arranged in the pressurized oxygenation rooms, which are used for detecting whether the pressurized oxygenation rooms are used by people.
7. The hyperbaric oxygen chamber cluster according to any one of claims 1 to 6, wherein The equipment rooms are further provided with controllers, which are connected with the sewage collecting devices (5), the pressurized valves (6), the sewage discharge valves (7) and the pressurized oxygenation devices, and are used for coordinately controlling the pressurized oxygenation rooms to realize pressurization, oxygenation and sewage treatment.