Modular labyrinthine decontamination environment pod

By using a modular, labyrinthine disinfection environment chamber, combined with an air-insulated chamber and a disinfection mechanism, the problems of poor transport and disinfection effects of the five-phase chamber were solved, achieving multi-scenario applicability and efficient disinfection, and reducing production costs.

CN117722741BActive Publication Date: 2026-05-01CHONGQING BLUEHORIZON ENERGY-SAVING TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHONGQING BLUEHORIZON ENERGY-SAVING TECH CO LTD
Filing Date
2024-01-05
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

The existing five-phase chambers lack flexible mobility and cannot be integrated into a single unit. Furthermore, the air contact time and area in the disinfection device are short, resulting in unsatisfactory disinfection effects, and thermal radiation affects temperature control.

Method used

The modular, labyrinthine disinfection environment chamber is designed, employing an air-insulated chamber and disinfection mechanism. The air duct inside the disinfection mechanism follows an "S" shaped path, with ultraviolet germicidal lamps installed along the inner wall of the air duct. The five-balance system integrates a radiant heating and cooling system, and an intelligent control mechanism adjusts environmental parameters.

Benefits of technology

It enables the multi-scenario movement of the cabin, improves the disinfection effect, reduces energy consumption, ensures a constant temperature, humidity, oxygen, and cleanliness environment inside the cabin, reduces production costs, and adapts to multiple application scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a modular labyrinth type environment killing cabin, which comprises a five-harmony system, an environment cabin, a device cabin and an air temperature insulation cabin located above the environment cabin. The air temperature insulation cabin comprises an exhaust fan unit and a killing mechanism. The exhaust fan unit is provided with an air suction pipe connected with the environment cabin and an air outlet connecting pipe connected with the killing mechanism, which is used for sucking the air discharged from the environment cabin, filtering and discharging into the killing mechanism for sterilization. The air duct in the killing mechanism is arranged in a plate folding structure with an "S" type path by using upper and lower partitions. An ultraviolet sterilization lamp strip is installed along the inner wall of the "S" type path. The side of the killing mechanism away from the air outlet connecting pipe is provided with a killing exhaust pipe, which is used for discharging the sterilized air into the air temperature insulation cabin to form an air temperature insulation layer. The five-harmony system comprises a radiation heating and cooling mechanism, a fresh air and cold air mechanism, an intelligent control mechanism and a cold and heat source mechanism. The cabin has the advantages of good temperature insulation at the top of the cabin, good exhaust and killing effect, multiple scene migration and application, modular and standardized production, great application prospect, complementary wall structure and five-harmony in the environment cabin.
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Description

Modular labyrinth-style disinfection environment cabin Technical Field

[0001] This invention belongs to the field of five-balance cabin thermal insulation technology, specifically relating to a modular labyrinth-style disinfection environment cabin. Background Technology

[0002] As people's requirements for indoor living environments become increasingly higher, the application of the five-balance system in buildings is becoming more and more widespread. Currently, the five-balance system is mainly used in fixed buildings, so it is not possible to flexibly transfer the functions of the five-balance system to other applications, such as RVs, which leads to high construction costs and long construction cycles. In recent years, as people's demand for the safety and comfort of indoor living environments has become increasingly higher, the multi-scenario applicability of the five-balance system also needs to be further developed.

[0003] Because the shell of the five-phase chamber is directly exposed to sunlight, thermal radiation has a significant impact on the temperature control of the chamber. However, there is currently a lack of flexible and movable five-phase chambers, resulting in a lack of thermal insulation protection for the five-phase chambers. In the existing exhaust system's disinfection device, a straight air duct and a point-arranged ultraviolet lamp disinfection method are usually used. Therefore, the air passes through the disinfection device for a short time, and the contact time and area with ultraviolet rays are short, resulting in low disinfection rate and unsatisfactory disinfection effect. Summary of the Invention

[0004] This invention aims to provide a modular, labyrinth-style disinfection environment chamber that is easy to move and has thermal insulation at the top. It solves the problems of the lack of thermal insulation protection for the five-balance chamber, which leads to the significant impact of heat radiation on the temperature control of the chamber, and the fact that the current application of the five-balance system is mainly in fixed buildings, making it impossible to flexibly move the five-balance system to other applications after its functions are integrated.

[0005] Therefore, the technical solution adopted by this invention is as follows: a modular labyrinth-style disinfection environment chamber, including a five-balance system, an environment chamber, an equipment chamber, and an air-insulated chamber located above the environment chamber. The air-insulated chamber includes an exhaust fan unit and a disinfection mechanism. The exhaust fan unit is equipped with an air intake pipe connected to the environment chamber and an air outlet connecting pipe connected to the disinfection mechanism, used to draw in and filter the gas discharged from the environment chamber and then discharge it into the disinfection mechanism for disinfection and sterilization. The air duct inside the disinfection mechanism adopts a plate-folded structure with upper and lower partitions arranged at intervals to form an "S"-shaped path, and ultraviolet germicidal lamp strips are installed along the inner wall of the "S"-shaped path of the air duct. A disinfection exhaust pipe is provided on the side of the disinfection mechanism away from the air outlet connecting pipe, used to discharge the disinfected gas into the air-insulated chamber to form an air insulation layer, thereby reducing the impact of direct sunlight on the temperature regulation of the environment chamber. An air outlet for discharging heated air is provided on the top side of the air-insulated chamber above the disinfection exhaust pipe. The five-balance system includes a radiant heating and cooling mechanism and a fresh air cooling mechanism. The system includes an intelligent control mechanism and a heat / cold source mechanism. The heat / cold source mechanism is installed inside the equipment compartment and provides low-temperature hot water and high-temperature cold water to the radiant heating and cooling mechanism and the fresh air cooling mechanism. The intelligent control mechanism controls the radiant heating and cooling mechanism, the fresh air cooling mechanism, and the heat / cold source mechanism. The radiant heating and cooling system provides heating and cooling to the environmental compartment through radiation and convection heat transfer. The radiant heating and cooling system includes components connected to the heat / cold source mechanism and installed on the top, front, and rear left walls of the environmental compartment. The environmental chamber is equipped with a capillary radiation grid; an air inlet is located on the right side and an exhaust vent is located on the top side; the fresh air and cooling system includes a wall-mounted five-balance fresh air unit and a dry fan coil unit connected to the heat source and cooling source system; the wall-mounted five-balance fresh air unit and the dry fan coil unit can respectively deliver fresh air and cool air into the equipment chamber through the air inlet and exhaust air through the exhaust vent. The wall-mounted five-balance fresh air unit can achieve dehumidification in summer, humidification in winter, filtration, and heat and humidity treatment functions. The dry fan coil unit is used to supplement the cooling load during the summer cooling peak.

[0006] As a preferred embodiment of the above scheme, the right wall of the environmental chamber is provided with an air supply interlayer connected to the air inlet and an insulation layer located on the left and right sides of the air supply interlayer. The front and rear left walls of the environmental chamber are provided with an insulation layer and a capillary tube installation layer from the outside to the inside. The top surface of the environmental chamber is provided with an insulation layer, a ceiling space, and a capillary tube installation layer from top to bottom. The capillary tube installation layer is formed by spaced aluminum plates to create a cavity for installing a capillary radiation network. The dry fan coil unit and the wall-mounted five-balance fresh air unit acting on the environmental chamber are both connected to the air supply interlayer with an air inlet pipe. The exhaust hole is connected to an exhaust pipe and an outlet pipe connected to the dry fan coil unit. The outlet end of the exhaust pipe is connected to the intake pipe, thereby drawing the exhaust gas from the environmental chamber into the air insulation chamber.

[0007] The right wall of the environmental chamber has an air supply interlayer connected to the air inlet and insulation layers on both sides of the air supply interlayer. The air supply interlayer is reasonably designed and facilitates duct installation. The air outlet duct can be directly connected to the air supply interlayer from above to deliver air into the environmental chamber. The front and rear left walls of the environmental chamber are provided with insulation layers and capillary tube installation layers from the outside to the inside. The capillary radiation network is reasonably installed. The top of the environmental chamber is provided with insulation layers, ceiling space and capillary tube installation layers from top to bottom. The wall structure of the chamber is reasonably arranged and the design concept is ingenious. The wall structures on each side of the environmental chamber complement each other to ensure the downward delivery and upward exhaust of airflow.

[0008] A further preferred embodiment is that the right side of the environmental chamber and the left side of the equipment chamber share a wall, and a side wall microperforated plate is installed at intervals on the inner side of the right wall of the environmental chamber, with the microperforations on the side wall microperforated plate serving as air inlets. A ceiling microperforated plate is installed on the left side of the top of the environmental chamber, with the microperforations on the ceiling microperforated plate serving as air outlets, thereby providing air inlet and exhaust channels, resulting in a reasonable structural design.

[0009] A further preferred embodiment is that the insulation layer is made of rock wool sandwiched between two aluminum plates to ensure the insulation effect of the insulation layer.

[0010] Preferably, the exhaust duct is equipped with an intelligent adaptive exhaust module to achieve mechanical exhaust, and a return air branch pipe connected to the return air box of the dry fan coil unit is provided near the air outlet. The return air reuses the airflow, saving energy. The ceiling space is used to provide space for the capillary main pipe, the air outlet duct and the exhaust duct. The structural design is reasonable and ensures the airflow exhaust effect of the environmental chamber.

[0011] Preferably, the height of the sidewall microperforated plate from the bottom surface is 1m to 1.5m, ensuring that the airflow forms a maximum diffusion flow within the environmental chamber, forming an overall airflow organization that delivers air from bottom to top, avoiding the absence or scarcity of airflow organization at the corners of the chamber. The ceiling microperforated plate is installed horizontally and has a size of 3000mm in length and 300mm in width, which is reasonable. The airflow velocity of the air inlet is no greater than 0.5m / s, so as not to cause a blowing sensation, thereby slowly delivering comfortable and clean air into the environmental chamber.

[0012] A further preferred embodiment is that the dry fan coil unit is arranged in two sets, one set acting on the environmental chamber and the other set acting on the equipment chamber, for cooling and heat reduction during equipment operation, which is reasonable.

[0013] More preferably, the intelligent control mechanism includes a five-in-one air quality sensor and a dew point temperature control panel, both installed inside the environmental chamber. The five-in-one air quality sensor is used to detect and adjust the temperature, humidity, PM2.5, carbon dioxide, and TVOC inside the environmental chamber. The dew point temperature control panel is used to control the radiant heating and cooling mechanism, the fresh air cooling mechanism, and the heat source mechanism, thereby adjusting the temperature and humidity inside the environmental chamber to ensure that the environmental chamber is in a state of constant temperature, constant humidity, constant oxygen, constant cleanliness, and constant intelligence, with real-time monitoring and flexible adjustment.

[0014] More preferably, the heat source mechanism includes an ultra-low temperature variable frequency air source heat pump unit, an expansion tank, and a floor heating manifold, ensuring heating and cooling effects, and providing high-temperature cold water of 15 / 20℃ in summer and low-temperature hot water of 35 / 30℃ in winter for the radiant heating and cooling mechanism.

[0015] The beneficial effects of this invention are:

[0016] (1) Since the market currently lacks thermal insulation protection for portable integrated five-balance chambers, this solution sets up an air insulation chamber on the top of the environmental chamber to provide an air insulation layer for the five-balance chamber. The residual heat of the air discharged from the environmental chamber is used for chamber insulation, reducing energy consumption. It can cleverly use the cold or hot air discharged from the environmental chamber to form an insulation layer to isolate the influence of the outside temperature. It can also effectively prevent the solar radiation from directly shining on the top of the environmental chamber, which would cause interference to the temperature control system of the environmental chamber. Especially when the solar radiation is high in summer, the cold air discharged from the environmental chamber can effectively isolate the interference of external solar radiation, effectively avoiding the impact on the environmental chamber's temperature, humidity, oxygen, cleanliness and intelligence balance. The design concept is ingenious and has high practical value.

[0017] (2) Existing exhaust systems typically use straight ducts and point-arranged ultraviolet lamps for disinfection, resulting in short air passage time. In this solution, the ducts in the disinfection mechanism are arranged with upper and lower partitions to form an "S" shaped path, and ultraviolet germicidal lamp strips are installed along the inner wall of the "S" shaped path of the duct, thereby increasing the contact time and area between ultraviolet light and air and ensuring the disinfection effect.

[0018] (3) Compared with the current application of the five-balance system in society, which is mainly based on fixed buildings, it is not possible to integrate the functions of the five-balance system and flexibly move it to other applications. This solution adopts a modular maze-style disinfection environment cabin, which integrates the five-balance system and installs it on a cabin that can be moved at will. The cabin can be moved to multiple scenarios, such as directly replacing the rest room of a motorhome, or serving as a temporary rest room. It can be mass-produced. The modular maze-style disinfection environment cabin production achieves modular standardization, effectively reducing production costs and has great application prospects in the market.

[0019] (4) The radiant heating and cooling system can provide heating and cooling to the environmental chamber through radiation and convection heat transfer. The wall-mounted five-balance fresh air unit can achieve dehumidification in summer, humidification in winter, filtration, and heat and humidity treatment. The dry fan coil unit is used to supplement the cooling load during the summer cooling peak, thereby achieving constant temperature, constant humidity, constant oxygen, constant cleanliness, and constant intelligence in the environmental chamber. The radiant heating and cooling mechanism, fresh air cooling mechanism, and cold and heat source mechanism are controlled by the intelligent control mechanism, thereby flexibly adjusting the temperature and humidity in the environmental chamber.

[0020] In summary, it has advantages such as top insulation of the cabin, good exhaust and disinfection effect, multi-scenario mobility and application, modular and standardized production, great application prospects, and achieving five balances in the environmental cabin. Attached Figure Description

[0021] Figure 1 is a schematic diagram of the structure of the present invention.

[0022] Figure 2 is a schematic diagram of the cold and heat source mechanism (connected to the capillary radiation network and dry fan coil unit).

[0023] Figure 3 is a top view of the environmental cabin and the equipment cabin.

[0024] Figure 4 is a schematic diagram of the fresh air cooling mechanism.

[0025] Figure 5 is a structural schematic diagram of the front and rear left side walls of the environmental chamber.

[0026] Figure 6 is a structural schematic diagram of the ceiling and walls of the environmental chamber.

[0027] Figure 7 is a structural schematic diagram of the right wall of the environmental chamber. Detailed Implementation

[0028] The present invention will be further described below with reference to the embodiments and accompanying drawings:

[0029] As shown in Figures 1-7, a modular maze-style disinfection environment chamber consists of a five-balance system, an environment chamber 1, and an equipment chamber 2.

[0030] The air insulation chamber 6 consists of an exhaust fan unit 61 and a disinfection mechanism 62.

[0031] The exhaust fan unit 61 is equipped with an air intake pipe 611 connected to the environmental chamber 1 and an air outlet pipe connected to the disinfection mechanism 62, which are used to draw in the gas discharged from the environmental chamber 1 for filtration and then discharge it into the disinfection mechanism 62 for disinfection and sterilization.

[0032] The disinfection unit 62 internal air duct adopts a plate-folded structure with upper and lower partitions arranged at intervals to form an "S" shaped path, and ultraviolet germicidal lamp strips are installed along the inner wall of the "S" shaped path of the air duct.

[0033] The disinfection mechanism 62 is provided with a disinfection exhaust pipe 621 on the side away from the exhaust connection pipe, which is used to discharge the disinfected gas into the air insulation chamber 6 to form an air insulation layer, thereby reducing the impact of direct sunlight on the temperature regulation of the environmental chamber 1.

[0034] An air outlet 63 for discharging heated air is provided on the top side of the air insulation chamber 6 above the disinfection exhaust pipe 621.

[0035] The five-balance system consists of a radiant heating and cooling mechanism 3, a fresh air and cooling mechanism 4, an intelligent control mechanism, and a cold and heat source mechanism 5.

[0036] The heat source / cold source mechanism 5 is installed inside the equipment compartment 2 and is used to provide low-temperature hot water and high-temperature cold water to the radiant heating and cooling mechanism 3 and the fresh air cooling mechanism 4.

[0037] The heat source unit 5 consists of an ultra-low temperature variable frequency air source heat pump unit 51, an expansion tank 52, and a floor heating manifold 53.

[0038] The radiant heating and cooling system 3 consists of a capillary radiation network 31 connected to the heat source mechanism 5 and installed on the top side and the front and rear left side walls of the environmental chamber 1.

[0039] The environmental chamber 1 has an air inlet 11 on the right side and an exhaust 12 on the top side.

[0040] The right side of environmental compartment 1 and the left side of equipment compartment 2 share a wall.

[0041] The inner right wall of the environmental chamber 1 is equipped with a side wall microperforated plate 13 at intervals, and the microholes on the side wall microperforated plate 13 are air inlets 11, with the airflow velocity of the air inlets 11 not exceeding 0.5m / s.

[0042] A ceiling micro-perforated plate 14 is installed on the left side of the top of the environmental chamber 1, and the micro-perforations on the ceiling micro-perforated plate 14 are exhaust vents 12.

[0043] The height of the side wall micro-perforated panel 13 from the bottom surface is preferably 1m to 1.5m, and the ceiling micro-perforated panel 14 is installed horizontally and its dimensions are preferably 3000mm in length and 300mm in width.

[0044] The right wall of the environmental chamber 1 has an air supply interlayer 18 connected to the air inlet 11 and an insulation layer 15 located on the left and right sides of the air supply interlayer 18.

[0045] The front and rear left walls of the environmental chamber 1 are provided with an insulation layer 15 and a capillary tube installation layer from the outside to the inside.

[0046] The top surface of the environmental chamber 1 is provided with an insulation layer 15, a suspended ceiling space 17, and a capillary tube installation layer from top to bottom.

[0047] The insulation layer 15 is made of rock wool sandwiched between two aluminum plates 16.

[0048] The capillary mounting layer is formed by spaced aluminum plates 16 to create a cavity for mounting the capillary radiation mesh 31.

[0049] The fresh air cooling system 4 consists of a wall-mounted five-phase fresh air unit 42 and a dry fan coil unit 41 connected to the cold and heat source system 5.

[0050] The dry fan coil unit 41 is divided into two sets, one set acts on the environmental chamber 1 and the other set acts on the equipment chamber 2, which is used to cool down the equipment during operation.

[0051] The dry fan coil unit 41 and the wall-mounted five-phase fresh air unit 42 acting on the environmental chamber 1 are both equipped with air inlet pipes 43 between them and the air supply jacket 18.

[0052] The exhaust vent 12 is connected to an exhaust duct 44 and an air outlet duct 45 that is connected to a dry fan coil unit 41.

[0053] The outlet end of the exhaust pipe 44 is connected to the intake pipe 611, thereby drawing the exhaust gas from the environmental chamber 1 into the air insulation chamber 6.

[0054] The exhaust duct 44 is equipped with an intelligent adaptive exhaust module 442, and a return air branch duct 441 connected to the return air box of the dry fan coil unit 41 is provided near the air outlet.

[0055] The ceiling space 17 is used to provide space for the capillary main pipe, the air outlet pipe 44 and the exhaust pipe 45.

[0056] The wall-mounted five-phase fresh air unit 42 and the dry fan coil unit 41 can respectively send fresh air and cold air into the equipment compartment 2 through the air inlet 11 and send them out through the exhaust 12.

[0057] The intelligent control mechanism is used to control the radiant heating and cooling mechanism 3, the fresh air and cooling mechanism 4, and the cold and heat source mechanism 5.

[0058] The intelligent control mechanism mainly consists of a five-in-one air quality sensor and a dew point temperature control panel, both of which are installed in the environmental chamber 1.

[0059] The five-in-one air quality sensor is used to detect and regulate the temperature, humidity, PM2.5, carbon dioxide, and TVOC in the environmental chamber 1.

[0060] The dew point temperature control panel is used to control the radiant heating and cooling mechanism 3, the fresh air cooling mechanism 4, and the heat source mechanism 5, thereby regulating the temperature and humidity inside the environmental chamber 1.

[0061] The radiant heating and cooling system 3 is used to provide heating and cooling to the environmental chamber 1 through radiant and convective heat transfer.

[0062] The wall-mounted five-balance fresh air unit 42 can achieve dehumidification in summer, humidification in winter, filtration, and heat and humidity treatment functions. The dry fan coil unit 41 is used to supplement the cooling load during the summer cooling peak.

[0063] The intelligent control mechanism controls the radiant heating and cooling mechanism 3, the fresh air and cooling mechanism 4, and the heat and cold source mechanism 5, thereby adjusting the temperature, humidity and airflow organization in the environmental chamber and realizing the radiant heating and cooling, fresh air and exhaust functions in the environmental chamber 1.

Claims

1. A modular labyrinth-style disinfection environment cabin, characterized in that: The system includes a five-balance system, an environmental chamber (1), an equipment chamber (2), and an air-insulated chamber (6) located above the environmental chamber (1). The air-insulated chamber (6) includes an exhaust fan unit (61) and a disinfection mechanism (62). The exhaust fan unit (61) is equipped with an air intake pipe (611) connected to the environmental chamber (1) and an air outlet pipe connected to the disinfection mechanism (62). It is used to draw in the gas discharged from the environmental chamber (1), filter it, and then discharge it into the disinfection mechanism (62) for disinfection. The air duct inside the disinfection mechanism (62) is arranged with upper and lower partitions to form an "S" shaped path plate folding structure. The structure is equipped with ultraviolet germicidal lamp strips installed on the inner wall of the "S"-shaped path of the air duct. The disinfection mechanism (62) is provided with a disinfection exhaust pipe (621) on the side away from the exhaust connection pipe, which is used to discharge the disinfected gas into the air insulation chamber (6) to form an air insulation layer. The top side of the air insulation chamber (6) is provided with an exhaust port (63) for the heated air to be discharged above the disinfection exhaust pipe (621). The five-balance system includes a radiant heating and cooling mechanism (3), a fresh air cooling mechanism (4), an intelligent control mechanism, and a cold and heat source mechanism (5). The cold and heat source mechanism (5) is installed on the equipment. The cabin (2) is used to provide low-temperature hot water and high-temperature cold water to the radiant heating and cooling mechanism (3) and the fresh air cooling mechanism (4). The intelligent control mechanism is used to control the radiant heating and cooling mechanism (3), the fresh air cooling mechanism (4) and the heat source mechanism (5). The radiant heating and cooling system (3) is used to provide heating and cooling to the environmental cabin (1) by means of radiation and convection heat transfer. The radiant heating and cooling system (3) includes a capillary radiation network (31) connected to the heat source mechanism (5) and arranged on the top side and the front and rear left side walls of the environmental cabin (1). The environmental cabin (1) is provided with an air inlet on the right side. The top side is provided with an exhaust vent (12); the fresh air and cold air mechanism (4) includes a wall-mounted five-balance fresh air unit (42) and a dry fan coil unit (41) connected to the cold and heat source mechanism (5); the wall-mounted five-balance fresh air unit (42) and the dry fan coil unit (41) can respectively send fresh air and cold air into the equipment compartment (2) through the air inlet (11) and send them out through the exhaust vent (12). The wall-mounted five-balance fresh air unit (42) can realize the functions of dehumidification in summer, humidification in winter, filtration, and heat and humidity treatment. The dry fan coil unit (41) is used to supplement the load cooling during the summer cooling peak.

2. The modular labyrinth-style disinfection environment chamber according to claim 1, characterized in that: The environmental chamber (1) has an air supply interlayer (18) connected to the air inlet (11) in the middle of the right wall and an insulation layer (15) on the left and right sides of the air supply interlayer (18). The environmental chamber (1) has an insulation layer (15) and a capillary tube installation layer arranged from the outside to the inside on the front and rear left walls. The environmental chamber (1) has an insulation layer (15), a ceiling space (17), and a capillary tube installation layer arranged from top to bottom on the top surface. The capillary tube installation layer is formed by spaced aluminum plates (16) to accommodate capillary tubes. The cavity of the radiation net (31) is equipped with an air inlet pipe (43) between the dry fan coil unit (41) and the wall-mounted five-phase fresh air unit (42) acting on the environmental chamber (1) and the air supply jacket (18). The exhaust hole (12) is connected to an exhaust pipe (44) and an air outlet pipe (45) connected to the dry fan coil unit (41). The outlet end of the exhaust pipe (44) is connected to the intake pipe (611), thereby drawing the exhaust gas from the environmental chamber (1) into the air insulation chamber (6).

3. The modular labyrinth-style disinfection environment chamber according to claim 2, characterized in that: The right side of the environmental chamber (1) and the left side of the equipment chamber (2) share a wall. The inner side of the right wall of the environmental chamber (1) is equipped with a side wall micro-perforated plate (13) at intervals, and the micro-holes on the side wall micro-perforated plate (13) are air inlets (11). The top side of the environmental chamber (1) is equipped with a ceiling micro-perforated plate (14) on the left, and the micro-holes on the ceiling micro-perforated plate (14) are exhaust vents (12).

4. The modular labyrinth-style disinfection environment chamber according to claim 2, characterized in that: The insulation layer (15) is made of rock wool sandwiched between two aluminum plates (16).

5. The modular labyrinth-style disinfection environment chamber according to claim 2, characterized in that: The exhaust duct (44) is equipped with an adaptive exhaust module (442) and a return air branch pipe (441) connected to the return air box of the dry fan coil unit (41) is provided near the air outlet. The ceiling space (17) is used to provide space for the capillary main pipe, the air outlet duct (45) and the exhaust duct (44).

6. The modular labyrinth-style disinfection environment chamber according to claim 3, characterized in that: The height of the side wall micro-perforated plate (13) from the bottom surface is 1m to 1.5m. The ceiling micro-perforated plate (14) is installed horizontally and has a length of 3000mm and a width of 300mm. The airflow velocity of the air inlet (11) is not greater than 0.5m / s.

7. A modular labyrinth-style disinfection environment chamber according to claim 2, characterized in that: The dry fan coil unit (41) is divided into two sets, one set acting on the environmental chamber (1) and the other set acting on the equipment chamber (2), for cooling and heat reduction during equipment operation.

8. The modular labyrinth-style disinfection environment chamber according to claim 1, characterized in that: The intelligent control mechanism includes a five-in-one air quality sensor and a dew point temperature control panel, both installed in the environmental chamber (1). The five-in-one air quality sensor is used to detect and adjust the temperature, humidity, PM2.5, carbon dioxide, and TVOC in the environmental chamber (1). The dew point temperature control panel is used to control the radiant heating and cooling mechanism (3), the fresh air cooling mechanism (4), and the cold and heat source mechanism (5), thereby adjusting the temperature and humidity in the environmental chamber (1).

9. A modular labyrinth-style disinfection environment chamber according to claim 1, characterized in that: The heat source mechanism (5) includes an ultra-low temperature variable frequency air source heat pump unit (51), an expansion tank (52), and a floor heating manifold (53).

Citation Information

Patent Citations

  • Cold and heat radiation shelter air conditioning system

    CN113465052A

  • Novel ventilation wet-absorption heat-preservation wall structure

    CN203977624U