Warm corridor

By designing adjustable windows and an intelligent control system in the heated corridor, combined with natural ventilation and renewable energy, the problem of high energy consumption in the heated corridor has been solved, achieving low-energy environmental control and comfortable operation throughout the year.

CN223103830UActive Publication Date: 2025-07-15XINXING JIHUA ASSET MANAGEMENT CO LTD
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Patent Information

Application Number
CN202422407923.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-15
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

Existing heated corridors consume a lot of energy for environmental regulation. How can we achieve low-energy environmental control?

Method used

The design incorporates windows that can be opened or closed, combined with air conditioning and fresh air systems, utilizing natural ventilation and renewable energy for environmental regulation, and optimizing the operation of the windows and systems through sensors and controllers.

Benefits of technology

This reduces the energy consumption and carbon emissions of the heated corridor, achieving a comfortable and safe operation throughout the year.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a warm corridor. The warm corridor comprises a warm corridor body, the warm corridor body is provided with a channel (10), an air conditioning system and / or a fresh air system and a window (11) are / is arranged in the channel (10), and the window (11) is arranged at the top of the channel and designed to be selectively opened or closed. Therefore, the environment of the warm corridor is controlled in a low-energy-consumption mode.
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Description

Technical Field

[0001] The present application relates to the field of architecture, and more particularly, to a warm corridor. Background Art

[0002] A warm corridor refers to a corridor enclosed by glass or windows, usually used for wind prevention and heat preservation. For example, in the northern regions with severe cold and cold winters, a connected warm corridor can be provided between the motor vehicle garage and the residence. As a relatively enclosed area, it can provide a comfortable environment through air conditioners or heaters in cold and hot weather.

[0003] Generally, the air quality, temperature, humidity, etc. in the warm corridor need to be adjusted through a fresh air system, an air conditioning system, etc. throughout the year, which results in relatively high energy consumption. Therefore, how to achieve environmental control of the warm corridor in a low-energy consumption manner has become a technical problem to be solved in this field. Utility Model Content

[0004] In view of this, the present application proposes a warm corridor to achieve environmental control of the warm corridor in a low-energy consumption manner.

[0005] According to the present application, a warm corridor is proposed, which includes: a warm corridor main body having a passage, an air conditioning system and / or a fresh air system provided in the passage, and a window provided at the top of the passage and designed to be selectively opened or closed.

[0006] Optionally, the window includes: a first side support portion and a second side support portion, which are respectively located on both sides of the top of the passage; and an opening member provided between the first side support portion and the second side support portion, the opening member being designed to be selectively opened or closed to communicate or enclose the passage with the external environment.

[0007] Optionally, the window includes a longitudinal support portion located at the middle position of the top of the passage and extending along the longitudinal direction of the passage; the opening member includes a first opening member and a second opening member, the first opening member being provided between the longitudinal support portion and the first side support portion, and the second opening member being provided between the longitudinal support portion and the second side support portion.

[0008] Optionally, the longitudinal support portion is higher than the first side support portion and the second side support portion, and when observed in the longitudinal direction of the passage, the first opening member and the second opening member extend obliquely downward from the horizontal direction.

[0009] Optionally, the first opening member and the second opening member have a closed state and a maximum opening state. In the closed state, the first opening member and the second opening member respectively close the spaces between the first side support portion and the longitudinal support portion and between the second side support portion and the longitudinal support portion; in the maximum opening state, the maximum flow-through area exists between the first side support portion and the longitudinal support portion and between the second side support portion and the longitudinal support portion.

[0010] Optionally, when both the first opening member and the second opening member are in the maximum opening state, a transverse ventilation channel is formed between the first side support portion and the longitudinal support portion and between the second side support portion and the longitudinal support portion.

[0011] Optionally, both the first opening member and the second opening member can rotate around a rotation axis extending along the longitudinal direction of the channel, and the maximum opening angle of the first opening member and the second opening member is 40 degrees to 45 degrees.

[0012] Optionally, a drain groove is formed in the outer portion of the longitudinal support portion.

[0013] Optionally, the window is light-transmitting and is used to allow external light to enter the internal space of the channel.

[0014] Optionally, at least a part of both sides of the bottom and / or middle of the channel is provided as a glass curtain wall, and a garage or an overhead floor is located outside the glass curtain wall.

[0015] Optionally, the solarium includes: a window switch driving device for driving the window to open or close; a sensor for detecting parameters of the temperature, humidity, and air quality in the internal space of the channel; a controller electrically connected to the sensor and controlling the driving of the window by the window switch driving device and / or controlling the operating state of the air conditioning system and / or the fresh air system according to the parameter information collected by the sensor.

[0016] According to the technical solution of the present application, a solarium is provided. The solarium includes a solarium main body and a window. The solarium main body has a channel, and the window is at the top of the channel and is designed to be selectively opened or closed. In this way, the environmental control of the solarium can be realized by natural ventilation according to the actual situation, the use of the fresh air system and the air conditioning system can be reduced, the energy consumption can be lowered, and the environment of the solarium can be controlled in a low-energy consumption manner.

[0017] Other features and advantages of the present application will be described in detail in the subsequent specific implementation section. Description of the Drawings

[0018] The accompanying drawings, which form a part of this application, are used to provide a further understanding of this application. The schematic embodiments and descriptions thereof are used to explain this application. In the drawings:

[0019] Figure 1 It is a schematic structural diagram of a sun porch according to a preferred embodiment of this application;

[0020] Figure 2 It is a top view of a sun porch according to a preferred embodiment of this application;

[0021] Figure 3 It is a three-dimensional view of a partial structure of a sun porch according to a preferred embodiment of this application. Detailed Embodiments

[0022] The technical solutions of this application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0023] The embodiments of this application provide a sun porch. Among them, the sun porch includes a sun porch main body and a window 11.

[0024] The sun porch main body includes a passage 10, as Figure 1 shown. An air conditioning system and / or a fresh air system is arranged in the passage 10. As Figure 1 shown, a sealed ceiling is arranged in the passage 10, and a fresh air air conditioning system is arranged in the ceiling, and linkage lines are provided.

[0025] The window 11 is arranged at the top of the passage 10 and is designed to be selectively opened or closed.

[0026] In the embodiments of this application, no limitation is imposed on the light transmittance of the window 11. The window 11 can be light-transmitting or light-impermeable.

[0027] Optionally, in the embodiments of this application, the window 11 is light-transmitting and is used to allow external light to enter the internal space of the passage 10. In this way, the brightness in the passage 10 can be increased, thereby improving the comfort of the sun porch.

[0028] In the embodiments of this application, the specific structure of the window 11 can be determined according to specific circumstances, as long as it can be selectively opened or closed. For example, the window 11 includes a foldable part and a closed structure. The foldable part is located at the top of the passage 10, and the closed structure can fit with the top of the passage 10 to achieve the closure of the passage 10. When the foldable part extends or contracts, the closed structure is separated from or closed with the top of the passage 10, thereby realizing the opening or closing of the window 11.

[0029] Optionally, in the embodiments of this application, the window 11 may include a first side support portion 111, a second side support portion 112, and an opening member 114.

[0030] The first side support portion 111 and the second side support portion 112 are respectively located on both sides of the top of the passage 10, as Figure 1 shown.

[0031] Optionally, in the embodiment of the present application, the first side support portion 111 and / or the second side support portion 112 may be a concrete counterfort.

[0032] Optionally, in the embodiment of the present application, when the warm corridor is arranged in the garage, the first side support portion 111 and the second side support portion 112 may be structures at the part higher than the ground.

[0033] The opening member 114 is arranged between the first side support portion 111 and the second side support portion 112, and the opening member 114 is designed to be selectively opened or closed so that the passage 10 communicates with or is closed off from the external environment.

[0034] Optionally, in the embodiment of the present application, an exhaust fan 14 may be arranged in the middle of the first side support portion 111 and / or the middle of the second side support portion 112, and the exhaust fan 14 is provided with a linkage circuit.

[0035] As Figure 1 shown, an exhaust fan 14 is arranged in the middle of the first side support portion 111 and the middle of the second side support portion 112. Among them, the exhaust fan 14 is 500 mm high. The heights of both the first side support portion 111 and the second side support portion 112 are 1000 mm, and the heights of the structures on both sides of the exhaust fan 14 are 300 mm and 200 mm respectively.

[0036] Optionally, in the embodiment of the present application, the exhaust fan 14 may be an electronically controlled automatic heat-insulating exhaust fan.

[0037] In the embodiment of the present application, the opening member 114 may be set as an integral component located between the first side support portion 111 and the second side support portion 112, or the opening member 114 may be divided into multiple parts, and each part can be individually controlled to be opened or closed.

[0038] Optionally, in the embodiment of the present application, the window 11 includes a longitudinal support portion 113. The longitudinal support portion 113 is located at the middle position of the top of the passage 10 and extends along the longitudinal direction of the passage 10. Optionally, in the embodiment of the present application, the longitudinal support portion 113 may be a transverse steel beam 1131, as Figure 1 shown.

[0039] The opening member 114 includes a first opening member 1141 and a second opening member 1142. The first opening member 1141 is arranged between the longitudinal support portion 113 and the first side support portion 111, and the second opening member 1142 is arranged between the longitudinal support portion 113 and the second side support portion 112, as Figure 1 orFigure 2 or Figure 3 as shown

[0040] Optionally, in the embodiments of the present application, the first opening member 1141 and / or the second opening member 1142 are light-transmitting, including glass and a glass frame. Preferably, in the embodiments of the present application, the glass is photovoltaic glass. For example, the photovoltaic glass can be an electrically controlled hollow heat-insulating photovoltaic glass, and the photovoltaic glass is connected to a photovoltaic charging controller through a wire and connected to a storage battery, which can provide power for indoor lighting in the warm corridor.

[0041] In the embodiments of the present application, the manner in which the first opening member 1141 is disposed between the longitudinal support portion 113 and the first side support portion 111 and / or the manner in which the second opening member 1142 is disposed between the longitudinal support portion 113 and the second side support portion 112 can be determined according to specific circumstances.

[0042] Optionally, in the embodiments of the present application, the first opening member 1141 and / or the second opening member 1142 are disposed based on a steel beam.

[0043] As Figure 1 shown, the first opening member 1141 is disposed based on the first triangular steel beam 151, and the second opening member 1142 is disposed based on the second triangular steel beam 152. Specifically, the first triangular steel beam 151 is connected to the first support portion 111 and the longitudinal support portion 113, for example, by fastening bolts. The first opening member 1141 is connected to the first triangular steel beam 151, and the second opening member 1142 is connected to the second triangular steel beam 152, for example, by bolt anchoring installation. Specifically, the first opening member 1141 and the second opening member 1142 include glass and a glass frame, and the first triangular steel beam 151 and the second triangular steel beam 152 are anchored and installed with the glass frame.

[0044] In addition, foaming material can be filled in the gaps between the first triangular steel beam 151 and the second triangular steel beam 152, and a waterproof agent is evenly applied on the surface.

[0045] In the embodiments of the present application, there is no limitation on the heights of the longitudinal support portion 113, the first side support portion 111, and the second side support portion 112. For example, the height of the longitudinal support portion 113 can be higher than the heights of the first side support portion 111 and the second side support portion 112; or, the height of the longitudinal support portion 113 can be lower than the heights of the first side support portion 111 and the second side support portion 112.

[0046] Optionally, in the embodiments of the present application, the longitudinal support portion 113 is higher than the first side support portion 111 and the second side support portion 112. When observed in the longitudinal direction of the passage 10, the first opening member 1141 and the second opening member 1142 extend obliquely downward from the horizontal direction, as Figure 1 orFigure 3 as shown

[0047] In an embodiment of the present application, by setting the longitudinal support portion 113 higher than the first side support portion 111 and the second side support portion 112, it is convenient to clean rain, snow, sundries, etc.

[0048] Optionally, in an embodiment of the present application, the first opening member 1141 and the second opening member 1142 have a closed state and a maximum opening state.

[0049] When the first opening member 1141 is in the closed state, the first opening member 1141 closes between the first side support portion 111 and the longitudinal support portion 113, as Figure 1 shown; when the second opening member 1142 is in the closed state, the second opening member 1142 closes between the second side support portion 112 and the longitudinal support portion 113, as Figure 1 shown.

[0050] In the maximum opening state, there is a maximum flow-through area between the first side support portion 111 and the longitudinal support portion 113 and between the second side support portion 112 and the longitudinal support portion 113. When the first opening member 1141 is in the maximum opening state, the maximum ventilation between the first side support portion 111 and the longitudinal support portion 113 can be achieved, and the flow-through area is larger than in any other state; when the second opening member 1142 is in the maximum opening state, the maximum ventilation between the second side support portion 112 and the longitudinal support portion 113 can be achieved.

[0051] It should be noted that, in an embodiment of the present application, when the first opening member 1141 is in the maximum opening state, the position of the first opening member 1141 is not limited, as long as the maximum flow-through area between the first side support portion 111 and the longitudinal support portion 113 can be achieved. The same is true for the second opening member 1142.

[0052] Optionally, in an embodiment of the present application, when the first opening member 1141 and the second opening member 1142 are both in the maximum opening state, a transverse ventilation channel 12 is formed between the first side support portion 111 and the longitudinal support portion 113 and between the second side support portion 112 and the longitudinal support portion 113, as Figure 1 shown by the solid straight line with arrows at both ends.

[0053] Optionally, in an embodiment of the present application, the first opening member 1141 and the second opening member 1142 can both rotate around a rotation axis extending along the longitudinal direction of the channel, and the maximum opening angle of the first opening member 1141 and the second opening member 1142 is 40 degrees to 45 degrees.

[0054] Optionally, in the embodiments of the present application, the ridge end of the first opening member 1141 may be set as the fixed end and the eave end as the opening end, where the ridge end is the end with a higher height among the two ends of the first opening member 1141, and the eave end is the end with a lower height among the two ends of the first opening member 1141. Alternatively, the ridge end of the first opening member 1141 may be set as the opening end and the eave end as the fixed end. The same applies to the second opening member 1142.

[0055] The opening angle of the first opening member 1141 is the rotation angle from when the first opening member 1141 is closed between the first side support portion 111 and the longitudinal support portion 113 to the current position of the first opening member 1141. The opening angle of the second opening member 1142 can also be understood by referring to the opening angle of the first opening member 1141.

[0056] As Figure 1 shown, the ridge end of the first opening member 1141 is set as the fixed end and the eave end as the opening end, and the same applies to the second opening member 1142. Among them, the rotation direction of the first opening member 1141 can be referred to as shown by the virtual arc with arrows at both ends in Figure 1 ; the rotation direction of the second opening member 1142 can be referred to as shown by the solid arc with arrows at both ends in Figure 1 . In addition, the opening angle of the first opening member 1141 is as shown by θ in Figure 1 .

[0057] Optionally, in the embodiments of the present application, a drainage groove 13 is formed on the outer side of the longitudinal support portion 113, as shown in Figure 1 or Figure 2 or Figure 3 to facilitate the drainage of rainwater.

[0058] For example, the drainage groove 13 can be a heat-insulating drainage groove, which can not only drain the rainwater on the roof in time but also ensure the heat-insulating effect. In addition, the shape of the drainage groove 13 can be determined according to specific circumstances. For example, the cross-section of the drainage groove 13 can be U-shaped, V-shaped, etc.

[0059] Optionally, in the embodiments of the present application, a skylight flashing can also be provided, as shown in Figure 2 and installed at the edges of the first opening member 1141 and the second opening member 1142.

[0060] Optionally, in the embodiments of the present application, at least a part of the bottom and / or both sides in the middle of the passage 10 is set as a glass curtain wall, and the outside of the glass curtain wall is a garage or an overhead floor. As shown in Figure 1 , glass curtain walls are provided on both sides of the passage 10, and the outside of the glass curtain walls is a garage.

[0061] Optionally, in the embodiments of the present application, the sun porch further includes a window switch driving device, a sensor, and a controller. Among them, the window switch driving device is used to drive the window 11 to open or close; the sensor is used to detect the parameters of the temperature, humidity, and air quality in the internal space of the passage 10; the controller is electrically connected to the sensor and controls the driving of the window switch driving device for the window 11 and / or controls the operating state of the air conditioning system and / or the fresh air system according to the parameter information collected by the sensor.

[0062] Optionally, in the embodiments of the present application, the window switch driving device may include an electro-hydraulic rod and an electric opening hinge.

[0063] As Figure 1 shown, between the first triangular steel beam 151 and the first opening member 1141, a first electro-hydraulic rod 161 connected to the first opening member 1141 is provided. Between the eaves end of the first opening member 1141 and the first triangular steel beam 151, a first electric opening hinge 171 is provided, and a linkage circuit is provided; under the action of the first electro-hydraulic rod 161 and the first electric opening hinge 171, the first opening member 1141 is opened or closed. It should be noted that in the Figure 1 structure shown, the eaves end of the first opening member 1141 is set as the opening end. If the ridge end of the first opening member 1141 is set as the opening end, then the first electric opening hinge 171 can be provided between the ridge end of the first opening member 1141 and the first triangular steel beam 151.

[0064] As Figure 1 shown, between the second triangular steel beam 152 and the second opening member 1142, a second electro-hydraulic rod 162 connected to the second opening member 1142 is provided. Between the eaves end of the second opening member 1142 and the second triangular steel beam 152, a second electric opening hinge 172 is provided, and a linkage circuit is provided; under the action of the second electro-hydraulic rod 162 and the second electric opening hinge 172, the second opening member 1142 is opened or closed. It should be noted that in the Figure 1 structure shown, the eaves end of the second opening member 1142 is set as the opening end. If the ridge end of the second opening member 1142 is set as the opening end, then the second electric opening hinge 172 can be provided between the ridge end of the second opening member 1142 and the second triangular steel beam 152.

[0065] Optionally, in the embodiments of the present application, the first electric opening hinge 171 and / or the second electric opening hinge 172 may be a concealed electric opening hinge, so that when the first opening member 1141 and / or the second opening member 1142 is closed, it does not occupy space and is more beautiful.

[0066] Optionally, in the embodiments of the present application, when the first opening member 1141 and / or the second opening member 1142 include glass and a glass frame, the first electro-hydraulic rod 161 and / or the second electro-hydraulic rod 162 are disposed on the side surface of the glass frame.

[0067] In the embodiments of the present application, the setting of the sensors for detecting the parameters of the temperature, humidity, and air quality in the internal space of the channel 10 can be determined according to specific circumstances. For example, Figure 1 as shown, sensors for detecting the parameters such as the temperature, humidity, and air quality in the internal space of the channel 10 are provided at a position 1.3 m above the ground on the glass curtain wall to analyze the indoor environmental conditions. Then, the driving of the window 11 is controlled according to the set limits, and / or the opening and closing of the exhaust fan 14 are controlled, and / or the opening and closing of the fresh air system and / or the air conditioning system are controlled.

[0068] Optionally, in the embodiments of the present application, sensors for detecting the parameters such as the temperature, humidity, and air quality outside the channel 10 can also be provided to analyze the outdoor environmental conditions, and then the driving of the window 11 is controlled according to the set limits, and / or the opening and closing of the exhaust fan 14 are controlled. For example, Figure 1 or Figure 3 as shown, the sensors for detecting the parameters such as the temperature, humidity, and air quality outside the channel 10 are provided at the ridge end of the first opening member 141.

[0069] Optionally, in the embodiments of the present application, the control strategy of the controller can be set according to the season. Specifically, the following content can be referred to.

[0070] According to the characteristics of the indoor design temperature and outdoor design parameters of the air conditioner, it is divided into three seasons, namely winter (for example, generally from November 15th to March 15th), summer (for example, generally from June 20th to September 30th), and the transitional season (spring and autumn, for example, generally from March 15th to June 20th; from October 1st to November 14th).

[0071] The warm corridor refers to a facility located between the outdoors and the indoors. Its main function is to provide a transitional area with a comfortable environment to improve people's experience of entering the indoors from the outdoors (e.g., a motor vehicle garage) or from the indoors to the outdoors. Therefore, the indoor temperature design of the warm corridor is different from that of other indoor spaces. The indoor design temperature of the warm corridor in summer is usually higher than that of the area where people stay for a long time, and the indoor design temperature of the warm corridor in winter is usually lower than that of the area where people stay for a long time. According to the requirements of GB / T 18883-2022 "Indoor Air Quality Standard" and GB50736-2016 "Design Code for Heating, Ventilation and Air Conditioning of Civil Buildings" for indoor design parameters and the characteristics of the warm corridor as a transitional area between indoors and outdoors, the indoor design temperature of the warm corridor in summer is 26-28°C; the indoor design temperature of the warm corridor in winter is 16-18°C. The indoor carbon dioxide concentration is less than or equal to 0.1%a. The hourly average values of indoor and outdoor temperatures and carbon dioxide concentrations are used as the input parameters of the control system.

[0072] For the transitional season, the outdoor temperature is suitable and the air conditioner is not turned on. For ventilation in the transitional season (spring and autumn), the following strategies can be adopted. In spring and autumn, the air conditioner and the floor heating system are turned off. Sensors arranged indoors and outdoors are used to confirm the indoor and outdoor environmental conditions. When the outdoor temperature, humidity, and air quality are suitable, the controller issues an instruction to drive the window 11 to open through the window switch driving device, so that the warm corridor and the outdoors can conduct effective ventilation; when the indoor temperature still cannot be reduced through the window 11 and / or the exhaust fan 14, the controller automatically closes the window 11 and turns on the indoor air conditioning system.

[0073] In addition, in the embodiment of the present application, the indoor carbon dioxide concentration is detected. When the indoor carbon dioxide concentration in the warm corridor is less than or equal to 0.1%a, it remains unchanged; when the indoor carbon dioxide concentration in the warm corridor is greater than 0.1%a, the window 11 and the fresh air unit are controlled to be turned on, and when the indoor carbon dioxide concentration is lower than the lower limit of the carbon dioxide concentration (0.06%a), the fresh air unit is turned off. For the heating season, the warm corridor adopts the low-temperature hot water floor radiation heating method, and the heat source is municipal heating. The low-temperature hot water floor radiation heating uses the radiation principle and the principle that the fluid rises due to heating to ensure the temperature requirements of the human activity space. Under the same comfortable conditions, the indoor calculated temperature under this heating method can generally be 2°C lower than that of the convection heating method, and the total heat consumption can be reduced by about 10%. Therefore, this heating method has the characteristics of high comfort and energy saving. The control strategy for the heating season can be to control the opening degree of the heating valve and whether the fresh air unit is turned on according to the indoor temperature and carbon dioxide concentration. Specifically, refer to the following content.

[0074] When the indoor design temperature of the warm corridor is greater than or equal to 16°C and less than or equal to 18°C and the indoor carbon dioxide concentration in the warm corridor is less than or equal to 0.1%a, it remains unchanged.

[0075] When the indoor design temperature of the sunspace is not greater than or equal to 16°C and less than or equal to 18°C, and the indoor carbon dioxide concentration in the sunspace is less than or equal to 0.1%a, it is judged whether the indoor design temperature of the sunspace is less than 16°C. If the indoor design temperature of the sunspace is less than 16°C, then control to increase the opening degree of the heating valve. Subsequently, it is judged whether the indoor carbon dioxide concentration in the sunspace is less than or equal to 0.1%a. If so, maintain the status quo and do not start the fresh air unit; if not, control to start the fresh air unit. If the indoor design temperature of the sunspace is greater than or equal to 16°C, then it is judged whether the indoor design temperature of the sunspace is less than or equal to 18°C. If the indoor design temperature of the sunspace is less than or equal to 18°C, then it is judged whether the indoor carbon dioxide concentration in the sunspace is less than or equal to 0.1%a. If so, maintain the status quo and do not start the fresh air unit; if not, control to start the fresh air unit. If the indoor design temperature of the sunspace is greater than 18°C, then control to reduce the opening degree of the heating valve. Subsequently, it is judged whether the indoor carbon dioxide concentration in the sunspace is less than or equal to 0.1%a. If so, maintain the status quo and do not start the fresh air unit; if not, control to start the fresh air unit.

[0076] For summer, the air-conditioning electric energy can be supplied by photovoltaic power generation. The solar air-conditioning system includes a photovoltaic power generation system, a storage battery, an air-conditioning unit, an energy management system, and a municipal power supply. The solar photovoltaic air-conditioning makes the most of renewable energy, which can effectively reduce the energy consumption of the sunspace, save the operation cost, and reduce carbon emissions. Specifically, first open the window 11 for ventilation and air change to improve the indoor air quality, and then decide whether to turn on the air-conditioning unit according to whether the indoor temperature meets the requirements. Specifically, refer to the following content.

[0077] Control the window switch driving device to open the window 11. Subsequently, it is judged whether the indoor carbon dioxide concentration in the sunspace is less than or equal to 0.1%a. If not, control to start the fresh air unit. If so, it is judged whether the indoor design temperature of the sunspace is less than or equal to 28°C. If the indoor design temperature of the sunspace is less than or equal to 28°C, then keep the status quo; if the indoor design temperature of the sunspace is greater than 28°C, then control the window switch driving device to close the window 11, turn on the air-conditioning unit and the fresh air unit, and when the indoor temperature is lower than 26 degrees, turn off the air-conditioning system.

[0078] In addition, the peak usage period of the sunspace is from 7:00 to 8:30 in the morning and from 18:00 to 20:30 in the evening. Considering the energy-saving operation of the equipment, the air-conditioning and ventilation equipment stops running between 22:00 in the evening and 7:00 the next morning, and operates normally during the rest of the time period.

[0079] Through the technical solutions provided by the embodiments of the present application, it is possible to make the most of natural ventilation and renewable energy to reduce the energy consumption and carbon emissions of the warm corridor. By controlling the opening or closing of the window 11, the comfortable and energy-saving operation of the warm corridor in the transitional season can be achieved; by adopting low-temperature hot water floor radiant heating, the comfort level in the warm corridor in winter can be ensured; by using a solar air-conditioning system, the indoor temperature and humidity can be maintained to ensure the comfort level in the warm corridor in summer; the fresh air in the room is provided by a fresh air heat exchange unit to ensure the indoor air quality and reduce the fresh air energy consumption. Through the above technical solutions, the all-year-round comfortable, safe and energy-saving operation of the warm corridor can be achieved.

[0080] Through the technical solutions provided by the embodiments of the present application, it is possible to provide an intelligent warm corridor that can achieve a warm winter and a cool summer, low-carbon and energy-saving in a motor vehicle garage or an overhead floor in severe cold and cold regions, reduce the operation energy consumption and carbon emissions of the motor vehicle garage or the overhead floor warm corridor in the severe cold and cold regions in the north, and achieve the energy-saving, comfortable and safe operation of the warm corridor. In addition, it can not only make the warm corridor in a comfortable environment throughout the year, but also achieve the effects of low-carbon and energy-saving.

[0081] The preferred embodiments of the present application have been described in detail above. However, the present application is not limited to the specific details in the above embodiments. Within the scope of the technical concept of the present application, various simple modifications can be made to the technical solutions of the present application, and these simple modifications all fall within the protection scope of the present application.

[0082] In addition, it should be noted that, in the case of no conflict, the various specific technical features described in the above specific embodiments can be combined in any appropriate way. To avoid unnecessary repetition, the present application will not separately describe various possible combination methods.

[0083] In addition, any combination can be made between various different embodiments of the present application, as long as it does not violate the idea of the present application, and it should also be regarded as the content disclosed by the present application.

Claims

1. Conservatory, which comprises: A conservatory main body having a passageway (10) therein, with an air conditioning system and / or a fresh air system provided in the passageway (10), characterized in that A window (11) provided at the top of the passageway and designed to be selectively opened or closed.

2. The sun porch according to claim 1, wherein The window (11) comprises: A first side support portion (111) and a second side support portion (112) respectively located on both sides of the top of the passageway (10); and An opening member (114) provided between the first side support portion (111) and the second side support portion (112), the opening member (114) being designed to be selectively opened or closed to communicate or enclose the passageway (10) with the external environment.

3. The sun porch according to claim 2, wherein The window (11) comprises a longitudinal support portion (113) located at the middle position of the top of the passageway (10) and extending along the longitudinal direction of the passageway (10); The opening member (114) comprises a first opening member (1141) and a second opening member (1142), the first opening member (1141) being provided between the longitudinal support portion (113) and the first side support portion (111), and the second opening member (1142) being provided between the longitudinal support portion (113) and the second side support portion (112).

4. The sun porch according to claim 3, characterized in that The longitudinal support portion (113) is higher than the first side support portion (111) and the second side support portion (112), When viewed in the longitudinal direction of the passageway (10), the first opening member (1141) and the second opening member (1142) extend obliquely downward from the horizontal direction.

5. The sun porch according to claim 4, characterized in that, The first opening member (1141) and the second opening member (1142) have a closed state and a maximum opening state, In the closed state, the first opening member (1141) and the second opening member (1142) are respectively closed between the first side support portion (111) and the longitudinal support portion (113) and between the second side support portion (112) and the longitudinal support portion (113); In the maximum opening state, the maximum flow area is provided between the first side support portion (111) and the longitudinal support portion (113) and between the second side support portion (112) and the longitudinal support portion (113).

6. The sunspace according to claim 5, characterized in that, When the first opening member (1141) and the second opening member (1142) are both in the maximum opening state, a transverse ventilation passage (12) is formed between the first side support portion (111) and the longitudinal support portion (113) and between the second side support portion (112) and the longitudinal support portion (113).

7. The conservatory according to claim 4, characterized in that, The first opening member (1141) and the second opening member (1142) can both rotate around a rotation axis extending along the longitudinal direction of the passageway, and the maximum opening angle of the first opening member (1141) and the second opening member (1142) is 40 degrees to 45 degrees.

8. The solarium according to claim 3, characterized in that, A drain groove (13) is formed on the outer side portion of the longitudinal support portion (113).

9. The loggia according to claim 1, characterized in that, The window (11) is light-transmissive and is used to allow external light to enter the interior space of the passageway (10).

10. The solarium according to claim 1, characterized in that, At least a part of both sides of the bottom and / or middle of the passageway (10) is provided with a glass curtain wall, and the outside of the glass curtain wall is a garage or an overhead floor.

11. The solarium according to claim 1, characterized in that, The solarium includes: A window switch driving device for driving the window (11) to open or close; A sensor for detecting parameters of the temperature, humidity, and air quality in the interior space of the passageway (10); A controller electrically connected to the sensor, and controlling the driving of the window (11) by the window switch driving device and / or controlling the operating state of the air conditioning system and / or the fresh air system according to the parameter information collected by the sensor.