Indoor floor air supply structure based on green building

By designing an indoor floor air supply structure based on green buildings, adopting an outer frame structure and ventilation structure, the problems of easy blockage of air supply vents and water and dust entering in the prior art are solved, effectively collecting impurities and closure of air supply vents, and maintaining the cleaning and ventilation effect of air supply vents.

CN222881346UActive Publication Date: 2025-05-16HANGZHOU SENTUO ARCHITECTURAL DESIGN CO LTD
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Patent Information

Application Number
CN202421325023.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-12
Publication Date
2025-05-16
Estimated Expiration
2034-06-12

AI Technical Summary

Technical Problem

During use, the existing indoor floor air supply structure is prone to blockage of the air supply port due to falling gravel and debris and other impurities, and it is easy for water and dust to enter the air supply port when cleaning, resulting in bacterial growth and air pollution.

Method used

An indoor floor air supply structure based on green buildings is designed, adopting an outer frame structure and ventilation structure, and the design of attracting and supporting frames is used to ensure the flatness and ventilation of the air supply port; at the same time, the ventilation structure includes a style grid, a ventilation duct and a polymer trough, which can collect fallen impurities and control the air volume and wind speed through the adjustment structure; when cleaning, the collection trough can close the air supply port to prevent water and dust from entering.

Benefits of technology

It effectively prevents falling gravel and debris from entering the air supply structure, avoids blockage of air supply vents and bacterial growth. At the same time, it can close the air supply vents during cleaning to prevent water and dust from entering, and maintain the cleanliness and ventilation effect of the air supply vents.

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Abstract

The utility model provides an indoor floor air supply structure based on a green building. The air inlet is connected to the side wall of one end of the outer frame structure; the ventilation structure is erected in the top end of the outer shell through the fixing frame; the air guide pipe is fixed on the bottom surface in the outer shell; the adjusting structures are mounted in the side walls of the two ends of the ventilation structure; the collecting tank is connected to the interior of the polymer tank in a sliding manner; the indoor floor air supply structure based on the green building has the advantages that falling pebbles, chippings and other impurities can be collected, meanwhile, the air supply outlet can be closed during cleaning, and water and dust can be effectively prevented from entering the indoor floor air supply structure.
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Description

Technical Field

[0001] The utility model relates to the technical field of floor air supply, in particular to an indoor floor air supply structure based on green buildings. Background Art

[0002] Floor air supply is a mode of lower air supply in air conditioning system. When floor air supply is adopted, the ground needs to be elevated, and the lower space is used to arrange air supply ducts, or directly used as air supply static pressure box to distribute air to several floor air supply outlets. Floor air supply outlets can be swirl outlets (with better diffusion performance), or other outlets of grille type or perforated plate type. The air flow delivered can be horizontal attachment or vertical jet.

[0003] The air supply outlets of the existing indoor floor air supply structure are all level with the ground. When someone walks on the surface, some stones, debris and other debris stuck on the soles of the feet will fall into the interior through the air supply outlet, which will cause the air supply outlet to be blocked. When cleaning, the dust or water from mopping the floor will also enter the interior through the air inlet, which will not only cause the dust to float into the room with the air when air is supplied later, but also cause the air supply outlet to be in a humid state, which is easy to breed bacteria. Bacteria are blown into the room by the wind and cause harm to the human body. Utility Model Content

[0004] Therefore, it is necessary to provide a new indoor floor air supply structure based on green buildings to solve the above technical problems.

[0005] The technical problem solved by the utility model is to provide an indoor floor air supply structure based on green building which can collect impurities such as fallen stones and debris, and can also close the air supply outlet when cleaning, so as to effectively prevent water and dust from entering.

[0006] In order to solve the above technical problems, the indoor floor air supply structure based on green building provided by the utility model includes: an air inlet; an external frame structure, the air inlet is connected to the side wall of one end of the external frame structure, the external frame structure includes an outer shell, a fixing frame, a magnet and a support frame, the air inlet is connected to the side wall of one end of the outer shell, the fixing frame is fixed to the inner wall of the outer shell, the magnet is embedded in the inside of the top surface of the fixing frame, and the support frame is transversely fixed to the inner wall of the fixing frame; a ventilation structure, the ventilation structure is mounted on the inside of the top of the outer shell through the fixing frame, the ventilation structure includes a ventilation grille, a ventilation duct and a material collecting groove, the ventilation grille is mounted on the inside of the top of the outer shell through the fixing frame, the material collecting groove is arranged on the surface of the ventilation grille, and the ventilation duct is arranged on the bottom surface of the ventilation grille; an air duct, the air duct is fixed to the bottom surface of the inner part of the outer shell; an adjustment structure, the adjustment structure is installed on the inside of the side walls at both ends of the ventilation structure; a collecting groove, the collecting groove is slidably connected to the inside of the material collecting groove.

[0007] Preferably, the ventilation structure also includes a guide plate, a gear and a limit groove, the guide plate is installed on the inner side wall of the top end of the ventilation duct, the gear is fixed to the side wall at one end of the guide plate, and the limit groove is arranged inside the two ends of the ventilation grille.

[0008] Preferably, the ventilation duct is in a "T" shape, and an opening is provided on each side of the top of the ventilation duct, and the two openings are respectively connected to the adjacent polymer grooves, and the guide plate is rotatably connected to the inner side wall of the top opening of the ventilation duct, and the two guide plates rotatably connected to the same group of ventilation duct openings are opposite to each other.

[0009] Preferably, the guide plate passes through the inner wall of the limiting groove through a fixed shaft, and the gear is fixedly connected to the guide plate and is located inside the limiting groove, and the gears fixed at one end of two adjacent groups of guide plates are also relative to each other, and two adjacent gears are staggered and respectively located inside the limiting grooves at both ends of the ventilation grille.

[0010] Preferably, the adjustment structure further comprises a slider and a tooth plate, the tooth plate is laterally slidably connected to the inside of the limiting groove, and the slider is fixed at the center position of the surface of the tooth plate.

[0011] Preferably, the length of the tooth plate is smaller than the length of the limiting groove, and the bottom surface of the tooth plate is meshed with the gears in the same row.

[0012] Preferably, the fixing frame divides the interior of the outer shell into upper and lower parts, and the air inlet passes through the outer shell and is connected to the air duct, and the air duct passes through the bottom surface of the fixing frame, and the upper end of the outer shell is connected to the air duct.

[0013] Preferably, the magnets are also embedded in the edge of the bottom surface of the ventilation grille, and the magnets on the bottom surface of the ventilation grille correspond to the positions of the magnets embedded in the surface of the fixing frame, and the upper and lower groups of magnets attract each other, and the top surface of the ventilation grille is flush with the top surface of the outer shell.

[0014] Compared with the related art, the indoor floor air supply structure based on green building provided by the utility model has the following beneficial effects:

[0015] The utility model provides an indoor floor air supply structure based on a green building. First, the external frame structure can be supported inside the floor so that the external frame structure is flush with the floor surface to ensure the flatness of the floor. Then, the air inlet is connected to the air supply duct so that the device can be connected with equipment such as an air conditioner through the air inlet. The air conditioner and other equipment deliver the blown wind to the inside of the device through the air inlet. First, the wind is guided by the fixed air guide duct fixed inside the external frame structure so that the wind is directly delivered to the bottom surface of the ventilation grille. Under the flow of wind, the wind is delivered to the room through the ventilation grille to ventilate the room. By toggling the regulating structure, the regulating structure drives the air in the ventilation structure to move. By rotating the guide plate, the ventilation structure can be driven to be closed or connected up and down. As the adjustment structure is turned, the angle of the guide plate can be driven to rotate, and then the size of the vent of the ventilation structure can be adjusted, so as to control the air volume and wind speed. The debris, sand, or dust that falls through the surface of the ventilation structure will fall into the collection trough through the giant trough, which can avoid clogging the air duct of the ventilation structure. By cleaning it regularly, the cleanliness of the interior of the ventilation structure can be ensured. This structure has the advantage of being able to collect impurities such as fallen stones and debris, and at the same time, the air supply outlet can be closed when cleaning, which can effectively prevent water and dust from entering. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 A schematic diagram of the structure of the indoor floor air supply structure based on green buildings provided by the utility model;

[0017] Figure 2 for Figure 1 The structural schematic diagram of the overall side view section is shown;

[0018] Figure 3 for Figure 2A schematic structural diagram of a three-dimensional side cross-section of the ventilation structure shown;

[0019] Figure 4 for Figure 2 The structural schematic diagram of the overall side view section is shown;

[0020] Figure 5 for Figure 3 The schematic diagram of the structure of the overall top view of the ventilation structure shown;

[0021] Figure 6 for Figure 5 The overall side view of the cross-sectional structure diagram shown;

[0022] Figure 7 for Figure 3 A schematic diagram of the structure of the enlarged portion shown;

[0023] Figure 8 for Figure 3 The enlarged structural diagram of part B is shown.

[0024] Numbers in the figure: 1. air inlet, 2. external frame structure, 21. outer shell, 22. fixing frame, 23. magnet, 24. supporting frame, 3. ventilation structure, 31. ventilation grille, 32. guide plate, 33. ventilation duct, 34. gear, 35. limiting groove, 36. aggregation groove, 4. air guide duct, 5. adjustment structure, 51. slider, 52. tooth plate, 6. collection groove. DETAILED DESCRIPTION

[0025] The utility model is further described below in conjunction with the accompanying drawings and implementation modes.

[0026] See also Figures 1 to 8 , Figure 1 A schematic diagram of the structure of the indoor floor air supply structure based on green buildings provided by the utility model; Figure 2 for Figure 1 The structural schematic diagram of the overall side view section is shown; Figure 3 for Figure 2 A schematic structural diagram of a three-dimensional side cross-section of the ventilation structure shown; Figure 4 for Figure 2 The structural schematic diagram of the overall side view section is shown; Figure 5 for Figure 3 The schematic diagram of the structure of the overall top view of the ventilation structure shown; Figure 6 for Figure 5 The overall side view of the cross-sectional structure diagram shown; Figure 7 for Figure 3 A schematic diagram of the structure of the enlarged portion shown; Figure 8 for Figure 3The enlarged structural diagram of part B is shown in which the indoor floor air supply structure based on the green building includes: an air inlet 1; an outer frame structure 2, wherein the air inlet 1 is connected to the side wall of one end of the outer frame structure 2, and the outer frame structure 2 includes an outer shell 21, a fixing frame 22, a magnet 23 and a supporting frame, and the air inlet 1 is connected to the outer shell 21 The side wall at one end, the fixing frame 22 is fixed to the inner wall of the outer shell 21, the magnet 23 is embedded in the inner part of the top surface of the fixing frame 22, and the support frame is transversely fixed to the inner wall of the fixing frame 22; the ventilation structure 3, the ventilation structure 3 is mounted inside the top of the outer shell 21 through the fixing frame 22, the ventilation structure 3 includes a ventilation grille 31, a ventilation duct 33 and a material collecting groove 36, the ventilation grille 31 is mounted inside the top of the outer shell 21 through the fixing frame 22, the material collecting groove 36 is arranged on the surface of the ventilation grille 31, and the ventilation duct 33 is arranged on the bottom surface of the ventilation grille 31; the air duct 4, the air duct 4 is fixed to the bottom surface of the inner part of the outer shell 21; the adjustment structure 5, the adjustment structure 5 is installed inside the side walls at both ends of the ventilation structure 3; the collecting groove 6, the collecting groove 6 is slidably connected to the inside of the material collecting groove 36.

[0027] In the specific implementation process, Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown, the ventilation structure 3 also includes a guide plate 32, a gear 34 and a limit groove 35. The guide plate 32 is installed on the inner side wall of the top of the ventilation duct 33, the gear 34 is fixed to the side wall of one end of the guide plate 32, and the limit groove 35 is arranged inside the two ends of the ventilation grille 31; the ventilation duct 33 is in a "T" shape, and an opening is respectively provided on the left and right sides of the top of the ventilation duct 33, and the two openings are respectively connected to the adjacent polymer grooves 36, and the guide plate 32 is rotatably connected to the ventilation The guide plates 32 are rotatably connected to the inner side wall of the top opening of the ventilation duct 33, and are opposite to each other; the guide plate 32 passes through the inner side wall of the limiting groove 35 through a fixed shaft, and the gear 34 is fixedly connected to the guide plate 32 and is located inside the limiting groove 35, and the gears 34 fixed at one end of two adjacent groups of guide plates 32 are also opposite to each other, and the two adjacent gears 34 are staggered and respectively located inside the limiting grooves 35 at both ends of the ventilation grille 31.

[0028] The ventilation duct 33 and the collection groove 36 are connected to facilitate the wind to be blown into the room through the ventilation duct 33. At the same time, when dust, debris or water enters the ventilation grille 31, it will first be gathered through the collection groove 36 and fall into the collection groove 6 installed therein. The height difference between the outlet of the ventilation duct 33 and the bottom of the collection groove 36 can effectively prevent the entry of debris and water. At the same time, the guide plate 32 can also adjust the size of the blowing wind and can also close the ventilation duct 33 to prevent the entry of dust when not in use.

[0029] In the specific implementation process, Figure 3 , Figure 4 and Figure 6 As shown, the adjustment structure 5 also includes a slider 51 and a tooth plate 52, the tooth plate 52 is laterally slidably connected to the inside of the limiting groove 35, and the slider 51 is fixed at the center position of the surface of the tooth plate 52; the length of the tooth plate 52 is less than the length of the limiting groove 35, and the bottom surface of the tooth plate 52 is meshed with the gears 34 in the same row.

[0030] By moving the slider 51 , the tooth plate 52 can be driven to slide inside the limiting groove 35 , thereby driving the tooth plate 52 to drive the meshing gear 34 to rotate, thereby driving the guide plate 32 to rotate.

[0031] In the specific implementation process, Figure 2 and Figure 4 As shown, the fixing frame 22 divides the interior of the outer shell 21 into two parts, the air inlet 1 passes through the outer shell 21 and is connected to the air duct 4, and the air duct 4 passes through the bottom surface of the fixing frame 22, and the upper end of the outer shell 21 is connected to the air duct 4.

[0032] It is convenient to connect the air supply duct installed in the floor through the air inlet 1, so that the air conditioner can send wind into the interior of the device through the air inlet 1, and then send the wind out through the ventilation grille 31 under the guidance of the air guide duct 4.

[0033] In the specific implementation process, Figure 2 , Figure 3 and Figure 4 As shown, the magnet 23 is also embedded in the edge of the bottom surface of the ventilation grille 31, and the magnet 23 on the bottom surface of the ventilation grille 31 corresponds to the position of the magnet 23 embedded in the surface of the fixing frame 22, and the upper and lower groups of the magnets 23 attract each other, and the top surface of the ventilation grille 31 is flush with the top surface of the outer shell 21.

[0034] The ventilation grille 31 can be conveniently adsorbed on the fixing frame 22 through the two groups of magnets 23 , so that the ventilation grille 31 can be relatively stable and the removal of the ventilation grille 31 is also convenient.

[0035] The working principle of the indoor floor air supply structure based on green building provided by the utility model is as follows:

[0036] When in use, the outer shell 21 is first installed inside the floor so that the top surface of the outer shell 21 is level with the ground, and the device is connected to the air supply duct installed in the floor in advance through the air inlet 1, so that the air conditioner can send air into the device through the air inlet 1, and then the collection tank 6 is slid into one end of the collection tank 36 so that the opening of the collection tank 6 is upward and occupies the bottom end of the collection tank 36, and then the ventilation grille 31 is erected inside the opening of the outer shell 21 through the fixing frame 22. , so that the surface of the ventilation grille 31 is flush with the surface of the outer shell 21, so that the magnets 23 embedded in the bottom edge of the ventilation grille 31 and the magnets 23 embedded in the top surface of the fixing frame 22 are in contact with each other, and the two groups of magnets 23 attract each other. At the same time, the bottom surface of the ventilation grille 31 located in the accumulator groove 36 is in contact with the surface of the support frame 24, so that the support frame 24 further supports the ventilation grille 31, so that when people walk on it, the ventilation grille 31 can be supported without deformation, so that the ventilation grille The air duct 33 is connected to the air grille 31 by the collecting groove 36 and the air passage 33, and then the slider 51 is moved to drive the tooth plate 52 to slide in the limit groove 35, thereby driving the tooth plate 52 to drive the meshing gear 34 to rotate, thereby driving the guide plate 32 to rotate, so that the opening of the air passage 33 is opened. With the rotation angle of the guide plate 32, the size of the air delivery can be adjusted, so that the air at the air conditioner can be blown to the air grille 31 through the air passage 4, and then sent into the room through the air passage 33 and the collecting groove 36. During use, the air grille 31 is regularly taken out by tools, the collecting groove 6 is taken out for cleaning, and then reset, and the air can be continued to be used. This structure has the advantages of being able to collect impurities such as fallen stones and debris, and at the same time, the air supply port can be closed when cleaning, which can effectively prevent water and dust from entering.

[0037] Compared with the related art, the indoor floor air supply structure based on green building provided by the utility model has the following beneficial effects:

[0038] First, the outer frame structure 2 can be supported inside the floor so that the outer frame structure 2 is flush with the floor surface to ensure the flatness of the floor. Then, the air inlet 1 is connected to the air supply duct so that the device can be connected to equipment such as air conditioners through the air inlet 1. The air conditioners and other equipment deliver the blown wind to the inside of the device through the air inlet 1. First, the wind is guided by the fixed air guide duct 4 fixed inside the outer frame structure 2 so that the wind is directly delivered to the bottom surface of the ventilation grille 31. Under the flow of wind, the wind is delivered to the room through the ventilation grille 31 to ventilate the room. By turning the adjustment structure 5 so that the adjustment structure 5 drives the guide plate 32 in the ventilation structure 3 to rotate, It can drive the ventilation structure 3 to be closed or connected up and down. With the distance that the adjusting structure 5 is turned, the angle of the guide plate 32 can be driven to rotate, so as to adjust the size of the vent of the ventilation structure 3, and then control the delivered air volume and wind speed. The debris, sand, or dust that falls through the surface of the ventilation structure 3 will fall into the collection trough 6 through the giant trough, so as to avoid clogging the air duct of the ventilation structure 3. By cleaning it regularly, the cleanliness of the interior of the ventilation structure 3 can be ensured. This structure has the advantage of being able to collect impurities such as fallen stones and debris, and at the same time being able to close the air supply port when cleaning, which can effectively prevent water and dust from entering.

[0039] The above description is only an embodiment of the present invention, and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the specification and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. An indoor floor air supply structure based on green building, characterized in that: include: Air inlet (1); An outer frame structure (2), the air inlet (1) being connected to a side wall at one end of the outer frame structure (2), the outer frame structure (2) comprising an outer shell (21), a fixing frame (22), a magnet (23) and a support frame (24), the air inlet (1) being connected to a side wall at one end of the outer shell (21), the fixing frame (22) being fixed to an inner side wall of the outer shell (21), the magnet (23) being embedded in an inner portion of a top surface of the fixing frame (22), and the support frame (24) being laterally fixed to an inner side wall of the fixing frame (22); a ventilation structure (3), the ventilation structure (3) being mounted inside the top end of the outer shell (21) via the fixing frame (22), the ventilation structure (3) comprising a ventilation grille (31), a ventilation duct (33) and a material collecting groove (36), the ventilation grille (31) being mounted inside the top end of the outer shell (21) via the fixing frame (22), the material collecting groove (36) being arranged on the surface of the ventilation grille (31), and the ventilation duct (33) being arranged on the bottom surface of the ventilation grille (31); An air guide duct (4), the air guide duct (4) being fixed to the bottom surface inside the outer shell (21); An adjustment structure (5), the adjustment structure (5) being installed inside the side walls at both ends of the ventilation structure (3); A collecting trough (6), wherein the collecting trough (6) is slidably connected to the interior of the aggregation trough (36).

2. The indoor floor air supply structure based on green building according to claim 1 is characterized in that: The ventilation structure (3) further comprises a guide plate (32), a gear (34) and a limiting groove (35); the guide plate (32) is mounted on the inner side wall at the top end of the ventilation duct (33); the gear (34) is fixed to the side wall at one end of the guide plate (32); and the limiting groove (35) is arranged inside the two ends of the ventilation grille (31).

3. The indoor floor air supply structure based on green building according to claim 2 is characterized in that: The ventilation duct (33) is in a "T" shape, and an opening is provided on each side of the top end of the ventilation duct (33), and the two openings are respectively communicated with adjacent polymerizing grooves (36), and the guide plate (32) is rotatably connected to the inner side wall of the top end opening of the ventilation duct (33), and the two guide plates (32) rotatably connected to the openings of the same group of ventilation ducts (33) are opposite to each other.

4. The indoor floor air supply structure based on green building according to claim 2 is characterized in that: The guide plate (32) passes through the inner wall of the limiting groove (35) via a fixed shaft, and the gear (34) is fixedly connected to the guide plate (32) and is located inside the limiting groove (35). The gears (34) fixed at one end of two adjacent groups of guide plates (32) are also opposite to each other, and two adjacent gears (34) are staggered and located inside the limiting grooves (35) at both ends of the ventilation grille (31).

5. The indoor floor air supply structure based on green building according to claim 2 is characterized in that: The adjustment structure (5) further comprises a slider (51) and a tooth plate (52), wherein the tooth plate (52) is laterally slidably connected to the interior of the limiting groove (35), and the slider (51) is fixed to the center position of the surface of the tooth plate (52).

6. The indoor floor air supply structure based on green building according to claim 5 is characterized in that: The length of the tooth plate (52) is less than the length of the limiting groove (35), and the bottom surface of the tooth plate (52) is meshed with the gears (34) in the same row.

7. The indoor floor air supply structure based on green building according to claim 1 is characterized in that: The fixing frame (22) divides the interior of the outer shell (21) into two parts, an upper part and an lower part, and the air inlet (1) passes through the outer shell (21) and is connected to the air duct (4), and the air duct (4) passes through the bottom surface of the fixing frame (22), and the upper end of the outer shell (21) is connected to the air duct (4).

8. The indoor floor air supply structure based on green building according to claim 1 is characterized in that: The magnets (23) are also embedded in the edge of the bottom surface of the ventilation grille (31), and the magnets (23) on the bottom surface of the ventilation grille (31) correspond to the positions of the magnets (23) embedded in the surface of the fixing frame (22), and the upper and lower groups of the magnets (23) attract each other, and the top surface of the ventilation grille (31) is flush with the top surface of the outer shell (21).