Green energy-saving building wall

By designing the drainage and drip irrigation system for green energy-saving building walls and using rainwater to irrigate green plants, the problem of green plants relying on tap water has been solved and water resource conservation has been achieved.

CN223195209UActive Publication Date: 2025-08-08SHANDONG WANJUN CONSTRUCTION ENGINEERING CONSTRUCTION CO LTD
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Patent Information

Application Number
CN202422672645.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-08-08
Estimated Expiration
2034-11-04

AI Technical Summary

Technical Problem

The watering of green plants on the walls of existing green and energy-saving buildings relies on tap water, resulting in waste of water resources, especially in areas with tight water resources.

Method used

A green energy-saving building wall including drainage components, filter components, docking grooves and drip pipes is designed, and green planting irrigation is used to set up L-shaped pipes and control valves to achieve rainwater collection and drip irrigation.

Benefits of technology

Effectively save water resources, especially in areas with tight water resources, realize self-sufficiency and self-watering of green plants and reduce the use of tap water.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of green buildings, and discloses a green energy-saving building wall which comprises a wall body, a mounting groove, a water storage groove and a plurality of open holes, the mounting groove is formed in an inner cavity of the wall body, the water storage groove is formed in the top of the wall body, and the open holes are formed in the front side of the wall body. Through cooperative use of the drainage assembly, the control valve, the filtering assembly, the butt joint groove and the filtering plate, the control valve is opened, so that water in the water storage tank enters the L-shaped pipe, then the water enters the dripping pipe due to water pressure, the water drips out of the dripping pipe, and the water descends to penetrate through the water inlet hole to enter the planting box; the problems that green plants on green and energy-saving building walls are irrigated with tap water, so that unnecessary consumption of water resources is caused, especially in areas with shortage of water resources are solved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of green buildings, and in particular relates to a green energy-saving building wall. Background Art

[0002] With the development of urban economy, urban green land is in short supply. In order to improve the living environment, people choose to plant vegetation on the outer surface of walls or balconies to increase the urban green area. Vegetation can improve the microclimate around buildings and optimize the environment, thus creating green and energy-saving building walls.

[0003] However, the above device still has the following problems during implementation:

[0004] Existing technology allows green energy-saving building walls to be planted with plants. However, the green plants on existing green energy-saving building walls are watered with tap water, which will lead to unnecessary consumption of water resources, especially in areas with tight water resources. Therefore, a green energy-saving building wall is proposed to solve the above problems. Utility Model Content

[0005] In response to the problems existing in the prior art, the utility model provides a green and energy-saving building wall, which has the advantage of saving water resources. It can overcome the above problems or at least partially solve the problem that the green plants on the green and energy-saving building walls are watered with tap water, which will lead to unnecessary consumption of water resources, especially in areas with scarce water resources.

[0006] The utility model is realized as follows: a green energy-saving building wall comprises a wall, a mounting groove, a water storage tank and a plurality of openings, wherein the mounting groove is opened in the inner cavity of the wall, the water storage tank is opened at the top of the wall, and the openings are opened on the front side of the wall;

[0007] Five drainage assemblies for draining the water tank, the drainage assemblies being arranged in the inner cavity of the mounting slot and comprising an L-shaped tube, the top of the L-shaped tube being fixedly connected to the water tank, the rear side of the L-shaped tube penetrating the mounting slot and extending to the rear side of the wall, the rear side of the L-shaped tube being threadedly connected to a sealing cover, and a control valve being fixedly mounted on the surface of the L-shaped tube, the rear side of the control valve penetrating the mounting slot and extending to the outside of the wall;

[0008] A filter assembly is used for filtering rainwater, and the filter assembly is arranged on the top of the water storage tank.

[0009] As a preferred embodiment of the present invention, the filter assembly includes a docking groove, which is opened at the top of the wall, and the inner cavity of the docking groove is plugged into a filter plate, and handles are fixedly connected to the left and right sides of the top of the filter plate. By setting up the filter assembly, when rainwater enters the water storage tank, the rainwater will pass through the filter plate, and the filter plate can intercept impurities in the rainwater, so that no impurities will enter the L-shaped tube.

[0010] As a preferred embodiment of the present invention, the inner cavity of the opening is fixedly connected to a docking box, and the inner cavity of the docking box is plugged into a planting box. By setting the docking box and the planting box, the docking box is fixed in the opening. At this time, the planting box is inserted into the docking box, which can also position the planting box. In this way, even if the green plant becomes larger, the planting box will not fall off.

[0011] As a preferred embodiment of the present invention, the tops of the docking box and the planting box are both provided with water inlet holes, the inner cavity of the water inlet holes is movably connected with a drip pipe, the rear side of the drip pipe is fixedly connected with the L-shaped pipe, and by providing the water inlet holes and the drip pipe, when rainwater needs to be introduced into the planting box, the water in the water tank will enter the L-shaped pipe, and then due to the water pressure, the water will enter the drip pipe, so that the water will drip out from the drip pipe, and the water will drop through the water inlet holes into the planting box.

[0012] As a preferred embodiment of the present invention, the front and rear sides of the wall are provided with matching grooves, the inner cavity of the matching grooves is movably connected to a water guide plate, and the left and right sides of the water guide plate are rotatably connected to the inner wall of the matching grooves through bearings. By setting the matching grooves and the water guide plates, when it rains lightly, the water guide plates are rotated to a suitable position, thereby increasing the range of water storage, so that rainwater will enter the water storage tank through the water guide plates.

[0013] As a preferred embodiment of the present invention, a rotating groove is provided at the bottom of the water guide plate, and a rotating plate is movably connected to the inner cavity of the rotating groove. The left and right sides of the rotating plate are rotatably connected to the inner wall of the rotating groove through bearings. A card slot for use with the rotating plate is provided on the side of the matching groove close to the rotating plate. The rotating plate is plugged into the inner cavity of the card slot, and there are multiple card slots. By setting the rotating groove, rotating plate and card slot, when the position of the water guide plate needs to be positioned, the rotating plate is flipped and inserted into the card slot, so that the water guide plate will not return to the matching groove.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0015] The utility model sets a drainage component, a control valve, a filter component, a docking groove and a filter plate for coordinated use. The control valve is opened so that the water in the water storage tank will enter the L-shaped pipe. Then, due to the water pressure, the water will enter the drip pipe. In this way, the water will drip out from the drip pipe, and the descending water will pass through the water inlet hole into the planting box, solving the problem that the green plants on the walls of green and energy-saving buildings are all watered by tap water, which will lead to unnecessary consumption of water resources, especially in areas with scarce water resources. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the three-dimensional structure provided by an embodiment of the utility model;

[0017] Figure 2 This is a perspective diagram of the rear side of a wall provided by an embodiment of the present utility model;

[0018] Figure 3 This is a three-dimensional cross-sectional view of a wall provided by an embodiment of the utility model;

[0019] Figure 4 It is a schematic diagram of the three-dimensional connection between the plug-in box and the planting box provided by the embodiment of the utility model.

[0020] In the figure: 1. Wall; 2. Installation groove; 3. Water storage tank; 4. Opening; 5. Drainage assembly; 51. L-shaped pipe; 52. Sealing cover; 53. Control valve; 6. Filter assembly; 61. Docking groove; 62. Filter plate; 63. Handle; 7. Docking box; 8. Planting box; 9. Water inlet hole; 10. Drip pipe; 11. Matching groove; 12. Water guide plate; 13. Rotating groove; 14. Rotating plate; 15. Card slot. DETAILED DESCRIPTION

[0021] In order to further understand the content, features and effects of the present invention, the following embodiments are given as examples and described in detail with reference to the accompanying drawings.

[0022] The structure of the present utility model is described in detail below with reference to the accompanying drawings.

[0023] like Figures 1 to 4 As shown, an embodiment of the present invention provides a green energy-saving building wall, comprising a wall 1, a mounting groove 2, a water storage tank 3 and a plurality of openings 4, wherein the mounting groove 2 is provided in the inner cavity of the wall 1, the water storage tank 3 is provided at the top of the wall 1, and the openings 4 are provided at the front side of the wall 1;

[0024] Five drainage assemblies 5 for draining the water storage tank 3 are arranged in the inner cavity of the installation groove 2. The drainage assembly 5 includes an L-shaped tube 51. The top of the L-shaped tube 51 is fixedly connected to the water storage tank 3. The rear side of the L-shaped tube 51 passes through the installation groove 2 and extends to the rear side of the wall 1. The rear side of the L-shaped tube 51 is threadedly connected to a sealing cover 52. A control valve 53 is fixedly installed on the surface of the L-shaped tube 51. The rear side of the control valve 53 passes through the installation groove 2 and extends to the outside of the wall 1;

[0025] The filter assembly 6 is used to filter rainwater, and the filter assembly 6 is arranged on the top of the water storage tank 3.

[0026] refer to Figure 3 The filter assembly 6 includes a docking groove 61, which is opened at the top of the wall 1. The inner cavity of the docking groove 61 is plugged and connected with a filter plate 62, and the left and right sides of the top of the filter plate 62 are fixedly connected with handles 63.

[0027] Adopting the above solution: by setting up the filter assembly 6, when rainwater enters the water storage tank 3, the rainwater will pass through the filter plate 62, and the filter plate 62 can intercept impurities in the rainwater, so that no impurities will enter the L-shaped tube 51.

[0028] refer to Figure 4 The inner cavity of the opening 4 is fixedly connected to a docking box 7, and the inner cavity of the docking box 7 is plugged and connected to a planting box 8.

[0029] The above solution is adopted: by setting a docking box 7 and a planting box 8, the docking box 7 is fixed in the opening 4, and the planting box 8 is inserted into the docking box 7, so that the position of the planting box 8 can also be positioned, so that even if the green plant becomes larger, the planting box 8 will not fall off.

[0030] refer to Figure 3 and Figure 4 The tops of the docking box 7 and the planting box 8 are both provided with a water inlet hole 9, the inner cavity of the water inlet hole 9 is movably connected to a drip pipe 10, and the rear side of the drip pipe 10 is fixedly connected to the L-shaped tube 51.

[0031] The above solution is adopted: by setting the water inlet hole 9 and the drip pipe 10, when rainwater needs to be introduced into the planting box 8, the water in the water tank 3 will enter the L-shaped tube 51, and then due to the water pressure, the water will enter the drip pipe 10, so that the water will drip out from the drip pipe 10, and the water will drop through the water inlet hole 9 into the planting box 8.

[0032] refer to Figure 3 The front and rear sides of the wall 1 are provided with an anastomotic groove 11, the inner cavity of the anastomotic groove 11 is movably connected with a water guide plate 12, and the left and right sides of the water guide plate 12 are rotatably connected to the inner wall of the anastomotic groove 11 through bearings.

[0033] Adopt the above scheme: by setting the matching groove 11 and the water guide plate 12, when it rains lightly, rotate the water guide plate 12 to a suitable position, so that the water storage range can be increased, so that rainwater will enter the water storage tank 3 through the water guide plate 12.

[0034] refer to Figure 2 and Figure 3 A rotating groove 13 is provided at the bottom of the water guide plate 12, and a rotating plate 14 is movably connected to the inner cavity of the rotating groove 13. The left and right sides of the rotating plate 14 are rotatably connected to the inner wall of the rotating groove 13 through bearings. A card slot 15 for use with the rotating plate 14 is provided on the side of the matching groove 11 close to the rotating plate 14. The rotating plate 14 is plugged into the inner cavity of the card slot 15, and there are multiple card slots 15.

[0035] The above solution is adopted: by setting the rotating groove 13, the rotating plate 14 and the clamping groove 15, when the position of the water guide plate 12 needs to be positioned, the rotating plate 14 is flipped and driven to be inserted into the clamping groove 15, so that the water guide plate 12 will not return to the matching groove 11.

[0036] The working principle of this utility model:

[0037] When in use, the planting box 8 for planting green plants is inserted into the docking box 7 on the front side of the wall 1. When it rains, the water guide plate 12 is turned over and rotated. At this time, due to the downward force, the rotating plate 14 will rotate out of the rotating groove 13. Then, the water guide plate 12 is rotated to a suitable position, and then the rotating plate 14 can be turned over and inserted into the card slot 15. In this way, the water guide plate 12 can guide water into the water storage tank 3. At this time, the rainwater will pass through the filter plate 62, and the filter plate 62 can intercept impurities in the rainwater.

[0038] When dripping water is needed in the green plant box, open the control valve 53, so that the water in the water tank 3 will enter the L-shaped tube 51, and then due to the water pressure, the water will enter the drip pipe 10, so that the water will drip out from the drip pipe 10, and the water will drop through the water inlet hole 9 into the planting box 8.

[0039] To sum up: the green energy-saving building wall 1, by setting the drainage component 5, the control valve 53, the filter component 6, the docking groove 61 and the filter plate 62 for coordinated use, opens the control valve 53, so that the water in the water storage tank 3 will enter the L-shaped tube 51, and then due to the water pressure, the water will enter the drip pipe 10, so that the water will drip out from the drip pipe 10, and the water will drop through the water inlet hole 9 into the planting box 8, solving the problem that the green plants on the green energy-saving building walls are all watered with tap water, which will lead to unnecessary consumption of water resources, especially in areas with tight water resources.

[0040] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0041] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A green energy-saving building wall, comprising a wall (1), a mounting groove (2), a water storage tank (3) and a plurality of openings (4), characterized in that: The installation groove (2) is opened in the inner cavity of the wall (1), the water storage tank (3) is opened on the top of the wall (1), and the opening (4) is opened on the front side of the wall (1); Five drainage assemblies (5) for draining the water storage tank (3), the drainage assemblies (5) being arranged in the inner cavity of the installation groove (2), the drainage assemblies (5) comprising an L-shaped tube (51), the top of the L-shaped tube (51) being fixedly connected to the water storage tank (3), the rear side of the L-shaped tube (51) penetrating the installation groove (2) and extending to the rear side of the wall (1), the rear side of the L-shaped tube (51) being threadedly connected to a sealing cover (52), a control valve (53) being fixedly mounted on the surface of the L-shaped tube (51), the rear side of the control valve (53) penetrating the installation groove (2) and extending to the outside of the wall (1); A filter assembly (6) for filtering rainwater, wherein the filter assembly (6) is arranged on the top of the water storage tank (3).

2. The green energy-saving building wall according to claim 1, characterized in that: The filter assembly (6) comprises a docking groove (61), the docking groove (61) being opened at the top of the wall (1), the inner cavity of the docking groove (61) being plugged and connected to a filter plate (62), and handles (63) being fixedly connected to the left and right sides of the top of the filter plate (62).

3. The green energy-saving building wall according to claim 1, characterized in that: The inner cavity of the opening (4) is fixedly connected to a docking box (7), and the inner cavity of the docking box (7) is plug-connected to a planting box (8).

4. The green energy-saving building wall according to claim 3, characterized in that: The tops of the docking box (7) and the planting box (8) are both provided with water inlet holes (9), the inner cavity of the water inlet hole (9) is movably connected to a drip pipe (10), and the rear side of the drip pipe (10) is fixedly connected to the L-shaped pipe (51).

5. The green energy-saving building wall according to claim 1, characterized in that: The front and rear sides of the wall (1) are both provided with an anastomotic groove (11), the inner cavity of the anastomotic groove (11) is movably connected to a water guide plate (12), and the left and right sides of the water guide plate (12) are rotatably connected to the inner wall of the anastomotic groove (11) via bearings.

6. The green energy-saving building wall according to claim 5, characterized in that: A rotating groove (13) is provided at the bottom of the water guide plate (12), and a rotating plate (14) is movably connected to the inner cavity of the rotating groove (13). The left and right sides of the rotating plate (14) are rotatably connected to the inner wall of the rotating groove (13) through bearings. A clamping groove (15) for use with the rotating plate (14) is provided on a side of the matching groove (11) close to the rotating plate (14). The rotating plate (14) is plugged into the inner cavity of the clamping groove (15), and the number of the clamping grooves (15) is multiple.