Water conservancy ecological wall

By introducing LED lights, irrigation mechanisms, and photovoltaic power generation components into the water conservancy ecological wall, the problem of inconvenient plant replacement in planting pots has been solved, enabling efficient plant cultivation and convenient plant replacement.

CN120898653APending Publication Date: 2025-11-07FUYANG WATER CONSERVANCY MASCH ENG CO LTD
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Patent Information

Application Number
CN202511219450.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-28
Publication Date
2025-11-07

AI Technical Summary

Technical Problem

Replacing plants in the pots of existing water conservancy ecological walls is inconvenient, time-consuming, and labor-intensive.

Method used

The design includes components such as walls, support panels, cultivation devices, LED lights, irrigation mechanisms, heating mechanisms, and photovoltaic power generation mechanisms to create a water-based ecological wall that provides light, irrigation, temperature regulation, and power supply, facilitating plant cultivation and replacement.

Benefits of technology

This enables efficient cultivation and convenient replacement of plants, improving the maintenance efficiency of the ecological wall.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a water conservancy ecological wall, and relates to the technical field of ecological walls, the water conservancy ecological wall comprises a wall body, two supporting plates mounted on the side wall of the wall body and a plurality of planting pots mounted on the tops of the two supporting plates, and a plurality of sets of cultivation devices used for cultivating different plant seedlings are arranged between the two supporting plates; the cultivation device comprises a cultivation box installed on the side wall of the wall body, a door plate installed at an opening of the cultivation box and a transparent plate installed in the door plate. An LED lamp, an irrigation mechanism, a seedling raising plate and a heating mechanism are sequentially installed in the cultivation box in the vertical direction. A water supply mechanism used for supplying water to the multiple sets of irrigation mechanisms is installed on the wall body, a plurality of cultivation pots are installed on the seedling raising tray, the top of the cultivation box is communicated with a ventilation pipe, and a valve is installed on the ventilation pipe; a photovoltaic power generation mechanism used for supplying power to electrical parts of the cultivation device is installed on the wall body. According to the planting pot, plants in the planting pot can be replaced conveniently.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of ecological walls, in particular to a water conservancy ecological wall. BACKGROUND

[0002] At present, the water conservancy ecological wall is a vertical greening system combining water conservancy engineering and ecological restoration technology, aiming to improve the urban water environment and enhance the ecological benefits through water recycling, ecological purification and landscape beautification.

[0003] The water conservancy ecological wall in the prior art generally comprises a wall body, a support plate installed on the side wall of the wall body and a planting pot installed on the top of the support plate; and plants are planted in the planting pot.

[0004] However, when the plants in the planting pot of the prior art die of disease or natural death, plants need to be purchased from elsewhere and then replaced, which is time-consuming and laborious, and thus the plants in the planting pot are inconvenient to replace. SUMMARY

[0005] The application provides a water conservancy ecological wall which is convenient for replacing plants in a planting pot, and adopts the following technical scheme: A water conservancy ecological wall comprises a wall body, two support plates installed on the side wall of the wall body and a plurality of planting pots installed on the top of the two support plates, a plurality of groups of cultivation devices for cultivating different plant seedlings are arranged between the two support plates, the cultivation device comprises a cultivation box installed on the side wall of the wall body, a door plate installed on the opening of the cultivation box and a transparent plate installed in the door plate, an LED lamp, an irrigation mechanism, a seedling raising tray and a heating mechanism are sequentially installed in the cultivation box in the vertical direction, a water supply mechanism for supplying water to the plurality of groups of irrigation mechanisms is installed on the wall body, a plurality of cultivation pots are installed on the seedling raising tray, a ventilation pipe is communicated with the top of the cultivation box, and a valve is installed on the ventilation pipe, and a photovoltaic power generation mechanism for supplying power to the electrical components of the cultivation device is installed on the wall body.

[0006] Preferably, the irrigation mechanism comprises an irrigation pipe installed on the inner wall of the cultivation box and a plurality of spray heads communicated with the bottom of the irrigation pipe, and the spray heads are arranged towards the cultivation pots.

[0007] Preferably, the water supply mechanism comprises a water supply pipe installed on the side wall of the wall body and a plurality of branch pipes communicated with the bottom of the water supply pipe; the plurality of branch pipes and the plurality of irrigation pipes are communicated one by one; one end of the water supply pipe is closed, and the other end is communicated with a high-pressure water source; a rainwater collection assembly is installed on one of the support plates, and the rainwater collection assembly can supply water to the water supply pipe.

[0008] Preferably, the rainwater collecting assembly comprises a rainwater collecting tank and a water pump, the water pump is connected with an inlet pipe, the inlet pipe is provided with a valve, and the end of the inlet pipe away from the water pump is connected with the rainwater collecting tank; the water pump is connected with an outlet pipe, and the end of the outlet pipe away from the water pump is connected with a water supply pipe.

[0009] Preferably, the heating mechanism comprises a mounting frame mounted on the bottom of the seedling tray and a plurality of electric heating wires mounted in the mounting frame.

[0010] Preferably, the photovoltaic power generation mechanism comprises a connecting rod mounted on the side wall of the wall, a mounting bracket slidably connected with the connecting rod, and two limiting nuts threadedly connected with the connecting rod; the two limiting nuts are used for mounting the mounting bracket on the connecting rod and spacing the mounting bracket from the wall; and the top of the mounting bracket is provided with a photovoltaic panel.

[0011] Preferably, the cleaning mechanism for cleaning the photovoltaic panel comprises an electric telescopic rod mounted on the outer side wall of the cultivation box, a moving plate fixedly connected to the output end of the electric telescopic rod, two guide rods respectively fixedly connected to the two sides of the mounting bracket, and two first sliding sleeves respectively slidably connected to the two guide rods; a connecting plate is fixedly connected between the two first sliding sleeves, a scraper is fixedly connected to the bottom of the connecting plate, the scraper is slidably connected to the top of the photovoltaic panel, and a push rod is hingedly connected between the moving plate and the connecting plate.

[0012] Preferably, a plurality of drainage pipes are connected with the seedling tray, a filter is threadedly mounted on the bottom of each drainage pipe, a water collecting mechanism is mounted on the bottom of the cultivation box, the water collecting mechanism comprises a moving seat slidably arranged on the bottom of the cultivation box and two second sliding sleeves respectively fixedly connected to the two ends of the moving seat; horizontal grooves are respectively formed in the inner walls of the two sides of the cultivation box, the two second sliding sleeves are respectively slidably connected to the two horizontal grooves, horizontal rods are respectively fixedly connected in the two horizontal grooves, and lead screws are rotatably connected in the two horizontal grooves; one of the second sliding sleeves is slidably connected to the horizontal rod, and the other second sliding sleeve is threadedly connected to the lead screw; a drive assembly for driving the rotation of the lead screw is mounted on the side wall of the cultivation box; a horizontal shaft is rotatably connected to the top of the moving seat, and a water collecting tank is fixedly connected to the horizontal shaft; drive assemblies for driving the rotation of the horizontal shaft are mounted on the side walls of the two sides of the cultivation box; and when the water collecting tank is rotated downward under the action of the horizontal shaft, the opening of the water collecting tank corresponds to the photovoltaic panel.

[0013] Preferably, the drive assembly comprises a first rack fixedly connected to the bottom of the moving plate, a short shaft rotatably connected to the side wall of the horizontal groove, a first spur gear fixedly connected to one end of the short shaft, a first bevel gear fixedly connected to the other end of the short shaft, and a second bevel gear fixedly connected to one end of the lead screw; the first spur gear is engaged with the first rack, and the first bevel gear is engaged with the second bevel gear.

[0014] Preferably, each of the drive assemblies comprises a slot formed in the side wall of the incubator, one end of the horizontal shaft extends into the slot and is fixed with a second spur gear, the bottom of the slot near the end of the door plate is fixed with a second rack, and the second spur gear is engaged with the second rack; the width of the moving seat is smaller than the width of the water tank, and in the initial state, the second spur gear is separated from the second rack; when the moving seat is about to move to the opening of the incubator, the second spur gear is engaged with the second rack at this time.

[0015] In summary, the present application has the following beneficial effects: The transparent plate is provided, which facilitates observation of the inside of the incubator; the LED lamp is provided, which facilitates sufficient light conditions for the seedlings in the planting pots; the irrigation mechanism is provided, which facilitates irrigation of the seedlings in the planting pots; the heating mechanism is provided, which can appropriately adjust the temperature in the incubator; the ventilation pipe is provided, which can improve the air conditions in the incubator; the photovoltaic power generation mechanism is provided, which facilitates power supply for electrical components of the incubator; in summary, the present application facilitates cultivation of seedlings, and facilitates replacement of plants in the planting pots when the plants in the planting pots die. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structure of the embodiment of the present application.

[0017] Figure 2 It is a schematic diagram of the structure for displaying the incubator in the embodiment of the present application.

[0018] Figure 3 It is a schematic diagram of the structure for displaying the water receiving mechanism in the embodiment of the present application.

[0019] Explanation of reference signs: 1, wall body; 11, support plate; 12, planting pot; 2, cultivation device; 21, cultivation box; 22, door plate; 221, transparent plate; 23, LED lamp; 24, seedling tray; 25, cultivation pot; 26, ventilation pipe; 27, drainage pipe; 28, threaded pipe; 3, irrigation mechanism; 31, irrigation pipe; 32, spray head; 4, water supply mechanism; 41, water supply pipe; 42, branch pipe; 43, rainwater collection box; 44, water pump; 45, water inlet pipe; 46, water outlet pipe; 5, heating mechanism; 51, mounting frame; 52, heating wire; 6, photovoltaic power generation mechanism; 61, connecting rod; 62, mounting bracket; 63, limiting nut; 64, photovoltaic panel; 7, cleaning mechanism; 71, electric telescopic rod; 72, moving plate; 73, guide rod; 74, first sliding sleeve; 75, connecting plate; 76, scraper; 77, push rod; 8, water receiving mechanism; 81, moving seat; 82, second sliding sleeve; 83, horizontal groove; 84, horizontal rod; 85, lead screw; 86, horizontal shaft; 87, water receiving tank; 88, driving assembly; 881, first rack; 882, short shaft; 883, first spur gear; 884, first bevel gear; 885, second bevel gear; 89, driven assembly; 891, clearance groove; 892, second spur gear; 893, second rack; 9, water baffle. DETAILED DESCRIPTION

[0020] Wherein the same parts are denoted by the same reference signs. It should be noted that the words "front", "back", "left", "right", "up", "down", "bottom surface" and "top surface" used in the following description refer to the directions in the drawings, and the words "inner" and "outer" refer to the directions towards or away from the geometric center of a particular component.

[0021] The present application discloses a water ecological wall, as shown in Figure 1 and Figure 2 It comprises a wall body 1, two support plates 11 installed on the side walls of the wall body 1, and a plurality of planting pots 12 installed on the top of the two support plates 11, and a plurality of cultivation devices 2 for cultivating different plant seedlings are arranged between the two support plates 11.

[0022] As shown in Figure 1 and Figure 2As shown in the drawings, the cultivation device 2 comprises a cultivation box 21 mounted on the side wall of the wall 1, a door plate 22 mounted on the opening of the cultivation box 21, and a transparent plate 221 mounted in the door plate 22; the LED lamp 23, the irrigation mechanism 3, the seedling tray 24 and the heating mechanism 6 are sequentially mounted in the cultivation box 21 in the vertical direction; the water supply mechanism 4 for supplying water to the plurality of irrigation mechanisms 3 is mounted on the wall 1; a plurality of cultivation pots 25 are mounted on the seedling tray 24, and the ventilation pipe 26 is communicated with the top of the cultivation box 21, and the valve is mounted on the ventilation pipe 26; the photovoltaic power generation mechanism 6 for supplying power to the electrical components of the cultivation device 2 is mounted on the wall 1. The transparent plate 221 is provided to facilitate observation of the inside of the cultivation box 21; the LED lamp 23 is provided to provide sufficient light conditions for the seedlings in the cultivation pots 25; the irrigation mechanism 3 is provided to irrigate the seedlings in the cultivation pots 25; the heating mechanism 6 can adjust the temperature in the cultivation box 21; the ventilation pipe 26 can improve the air condition in the cultivation box 21; the photovoltaic power generation mechanism 6 can supply power to the electrical components of the cultivation device 2; in summary, the present application facilitates the cultivation of seedlings, and facilitates the replacement of plants in the planting pot 12 when the plants in the planting pot 12 die.

[0023] As shown in the drawings, Figure 1 and Figure 2 The irrigation mechanism 3 comprises an irrigation pipe 31 mounted on the inner wall of the cultivation box 21 and a plurality of spray heads 32 communicated with the bottom of the irrigation pipe 31, and the spray heads 32 are arranged towards the cultivation pots 25. The irrigation pipe 31 and the spray heads 32 are provided to facilitate irrigation of the seedlings.

[0024] As shown in the drawings, Figure 1 and Figure 2 The water supply mechanism 4 comprises a water supply pipe 41 mounted on the side wall of the wall 1 and a plurality of branch pipes 42 vertically communicated with the bottom of the water supply pipe 41; the plurality of branch pipes 42 are communicated with the plurality of irrigation pipes 31 one by one; one end of the water supply pipe 41 is closed, and the other end is communicated with a high-pressure water source; a rainwater collection assembly is mounted on the support plate 11, and the rainwater collection assembly can supply water to the water supply pipe 41. The water supply pipe 41 and the branch pipes 42 are provided to facilitate water supply to the irrigation pipes 31; the rainwater collection assembly can collect rainwater to facilitate water supply to the water supply pipe 41.

[0025] As shown in the drawings, Figure 1 and Figure 2As shown in the figure, the rainwater collecting assembly comprises a rainwater collecting tank 43 and a water pump 44 vertically installed on the top of the support plate 11; the water inlet of the water pump 44 is communicated with a water inlet pipe 45, the water inlet pipe 45 is provided with a valve and the end thereof away from the water pump 44 is communicated with the rainwater collecting tank 43; the water outlet of the water pump 44 is communicated with a water outlet pipe 46, the end of the water outlet pipe 46 away from the water pump 44 is communicated with the water supply pipe 41. The rainwater collecting tank 43 is arranged to facilitate the collection of rainwater; the water pump 44, the water inlet pipe 45 and the water outlet pipe 46 are arranged to facilitate the water supply of the water supply pipe 41.

[0026] As shown in the figure, Figure 1 and Figure 2 The heating mechanism 6 comprises a mounting frame 61 mounted on the bottom of the seedling tray 24 and a plurality of electric heating wires 62 mounted in the mounting frame 61. The electric heating wires 62 are arranged to facilitate the temperature rise in the cultivation box 21.

[0027] As shown in the figure, Figure 1 and Figure 2 The photovoltaic power generation mechanism 6 comprises a connecting rod 61 mounted on the side wall of the wall body 1, a mounting bracket 62 slidably connected to the connecting rod 61 and two limiting nuts 63 threadedly connected to the connecting rod 61; the two limiting nuts 63 are used to mount the mounting bracket 62 on the connecting rod 61 and make the mounting bracket 62 spaced apart from the wall body 1; the top of the mounting bracket 62 is provided with a photovoltaic panel 64; the photovoltaic power generation mechanism 6 further comprises a solar controller, a battery and an inverter, all of which are existing, so they will not be described here, and the photovoltaic panel 64, the solar controller, the battery and the inverter are electrically connected. The connecting rod 61 and the two limiting nuts 63 are arranged to facilitate the separation of the mounting bracket 62 from the wall body 1; the photovoltaic panel 64, the solar controller, the battery and the inverter are arranged to facilitate power generation.

[0028] As shown in the figure, Figure 1 and Figure 2As shown, the cultivation device 2 further comprises a cleaning mechanism 7 for cleaning the photovoltaic panel 64, the cleaning mechanism 7 comprises an electric telescopic rod 71 vertically installed outside the sidewall of the cultivation box 21, a moving plate 72 fixedly connected to the output end of the electric telescopic rod 71, two guide rods 73 respectively fixedly connected to the two sides of the mounting frame 62, and two first sliding sleeves 74 respectively slidably connected to the two guide rods 73; the two first sliding sleeves 74 are fixedly connected with a connecting plate 75, the bottom of the connecting plate 75 is fixedly connected with a scraper 76, the scraper 76 is slidably connected to the top of the photovoltaic panel 64, and the moving plate 72 is hingedly connected with a push rod 77 between the moving plate 72 and the connecting plate 75. When it is necessary to clean the top of the photovoltaic panel 64, the electric telescopic rod 71 is started first, at this time the output end of the electric telescopic rod 71 drives the moving plate 72 to move downward, the moving plate 72 drives the push rod 77 to move, the push rod 77 drives the connecting plate 75 to move, the connecting plate 75 drives the scraper 76 to move, and the scraper 76 moves to clean the top of the photovoltaic panel 64. In summary, the cleaning mechanism 7 is arranged to facilitate cleaning the top of the photovoltaic panel 64.

[0029] As shown in Figure 1 and Figure 2 A plurality of drainage pipes 27 are vertically communicated on the seedling tray 24, a filter is threadedly installed at the bottom of each drainage pipe 27, the filter comprises a threaded pipe 28 threadedly connected to the bottom of the drainage pipe 27 and a filter screen fixedly connected to the bottom of the threaded pipe 28, and a water receiving mechanism 8 is installed at the bottom of the cultivation box 21. The filter is arranged to reduce the impurities flowing to the bottom of the cultivation box 21.

[0030] As shown in Figures 1-3As shown, the water receiving mechanism 8 comprises a moving seat 81 slidingly arranged at the bottom of the incubation box 21, and two second sliding sleeves 82 respectively fixedly connected to the two ends of the moving seat 81; the inner walls of the two sides of the incubation box 21 are respectively provided with horizontal grooves 83, the two second sliding sleeves 82 are respectively slidingly connected to the two horizontal grooves 83 in the width direction of the incubation box 21, horizontal rods 84 and lead screws 85 are respectively fixedly connected in the two horizontal grooves 83; one second sliding sleeve 82 is slidingly connected to the horizontal rod 84, and the other second sliding sleeve 82 is threadedly connected to the lead screw 85; the sidewall of the incubation box 21 is provided with a driving assembly 88 for driving the lead screw 85 to rotate; the top of the moving seat 81 is rotatably connected with a horizontal shaft 86, and a water receiving tank 87 is fixedly connected to the horizontal shaft 86; the sidewalls of the two sides of the incubation box 21 are respectively provided with driving assemblies 89 for driving the horizontal shaft 86 to rotate; when the water receiving tank 87 is driven to rotate downward by the horizontal shaft 86, the opening of the water receiving tank 87 is arranged corresponding to the photovoltaic panel 64; the sidewall of the wall body 1 is provided with a water baffle 9. When the above-mentioned moving plate 72 moves downward, the driving assembly 88 drives the lead screw 85 to rotate at this time, the lead screw 85 drives the second sliding sleeve 82 to move outward of the incubation box 21 by rotating, the second sliding sleeve 82 drives the moving seat 81 to move outward of the incubation box 21 by moving outward of the incubation box 21, and when the moving seat 81 is about to move to the opening of the incubation box 21, the driving assembly 89 drives the horizontal shaft 86 to rotate at this time, the horizontal shaft 86 drives the water receiving tank 87 to rotate, thereby facilitating the surface of the photovoltaic panel 64 to be washed.

[0031] As shown in Figure 2 and Figure 3 , the driving assembly 88 comprises a first rack 881 fixedly connected to the bottom of the moving plate 72, a short shaft 882 rotatably connected to the sidewall of the horizontal groove 83 through a bearing, a first spur gear 883 fixedly connected to one end of the short shaft 882, a first bevel gear 884 fixedly connected to the other end of the short shaft 882, and a second bevel gear 885 fixedly connected to one end of the lead screw 85; the first spur gear 883 is engaged with the first rack 881, and the first bevel gear 884 is engaged with the second bevel gear 885. When the above-mentioned moving plate 72 moves downward, the moving plate 72 drives the first rack 881 to move downward at this time, the first rack 881 drives the first spur gear 883 to rotate by moving downward, the first spur gear 883 drives the short shaft 882 to rotate by rotating, the short shaft 882 drives the first bevel gear 884 to rotate by rotating, the first bevel gear 884 drives the second bevel gear 885 to rotate, and the second bevel gear 885 drives the lead screw 85 to rotate; in summary, the driving assembly 88 is arranged to facilitate the rotation of the lead screw 85.

[0032] As shown in Figure 2 and Figure 3As shown, each set of drive assembly 89 includes a clearance slot 891 formed in the side wall of the incubator 21, one end of the horizontal shaft 86 extends into the clearance slot 891 and is fixedly connected with a second spur gear 892, the bottom of the clearance slot 891 near the end of the door plate 22 is fixedly connected with a second rack 893, and the second spur gear 892 is engaged with the second rack 893; the width of the moving seat 81 is smaller than the width of the water tank 87, the width here refers to the inward extension direction of the drawing, in the initial state, the second spur gear 892 is separated from the second rack 893; when the moving seat 81 is about to move to the opening of the incubator 21, the second spur gear 892 is engaged with the second rack 893 at this time. When the moving seat 81 is about to move to the opening of the incubator 21, the second spur gear 892 is engaged with the second rack 893 at this time, and then the horizontal shaft 86 rotates under the action of the second spur gear 892 and the second rack 893, thereby facilitating the washing of the surface of the photovoltaic panel 64.

[0033] The above are preferred embodiments of the present application, and are not intended to limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape, principle of the present application shall be covered within the protection scope of the present application.

Claims

1. A water ecological wall, comprising a wall body (1), two support plates (11) installed on the side wall of the wall body (1), and a plurality of planting pots (12) installed on the top of the two support plates (11), characterized in that: A plurality of groups of cultivation devices (2) for cultivating different plant seedlings are arranged between the two support plates (11), and the cultivation device (2) comprises a cultivation box (21) mounted on the side wall of the wall body (1), a door plate (22) mounted on the opening of the cultivation box (21), and a transparent plate (221) mounted in the door plate (22); the cultivation box (21) is sequentially mounted with an LED lamp (23), an irrigation mechanism (3), a seedling tray (24), and a heating mechanism (6) in the vertical direction; the wall body (1) is provided with a water supply mechanism (4) for supplying water to the plurality of groups of irrigation mechanisms (3); the seedling tray (24) is provided with a plurality of cultivation pots (25), and the top of the cultivation box (21) is communicated with a ventilation pipe (26), and the ventilation pipe (26) is provided with a valve; the wall body (1) is provided with a photovoltaic power generation mechanism (6) for supplying power to the electrical components of the cultivation device (2).

2. The water ecological wall according to claim 1, characterized in that: The irrigation mechanism (3) comprises an irrigation pipe (31) mounted on the inner wall of the cultivation box (21) and a plurality of spray heads (32) communicated with the bottom of the irrigation pipe (31), and the spray heads (32) are arranged towards the cultivation pots (25).

3. The water ecological wall according to claim 2, characterized in that: The water supply mechanism (4) comprises a water supply pipe (41) mounted on the side wall of the wall body (1) and a plurality of branch pipes (42) communicated with the bottom of the water supply pipe (41); a plurality of the branch pipes (42) are communicated with a plurality of the irrigation pipes (31) one by one; one end of the water supply pipe (41) is closed, and the other end is communicated with a high-pressure water source; a rainwater collection assembly is mounted on the support plate (11), and the rainwater collection assembly can supply water to the water supply pipe (41).

4. The water ecological wall according to claim 3, characterized in that: The rainwater collection assembly comprises a rainwater collection box (43) mounted on the top of the support plate (11) and a water pump (44); the water inlet of the water pump (44) is communicated with a water inlet pipe (45), the water inlet pipe (45) is provided with a valve and its end away from the water pump (44) is communicated with the rainwater collection box (43); the water outlet of the water pump (44) is communicated with a water outlet pipe (46), and the end of the water outlet pipe (46) away from the water pump (44) is communicated with the water supply pipe (41).

5. The water ecological wall according to claim 1, characterized in that: The heating mechanism (6) comprises a mounting frame (61) mounted on the bottom of the seedling tray (24) and a plurality of electric heating wires (62) mounted in the mounting frame (61).

6. The water ecological wall according to claim 1, characterized in that: The photovoltaic power generation mechanism (6) comprises a connecting rod (61) mounted on the side wall of the wall body (1), a mounting bracket (62) slidably connected to the connecting rod (61), and two limiting nuts (63) threadedly connected to the connecting rod (61); the two limiting nuts (63) are used to mount the mounting bracket (62) to the connecting rod (61), and the mounting bracket (62) is arranged at a distance from the wall body (1); the top of the mounting bracket (62) is provided with a photovoltaic panel (64).

7. The water ecological wall according to claim 6, characterized in that: Also include cleaning mechanism (7) for cleaning photovoltaic panel (64), the cleaning mechanism (7) includes the electric telescopic rod (71) installed on the outside wall of the incubator (21), the moving plate (72) fixed to the output end of the electric telescopic rod (71), two guide rods (73) fixed to the two sides of the mounting frame (62) respectively and two first sliding sleeves (74) respectively connected to the two guide rods (73) slidingly, two first sliding sleeves (74) are fixed between the connecting plate (75), the bottom of the connecting plate (75) is fixed with the scraper (76), the scraper (76) can be connected to the top of the photovoltaic panel (64) slidingly, the push rod (77) is hinged between the moving plate (72) and the connecting plate (75).

8. The water ecological wall according to claim 7, characterized in that: A plurality of drain pipes (27) are communicated with the seedling tray (24), a filter is threadedly installed at the bottom of each drain pipe (27), a water receiving mechanism (8) is installed at the bottom of the incubator (21), the water receiving mechanism (8) comprises a moving seat (81) slidingly arranged at the bottom of the incubator (21) and two second sliding sleeves (82) fixed to the two ends of the moving seat (81) respectively, horizontal grooves (83) are formed in the inner walls of the two sides of the incubator (21) respectively, the two second sliding sleeves (82) are slidingly connected to the two horizontal grooves (83) respectively, horizontal rods (84) are fixed in the two horizontal grooves (83) respectively, and lead screws (85) are rotatably connected to the horizontal grooves (83), one of the second sliding sleeves (82) is slidingly connected to the horizontal rod (84), the other second sliding sleeve (82) is threadedly connected to the lead screw (85), a drive assembly (88) for driving the rotation of the lead screw (85) is installed on the sidewall of the incubator (21), a horizontal shaft (86) is rotatably connected to the top of the moving seat (81), and a water receiving tank (87) is fixed to the horizontal shaft (86), drive assemblies (89) for driving the rotation of the horizontal shaft (86) are installed on the sidewalls of the two sides of the incubator (21), when the water receiving tank (87) rotates downward under the action of the horizontal shaft (86), the opening of the water receiving tank (87) corresponds to the photovoltaic panel (64).

9. The water ecological wall according to claim 8, characterized in that: The drive assembly (88) comprises a first rack (881) fixed to the bottom of the moving plate (72), a short shaft (882) rotatably connected to the sidewall of the horizontal groove (83), a first spur gear (883) fixed to one end of the short shaft (882), a first bevel gear (884) fixed to the other end of the short shaft (882) and a second bevel gear (885) fixed to one end of the lead screw (85), the first spur gear (883) is engaged with the first rack (881), and the first bevel gear (884) is engaged with the second bevel gear (885).

10. The water ecological wall according to claim 8, characterized in that: Each of the drive assembly (89) includes a let slot (891) opened in the side wall of the incubator (21), one end of the horizontal shaft (86) extends into the let slot (891) and is fixed with a second spur gear (892), the bottom of the let slot (891) near the end of the door panel (22) is fixed with a second rack (893), the second spur gear (892) is engaged with the second rack (893); The width of the moving seat (81) is smaller than the width of the water tank (87), and in the initial state, the second spur gear (892) is separated from the second rack (893); When the moving seat (81) moves to the opening of the incubator (21), the second spur gear (892) is engaged with the second rack (893) at this time.

Citation Information

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