Environment-friendly ecological garden landscape device

CN224747748UActive Publication Date: 2026-09-15BEIJING BIHAIYIJING LANDSCAPING CO LTD
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Patent Information

Application Number
CN202521095376.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-30
Publication Date
2026-09-15
Estimated Expiration
2035-05-30

AI Technical Summary

Technical Problem

[0004]为了解决目前的环保型生态园林景观装置环保型生态园林景观装置,需要工作人员通过入水口向储水箱内部添加水源,这样的设计,仍然需要人工定期为植物浇水,不仅大大增加了维护成本,还对人工依赖性较强的情况,本申请提供一种环保型生态园林景观装置

Benefits of technology

[0022] 1. The support frame is stably supported by the support base to ensure the stability of the overall system; the evenly distributed support plates on the support frame can easily place flower pots to realize vertical greening of flowers and plants;

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Abstract

The application relates to an environment-friendly ecological garden landscape device and relates to the related technical field of garden landscapes. The device comprises a supporting base, a supporting frame, a supporting plate, a rainwater collecting unit and a spraying unit, and the supporting base is arranged as a load-bearing base. In the environment-friendly ecological garden landscape device, the supporting base is used for stably supporting the supporting frame, so that the stability of the whole system is ensured; the supporting plate uniformly distributed on the supporting frame can conveniently place a cultivation flowerpot, and vertical greening of flowers and plants is realized. The rainwater collecting unit can effectively collect, filter and store rainwater, the collected rainwater is accurately delivered into the cultivation flowerpot in a drip irrigation mode through the spraying unit connected with the rainwater collecting unit, the utilization rate of the rainwater is remarkably improved, the trouble of manually regularly supplementing water sources is avoided, water resources can be saved, and the environment is protected.
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Description

Technical Field

[0001] This application relates to the field of landscape architecture technology, and in particular to an environmentally friendly ecological landscape device. Background Technology

[0002] The related technology, with publication number CN217936612U, describes a vertical, eco-friendly garden landscape frame. Its technical solution includes: a viewing frame, lighting components, and irrigation components. The viewing frame has an installation chamber at its base. Lighting components are installed on both sides inside the viewing frame. A connector is installed on one side of a connecting box, and a light lamp is installed on the other side of the connector. A data cable is installed inside the connecting box, with a light sensor installed at one end of the data cable. Irrigation components are installed inside the viewing frame, and sprinklers are installed at equal intervals at the bottom of the top plate. This utility model uses a light sensor to sense the brightness of the external environment. When the external ambient brightness is low, it can control the light lamps to provide sunlight to the landscape plants, meeting their daily lighting needs. This allows the device to be used in various environments, optimizing its use and improving its practicality.

[0003] For the environmentally friendly ecological garden landscape devices mentioned above, staff need to add water to the water storage tank through the water inlet. This design still requires manual watering of the plants regularly, which not only greatly increases maintenance costs but also makes the system highly dependent on manual labor. Utility Model Content

[0004] To address the current issue that environmentally friendly ecological landscape devices require staff to add water to the storage tank through the inlet, which still necessitates regular manual watering of the plants, significantly increasing maintenance costs and creating a high degree of reliance on manual labor, this application provides an environmentally friendly ecological landscape device.

[0005] The environmentally friendly ecological garden landscape device provided in this application adopts the following technical solution: it includes a support base, a support frame fixedly installed on the upper surface of the support base, support plates evenly arranged in the inner cavity of the support frame, a rainwater collection unit installed on the upper surface of the support frame, and a spray unit connected to the rainwater collection unit, wherein the support base is configured as a load-bearing base.

[0006] By adopting the above technical solution, the support frame is stably supported by the support base, ensuring the stability of the overall system. The evenly distributed support plates on the support frame can conveniently place the cultivation pots, realizing vertical greening of flowers and plants. The rainwater harvesting unit can effectively collect, filter and store rainwater. Through the connected sprinkler unit, the collected rainwater is precisely delivered to the cultivation pots through drip irrigation, thereby significantly improving the utilization rate of rainwater, avoiding the trouble of manually replenishing the water source regularly, and also saving water resources and protecting the environment.

[0007] As a preferred embodiment, the rainwater collection unit includes a mounting frame fixedly mounted on the upper surface of the support frame, a rainwater collection plate inclinedly mounted on the upper surface of the mounting frame, a rainwater collection box located at the lowest inclination end of the rainwater collection plate and fixedly connected to the mounting frame, a first conveying pipe connected to the inlet of the rainwater collection box, a filter box located at the other end of the first conveying pipe and fixedly connected to the support frame, a second conveying pipe connected to the outlet of the filter box, and a water storage tank connected to the other end of the second conveying pipe and fixedly mounted on the support base. The rainwater collection plate is configured as a solar photovoltaic panel, and the rainwater collection plate is arranged in a "V" shape.

[0008] By adopting the above technical solutions, it is easier for solar photovoltaic panels to convert light energy into electrical energy.

[0009] As a preferred embodiment, the cross-section of the rainwater collection plate on each side is arranged in a wavy shape.

[0010] By adopting the above technical solution, a rainwater collection plate with a "V" shape and a wavy cross-section is supported by a mounting bracket fixedly installed on the upper surface of the support frame. The rainwater collection plate not only effectively collects rainwater through its inclined design, but also guides the direction of rainwater flow through its wavy design, allowing the rainwater to flow more smoothly to the rainwater collection box at the lowest end of the plate. Secondly, the rainwater collection box is connected to a filter box fixedly connected to the support frame via a first conveying pipe. The filter box performs preliminary filtration of the rainwater, removing impurities. Finally, the filtered rainwater, due to its own weight, flows through a second conveying pipe into a storage tank fixedly installed on the support base for storage. Simultaneously, the rainwater collection plate also functions as a solar photovoltaic panel, efficiently converting the absorbed solar energy into electrical energy.

[0011] As a preferred embodiment, one end of the second conveying pipe passes through the support frame and is connected to the water outlet of the filter box, and the other end of the second conveying pipe passes through the water storage tank and is disposed in the inner cavity of the water storage tank.

[0012] By adopting the above technical solution, the second conveying pipeline facilitates the automatic entry of filtered rainwater into the storage tank by its own weight for storage.

[0013] As a preferred embodiment, the filter box includes a filter box body fixedly connected to the support frame, filter screen plates uniformly arranged in the inner cavity of the filter box body, and a sealing cover disposed at the end of the filter box body away from the support frame. The filter screen plate is configured as a multi-layer filter plate, and the inner diameter of the sieve holes of the multi-layer filter plate decreases sequentially in the direction of rainwater falling.

[0014] By adopting the above technical solution, the filter box is stably supported by a fixed connection with the support frame. The multi-layer filter screens inside are arranged with the inner diameter of the screen holes decreasing in the direction of rainwater falling, which can effectively separate particles and impurities of different sizes, and finely filter the dust and impurities contained in the rainwater layer by layer, ultimately achieving the purpose of rainwater purification.

[0015] As a preferred embodiment, the spraying unit includes a main irrigation pipe connected to the water storage tank, a drip irrigation pipe connected to the main irrigation pipe relative to each of the support plates, and a booster pump mounted on the main irrigation pipe, the booster pump being fixedly connected to the support base.

[0016] By adopting the above technical solution, the irrigation main pipe and booster pump connected to the water storage tank work. The booster pump is fixed on the support base and effectively transports the water source in the water storage tank to the drip irrigation pipes on each support plate through the irrigation main pipe. These drip irrigation pipes are responsible for precise diversion to ensure that the water flow from the irrigation main pipe can be evenly dripped into the cultivation pots placed on the support plate, thereby achieving precise irrigation of the flowers and ensuring that the flowers grow under good water conditions.

[0017] As a preferred embodiment, the system also includes a liquid level sensor installed inside the water storage tank and a pressure relief valve installed on the water storage tank, wherein the liquid level sensor is configured as an infrared sensor.

[0018] By adopting the above technical solution, the water level sensor facilitates real-time monitoring of the water volume in the storage tank, and the pressure relief valve facilitates the real-time discharge of excess water from the storage tank. Real-time monitoring and control of the water volume are achieved through the installation of the water level sensor and the pressure relief valve. The water level sensor uses an infrared sensor to monitor changes in the water volume in the storage tank in real time, ensuring that there is no overflow or insufficient water affecting usage. The pressure relief valve automatically starts to discharge excess water when it detects that the water volume in the storage tank exceeds a preset value, preventing damage to the storage tank due to excessive pressure. Simultaneously, to maintain water quality and safety, the storage tank is designed as an insulated tank, effectively preventing the impact of external temperature changes on the water source. Whether in hot summers or cold winters, it ensures the quality of the water source and prevents freezing, thus guaranteeing a sufficient and safe supply of water resources at all times.

[0019] As a preferred embodiment, the system also includes a humidity sensor disposed on each of the aforementioned support plates, wherein the signal output terminal of the humidity sensor is electrically connected to the signal input terminal of the booster pump.

[0020] By adopting the above technical solution, a humidity sensor is installed on the support plate. This humidity sensor can monitor the humidity of the irrigation water dripping onto the support plate through the drainage holes of the pot and transmit the signal to the connected booster pump. When insufficient water is detected on the support plate, i.e., low humidity, the humidity sensor will send a signal to the booster pump via electrical connection, thereby controlling the booster pump to start. This achieves intelligent water management, simplifies the tedious steps of manual watering, and improves the automatic regulation capability of the plant growth environment.

[0021] In summary, this application includes the following beneficial technical effects:

[0022] 1. The support frame is stably supported by the support base to ensure the stability of the overall system; the evenly distributed support plates on the support frame can easily place flower pots to realize vertical greening of flowers and plants;

[0023] 2. The rainwater harvesting unit can effectively collect, filter and store rainwater. Through the connected sprinkler unit, the collected rainwater is precisely delivered to the flower pots in a drip irrigation manner, thereby significantly improving the utilization rate of rainwater, avoiding the trouble of manually replenishing the water source regularly, and at the same time saving water resources and protecting the environment. Attached Figure Description

[0024] Figure 1 This is a structural diagram of the overall structure of the environmentally friendly ecological landscape device of this application;

[0025] Figure 2 This is an environmentally friendly ecological landscape device in this application. Figure 1 A structural schematic diagram of the front view;

[0026] Figure 3 This is a structural schematic diagram of the rainwater harvesting unit in the environmentally friendly ecological landscape device of this application;

[0027] Figure 4 This is an environmentally friendly ecological landscape device in this application. Figure 3 A structural schematic diagram of the enlarged view at point A;

[0028] Figure 5 This is a schematic diagram of the filter box in the environmentally friendly ecological landscape device of this application.

[0029] Explanation of reference numerals in the attached drawings: 1. Support base; 2. Support frame; 3. Support plate; 4. Rainwater collection unit; 41. Rainwater collection plate; 40. Mounting frame; 42. Rainwater collection box; 421. First conveying pipe; 43. Filter box; 431. Filter box body; 432. Filter screen plate; 433. Sealing cover; 51. Second conveying pipe; 52. Water storage tank; 53. Irrigation main pipe; 53. Irrigation drip pipe; 6. Booster pump. Detailed Implementation

[0030] The present application will be further described in detail below with reference to the accompanying drawings.

[0031] Please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 This application discloses an environmentally friendly ecological garden landscape device. It includes a support base 1, a support frame 2 fixedly mounted on the upper surface of the support base 1, support plates 3 evenly distributed within the cavity of the support frame 2, a rainwater collection unit 4 mounted on the upper surface of the support frame 2, and a spray unit connected to the rainwater collection unit 4. The support base 1 is configured as a load-bearing base. The rainwater collection unit 4 includes a mounting frame 40 fixedly mounted on the upper surface of the support frame 2, a rainwater collection plate 41 inclined on the upper surface of the mounting frame 40, a rainwater collection box 42 located at the lowest point of the inclination of the rainwater collection plate 41 and fixedly connected to the mounting frame 40, and a first conveying pipe 421 connected to the inlet of the rainwater collection box 42. The filter box 43 is located at the other end of the first conveying pipe 421 and is fixedly connected to the support frame 2. The second conveying pipe 51 is connected to the outlet of the filter box 43. The water storage tank 52 is connected to the other end of the second conveying pipe 51 and is fixedly installed on the support base 1. The rainwater collection plate 41 is set as a solar photovoltaic panel. The rainwater collection plate 41 is set in a "V" shape, which facilitates the solar photovoltaic panel to convert light energy into electrical energy. The cross-section of the rainwater collection plate 41 on each side is set in a wave shape. The "V" shaped rainwater collection plate 41 with a wave-shaped cross-section is supported by the mounting bracket 40 fixedly installed on the upper surface of the support frame 2.

[0032] Please refer to Figure 2 , Figure 3 , Figure 4 and Figure 5The rainwater harvesting plate 41 not only effectively collects rainwater through its inclined design, but also guides the direction of rainwater flow through its wave-like design, allowing the rainwater to flow more smoothly to the rainwater collection box 42 at the lowest end of the rainwater harvesting plate 41. Secondly, the rainwater collection box 42 is connected to a filter box 43 fixedly connected to the support frame 2 via a first conveying pipe 421. The filter box 43 can perform preliminary filtration of the rainwater, removing impurities. Finally, the filtered rainwater, due to its own weight, flows through a second conveying pipe 51 into a water storage tank 52 fixedly installed on the support base 1 for storage. Simultaneously, the rainwater harvesting plate 41 also functions as a solar photovoltaic panel, efficiently converting the absorbed light energy into electrical energy.

[0033] Please refer to Figure 1 and Figure 2 One end of the second conveying pipe 51 passes through the support frame 2 and is connected to the water outlet of the filter box 43. The other end of the second conveying pipe 51 passes through the water storage tank 52 and is located in the inner cavity of the water storage tank 52. The second conveying pipe 51 facilitates the automatic entry of filtered rainwater into the water storage tank 52 by its own weight for storage.

[0034] Please refer to Figure 5 The filter housing 43 includes a filter box 431 fixedly connected to the support frame 2, filter screens 432 evenly arranged inside the filter box 431, and a sealing cover 433 located at the end of the filter box 431 away from the support frame 2. The filter screens 432 are multi-layered filter plates, and the inner diameter of the screen holes of the multi-layered filter plates decreases sequentially in the direction of rainwater falling. The filter housing 43 is stably supported by the fixed connection with the support frame 2. The multi-layered filter screens 432 inside, with the inner diameter of the screen holes decreasing sequentially in the direction of rainwater falling, can effectively separate particles and impurities of different sizes, and finely filter the dust and impurities contained in the rainwater layer by layer, ultimately achieving the purpose of rainwater purification. The specific working principle is as follows: rainwater first enters the filter screen 432 through the larger screen holes for preliminary filtration, and larger particles are intercepted. Then, the rainwater flows downward along the inner cavity of the filter box 431 and is further filtered again through the multi-layered filter plates with gradually smaller screen holes, making the filtration effect more thorough and ensuring that the final discharged rainwater meets the cleanliness standard. The sealing cover 433 is detachably installed at the end of the filter box 431, which not only ensures the airtightness of the filtration process and prevents external impurities from seeping in, but also facilitates the maintenance and cleaning of the filter box 43.

[0035] Please refer to Figure 3 , Figure 4 and Figure 5The sprinkler unit includes a watering main pipe 53 connected to a water storage tank 52, drip irrigation pipes connected to the watering main pipe 53 and corresponding to each support plate 3, and a booster pump 6 mounted on the watering main pipe 53. The booster pump 6 is fixedly connected to the support base 1. Through the operation of the watering main pipe 53 connected to the water storage tank 52 and the booster pump 6, the booster pump 6 is fixed on the support base 1 and effectively transports the water source in the water storage tank 52 to the drip irrigation pipes on each support plate 3 through the watering main pipe 53. These drip irrigation pipes are responsible for precise diversion to ensure that the water flow from the watering main pipe 53 can be evenly dripped into the cultivation flower pots placed on the support plate 3, thereby achieving precise irrigation of the flowers and ensuring that the flowers grow under good water conditions.

[0036] Please refer to Figure 1 and Figure 2 To ensure the utilization of water resources in the water storage tank 52, a liquid level sensor installed inside the water storage tank 52 and a pressure relief valve installed on the water storage tank 52 are also included. The liquid level sensor is an infrared sensor, which facilitates real-time monitoring of the water volume in the water storage tank 52. The pressure relief valve facilitates the real-time discharge of excess water in the water storage tank 52. The water storage tank 52 is designed as an insulated tank. The liquid level sensor and the pressure relief valve enable real-time monitoring and control of the water volume. The infrared sensor can monitor changes in the water volume in the water storage tank 52 in real time, ensuring that there is no overflow or shortage due to excessive water volume, which would affect the use. The pressure relief valve can automatically start to discharge excess water when it detects that the water volume in the water storage tank 52 exceeds the preset value, preventing the water storage tank 52 from being damaged due to excessive pressure. Meanwhile, in order to maintain the quality and safety of the water source, the water storage tank 52 is designed as an insulated tank, which can effectively prevent the impact of external temperature changes on the water source inside the water storage tank 52. Whether in the hot summer or the cold winter, the quality of the water source can be guaranteed and the freezing phenomenon can be avoided, thus ensuring that sufficient and safe water resources can be provided at any time.

[0037] Please refer to Figure 1 and Figure 2 To achieve automatic watering, a humidity sensor is also included on each support plate 3. The signal output of the humidity sensor is electrically connected to the signal input of the booster pump 6. The humidity sensor on each support plate 3 monitors the humidity of the water dripping from the drainage holes of the pot onto the support plate 3 and transmits the signal to the booster pump 6. When insufficient water is detected on the support plate 3, i.e., low humidity, the humidity sensor sends a signal to the booster pump 6 via electrical connection, thereby controlling the booster pump 6 to start. This achieves intelligent water management, simplifies the tedious steps of manual watering, and improves the automatic regulation of the plant growth environment.

[0038] The implementation principle of an environmentally friendly ecological garden landscape device according to an embodiment of this application is as follows: In use, the rainwater collection plate 41 can not only effectively collect rainwater through its inclined design, but also guide the falling direction of the rainwater through its wave-shaped design, so that the rainwater flows more smoothly to the rainwater collection box 42 at the lowest end of the rainwater collection plate 41; secondly, the rainwater collection box 42 is connected to the filter box 43 fixedly connected to the support frame 2 through the first conveying pipe 421. The filter box 43 can perform preliminary filtration of the rainwater to remove impurities; finally, the filtered rainwater enters the water storage tank 52 fixedly set on the support base 1 through the second conveying pipe 51 due to its own weight. A humidity sensor is set on the support plate 3. This humidity sensor can monitor the humidity of the water dripping from the water outlet of the flower pot onto the support plate 3 and transmit the signal to the connected booster pump 6. When insufficient moisture is detected on the support plate 3, i.e. low humidity, the humidity sensor sends a signal to the booster pump 6 via electrical connection, thereby controlling the booster pump 6 to start. This effectively delivers the water source in the water storage tank 52 to the drip irrigation pipes on each support plate 3 through the irrigation main pipe 53. These drip irrigation pipes are responsible for precise distribution, ensuring that the water from the irrigation main pipe 53 can be evenly dripped into the cultivation pots placed on the support plate 3, achieving precise irrigation of the flowers and ensuring that the flowers grow under good moisture conditions.

[0039] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. An environmentally friendly ecological garden landscape device, characterized in that: It includes a support base (1), a support frame (2) fixedly installed on the upper surface of the support base (1), a support plate (3) evenly arranged in the inner cavity of the support frame (2), a rainwater collection unit (4) installed on the upper surface of the support frame (2), and a spray unit connected to the rainwater collection unit (4). The support base (1) is configured as a load-bearing base.

2. The environmentally friendly ecological landscape device according to claim 1, characterized in that: The rainwater collection unit (4) includes a mounting frame (40) fixedly mounted on the upper surface of the support frame (2), a rainwater collection plate (41) inclinedly mounted on the upper surface of the mounting frame (40), a rainwater collection box (42) fixedly connected to the mounting frame (40) at the lowest inclination end of the rainwater collection plate (41), a first conveying pipe (421) connected to the inlet of the rainwater collection box (42), a filter box (43) fixedly connected to the support frame (2) at the other end of the first conveying pipe (421), a second conveying pipe (51) connected to the outlet of the filter box (43), and a water storage tank (52) fixedly mounted on the support base (1) at the other end of the second conveying pipe (51). The rainwater collection plate (41) is a solar photovoltaic panel.

3. The environmentally friendly ecological landscape device according to claim 2, characterized in that: The rainwater collection plate (41) is arranged in a "V" shape, and the cross-section of the rainwater collection plate (41) on each side is arranged in a wave shape.

4. The environmentally friendly ecological landscape device according to claim 3, characterized in that: One end of the second conveying pipe (51) passes through the support frame (2) and is connected to the water outlet of the filter box (43). The other end of the second conveying pipe (51) passes through the water storage tank (52) and is located in the inner cavity of the water storage tank (52).

5. The environmentally friendly ecological landscape device according to claim 4, characterized in that: The filter box (43) includes a filter box (431) fixedly connected to the support frame (2), a filter screen plate (432) evenly arranged in the inner cavity of the filter box (431), and a sealing cover (433) arranged at the end of the filter box (431) away from the support frame (2). The filter screen plate (432) is configured as a multi-layer filter plate, and the inner diameter of the sieve holes of the multi-layer filter plate decreases sequentially in the direction of rainwater falling.

6. The environmentally friendly ecological landscape device according to claim 5, characterized in that: The spraying unit includes a main irrigation pipe (53) connected to the water storage tank (52), a drip irrigation pipe connected to the main irrigation pipe (53) relative to each of the support plates (3), and a booster pump installed on the main irrigation pipe (53), the booster pump being fixedly connected to the support base (1).

7. The environmentally friendly ecological landscape device according to claim 6, characterized in that: It also includes a liquid level sensor installed in the water storage tank (52) and a pressure relief valve installed on the water storage tank (52), wherein the liquid level sensor is configured as an infrared sensor.

8. The environmentally friendly ecological landscape device according to claim 7, characterized in that: It also includes a humidity sensor installed on each of the support plates (3), the signal output terminal of which is electrically connected to the signal input terminal of the booster pump.

Citation Information

Patent Citations

  • Vertical ecological environment-friendly garden landscape frame

    CN217936612U