Rainwater collecting device for landscape garden

The collection assembly, consisting of a guide plate, a barrier, a rotating block, and a scraper, combined with a rotating motor and a brush to prevent clogging by impurities, and utilizing an adsorption chamber and multi-layer filter screens, solves the clogging problem of rainwater collection devices in landscape gardens, achieving efficient collection and filtration of rainwater.

CN224199966UActive Publication Date: 2026-05-05刘玉林
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
刘玉林
Filing Date
2025-06-05
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Traditional rainwater harvesting systems in landscape gardens are prone to pipe blockage due to leaves, silt, suspended matter, and organic matter, which affects rainwater harvesting efficiency and increases garden maintenance costs.

Method used

The collection assembly consists of a guide plate, a barrier, a rotating block, and a scraper, combined with a rotating motor and a brush body to prevent impurities from clogging the system; the adsorption assembly achieves physical filtration through an adsorption chamber and multiple layers of filter screens to separate leaves, silt, and organic matter.

Benefits of technology

It enables smooth rainwater collection and efficient filtration, reduces pipe blockage, lowers garden maintenance costs, and improves rainwater utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224199966U_ABST
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Abstract

The utility model discloses a rainwater collecting device for landscape gardens, which comprises a tank body and a collecting assembly arranged at the upper end of the tank body, and the collecting assembly is used for preventing blockage of rainwater and ensuring smooth collection of the rainwater. The adsorption assembly is arranged on one side of the tank body, the collection assembly comprises a flow guide plate, a fence, a rotating block and a scraping plate, the flow guide plate is arranged in a funnel shape, the lower end of the flow guide plate is fixedly connected with the upper end of the tank body, the fence is fixedly connected to the middle of the flow guide plate, a rotating motor is arranged in the fence, and the rotating block is fixedly connected to the power end of the rotating motor; a plurality of scraping plates are fixedly connected to the side edge of the rotating block at intervals along the center axis of the rotating block, brush bodies are arranged at the lower ends of the scraping plates, a rainproof cover is arranged at the upper end of the rotating block, and a through hole is formed in the position, located at the upper end of the tank body, of the flow guide plate. The utility model belongs to the technical field of landscape gardens, and particularly relates to a rainwater collecting device used in a landscape garden.
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Description

Technical Field

[0001] This utility model belongs to the field of landscape architecture technology, and in particular relates to a rainwater collection device for use in landscape architecture. Background Technology

[0002] With the acceleration of urbanization, the problem of water shortage is becoming increasingly prominent. The extensive hard paving in cities increases rainwater runoff while reducing groundwater recharge, while the water demand for irrigation in landscape gardens and other purposes continues to grow. Therefore, effective rainwater harvesting and utilization measures are needed to alleviate water resource pressure.

[0003] Landscape architecture needs to maintain good landscape effects and ecological environment. Traditional drainage methods may lead to soil erosion and soil drying problems, increase dependence on municipal water supply, and increase the cost of landscape maintenance. In addition, traditional drainage methods are very easy to cause blockage of drainage pipes by leaves, mud, suspended solids and some organic matter carried by rainwater, resulting in a large accumulation of rainwater. Utility Model Content

[0004] In response to the above situation, in order to overcome the shortcomings of existing technologies that easily cause pipe blockage during rainwater collection.

[0005] The technical solution adopted by this utility model is as follows: a rainwater collection device for landscape gardens includes a tank and a collection component disposed on the upper end of the tank. The collection component is used to prevent rainwater blockage and ensure smooth rainwater collection. An adsorption component is provided on one side of the tank.

[0006] Furthermore, the collection assembly includes a guide plate, a baffle, a rotating block, and scrapers. The guide plate is funnel-shaped, and its lower end is fixedly connected to the upper end of the tank. The baffle is fixedly connected to the middle of the guide plate, and a rotary motor is provided inside the baffle. The rotating block is fixedly connected to the power end of the rotary motor. Several scrapers are fixedly connected to the side of the rotating block at intervals along the central axis of the rotating block. The lower end of the scraper is provided with a brush body, and the upper end of the rotating block is provided with a rain cover. The guide plate has a through hole at the position of the upper end of the tank.

[0007] Furthermore, the adsorption assembly includes a support block and an adsorption chamber. A working cavity is formed inside the tank. The support block is fixed to the outer side of the tank. A sliding groove is provided at intervals on the side of the support block. The sliding groove passes through the support block and communicates with the working cavity. The adsorption chamber is inserted into the sliding groove. A handle is provided on the outer side of the adsorption chamber. A drain outlet is provided on one side of the lower part of the working cavity.

[0008] Furthermore, the upper end of the brush body is fixedly connected to the scraper, and the lower end of the brush body is matched with the upper end of the guide plate.

[0009] Furthermore, the adsorption chamber is cylindrical at one end and rectangular at the other end. A closed adsorption cavity is formed inside the circular part of the adsorption chamber, and adsorption holes are formed at the upper and lower ends of the adsorption cavity.

[0010] Furthermore, the adsorption chambers are sequentially filled with a coarse filter, a fine filter, and an activated carbon filter.

[0011] The beneficial effects of this utility model after adopting the above structure are as follows:

[0012] (1) Rainwater collection is achieved by linking the guide plate, enclosure, rotating block and scraper, and rotating motor and brush body in the collection component. The brush body driven by the rotating motor scrapes the large solid particles in the rainwater at the upper part of the guide plate to prevent the impurities from clogging the through holes and affecting the rainwater collection efficiency.

[0013] (2) By linking the adsorption chambers in multiple adsorption chambers, the layered adsorption of leaves, mud, suspended matter and some organic matter in the collected rainwater is achieved, thus realizing the physical filtration of rainwater. Attached Figure Description

[0014] The accompanying drawings are provided to further understand the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation thereof.

[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0016] Figure 2 This is an exploded view of the overall structure of this utility model;

[0017] Figure 3 This is a half-sectional schematic diagram of the overall structure of this utility model;

[0018] Figure 4 for Figure 3 Enlarged view of part A.

[0019] In the attached diagram: 1. Tank body, 2. Guide plate, 3. Enclosure, 4. Rotating block, 5. Scraper, 6. Rotary motor, 7. Brush body, 8. Rain cover, 9. Through hole, 10. Support block, 11. Adsorption chamber, 12. Handle, 13. Drain outlet, 14. Adsorption cavity, 15. Adsorption hole. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0021] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0022] like Figure 1 As shown, a rainwater harvesting device for use in landscape gardens includes a tank 1 and a collection component disposed on the upper end of the tank 1. The collection component is used to prevent rainwater blockage and ensure smooth rainwater collection; an adsorption component is provided on one side of the tank 1.

[0023] like Figure 2-3 As shown in Figure 4, the collection assembly includes a guide plate 2, a baffle 3, a rotating block 4, and scrapers 5. The guide plate 2 is funnel-shaped and its lower end is fixedly connected to the upper end of the tank body 1. The baffle 3 is fixedly connected to the middle of the guide plate 2 and a rotary motor 6 is provided inside the baffle 3. The rotating block 4 is fixedly connected to the power end of the rotary motor 6. Several scrapers 5 are fixedly connected to the side of the rotating block 4 at intervals along the central axis of the rotating block 4. The lower end of the scraper 5 is provided with a brush body 7, and the upper end of the rotating block 4 is provided with a rain cover 8. The guide plate 2 has a through hole 9 at the position of the upper end of the tank body 1.

[0024] The upper end of the brush body 7 is fixedly connected to the scraper 5, and the lower end of the brush body 7 is matched with the upper end of the guide plate 2. The power shaft of the rotary motor 6 drives the scraper 5 to rotate through the connected rotating block 4. The brush body 7 at the lower end of the scraper 5 brushes the upper end of the guide plate 2 to prevent large solid particles in the rainwater from clogging the through hole 9.

[0025] like Figure 2-3 As shown in Figure 4, the adsorption assembly includes a support block 10 and an adsorption chamber 11. A working chamber is formed inside the tank body 1. The support block 10 is fixed to the outer side of the tank body 1. A sliding groove is provided at intervals on the side of the support block 10. The sliding groove passes through the support block 10 and communicates with the working chamber. The adsorption chamber 11 is inserted into the sliding groove. A handle 12 is provided on the outer side of the adsorption chamber 11. A drain outlet 13 is provided on one side of the lower part of the working chamber.

[0026] The adsorption chamber 11 is cylindrical at one end and rectangular at the other. The circular part of the adsorption chamber 11 has a closed adsorption cavity 14. The upper and lower ends of the adsorption cavity 14 have adsorption holes 15. The adsorption cavities 14 are filled with coarse filter screen, fine filter screen and activated carbon filter screen in sequence. The rainwater entering through the through hole 9 passes through the multiple sets of adsorption cavities 14 in sequence, and the rainwater is adsorbed in layers. This achieves the layered adsorption of leaves, mud, suspended solids and some organic matter in the collected rainwater, realizing the physical filtration of rainwater. The physically filtered rainwater is discharged and reused through the drain outlet 13.

[0027] Although 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 alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents. In conclusion, if those skilled in the art, inspired by this description, design similar structural methods and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.

Claims

1. A rainwater harvesting device for use in landscape gardens, characterized in that: It includes a tank (1) and a collection component disposed on the upper end of the tank (1), the collection component being used to prevent rainwater blockage and ensure smooth collection of rainwater; an adsorption component is provided on one side of the tank (1); The collection assembly includes a guide plate (2), a baffle (3), a rotating block (4), and a scraper (5). The guide plate (2) is funnel-shaped and its lower end is fixedly connected to the upper end of the tank (1). The baffle (3) is fixedly connected to the middle of the guide plate (2). A rotary motor (6) is provided inside the baffle (3). The rotating block (4) is fixedly connected to the power end of the rotary motor (6). Several scrapers (5) are fixedly connected to the side of the rotating block (4) at intervals along the central axis of the rotating block (4). A brush body (7) is provided at the lower end of the scraper (5). A rain cover (8) is provided at the upper end of the rotating block (4). A through hole (9) is opened at the position of the guide plate (2) at the upper end of the tank (1).

2. A rainwater harvesting device for landscape architecture according to claim 1, characterized in that: The adsorption assembly includes a support block (10) and an adsorption chamber (11). The tank (1) forms a working chamber inside. The support block (10) is fixed to the outer side of the tank (1). The support block (10) has a sliding groove spaced apart on its side. The sliding groove passes through the support block (10) and communicates with the working chamber. The adsorption chamber (11) is inserted into the sliding groove. The adsorption chamber (11) has a handle (12) on its outer side. The working chamber has a drain outlet (13) on one side of its lower part.

3. A rainwater harvesting device for landscape architecture according to claim 2, characterized in that: The upper end of the brush body (7) is fixedly connected to the scraper (5), and the lower end of the brush body (7) is matched with the upper end of the guide plate (2).

4. A rainwater harvesting device for landscape architecture according to claim 3, characterized in that: The adsorption chamber (11) is cylindrical at one end and rectangular at the other end. A closed adsorption cavity (14) is provided inside the circular part of the adsorption chamber (11), and adsorption holes (15) are provided at the upper and lower ends of the adsorption cavity (14).

5. A rainwater harvesting device for landscape architecture according to claim 4, characterized in that: The adsorption chambers (14) are sequentially filled with a coarse filter, a fine filter, and an activated carbon filter.