A water collection device for irrigating garden plants

By using the filtration structure and recycling design of the garden greening irrigation device, the problem of water accumulation clogging was solved, achieving efficient mud-water separation and water quality improvement, and increasing the utilization rate of accumulated water.

CN224281538UActive Publication Date: 2026-05-26韩乃柱
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
韩乃柱
Filing Date
2025-07-02
Publication Date
2026-05-26

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Abstract

This utility model provides a water collection device for irrigating garden plants, belonging to the field of garden irrigation technology. It includes a water collection channel with a rotatable screen cylinder inside. A partition plate, attached to the outer wall of the screen cylinder, is inclinedly fixed to the top of the inner wall of the water collection channel. A pipe, fixed to the inner wall of the water collection channel, is embedded in the inner cavity of the screen cylinder. A nozzle is installed on the outer wall of the pipe to spray water onto the inner wall of the screen cylinder. After filtering muddy water, a water pump introduces the filtered water into the pipe through a return water pipe. Water is then sprayed onto the screen cylinder by the nozzles on the pipe. The continuously rotating screen cylinder cleans the screen holes sequentially, ensuring the filtration effect of the screen cylinder. The filtered water is further treated by the filter layer. A water purification agent channel extending outwards is fixedly installed at the bottom of the outer wall of the water collection channel. Water purification agent is introduced into the water collection channel through this channel, and a linkage stirring component mixes and stirs the water purification agent, improving the water treatment effect.
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Description

Technical Field

[0001] This utility model relates to the field of garden irrigation technology, specifically a water collection device for irrigating garden plants. Background Technology

[0002] Garden irrigation is a technical measure to replenish the soil moisture needed for the growth of garden plants, thereby improving their growing conditions. It utilizes manual or mechanical methods in various forms of irrigation to replenish the soil moisture in garden green spaces and meet the water requirements of the plants.

[0003] A related technology (publication number: CN213896962U) discloses a water collection device for landscaping. The disclosed technical solution is as follows: by rotating the shaft, the partitions evenly distributed inside the fixed ring rotate. Due to the cooperation of the rubber sleeve and the sealing gasket, the gap between the partition and the fixed ring is filled, so that a sealed space is formed between the two partitions. When rotating, the air at the water inlet pipe is evacuated, thereby achieving suction. The hose connected to the water inlet pipe is placed into the water pit. The water enters from the water inlet pipe and is transported to the outlet between the two partitions. The water enters the water tank along the outlet, thereby achieving water collection. The filter screen can filter large particles that enter the hose, and the filter sieve can filter small particles mixed in the water, thereby achieving the filtration effect and avoiding blockage or sedimentation.

[0004] The above-disclosed technical solutions reveal the following problems: during the treatment of stagnant water in garden irrigation, the stagnant water contains mud and impurities. Therefore, filtering the mud and impurities in the stagnant water is an important part of the water treatment process. Once the filtration part is blocked, it will affect the water flow. In response, we propose a new type of water collection device for garden greening irrigation.

[0005] It should be noted that the information disclosed in the background section above is only used to enhance the understanding of the background section of this application, and therefore may include prior art information that does not constitute prior art information known to those skilled in the art. Utility Model Content

[0006] This utility model aims to solve at least one of the technical problems existing in the prior art or related technologies. To address the problem of garden irrigation water treatment in the prior art, this utility model provides a water collection device for garden green plant irrigation, which combines a filtration structure with a recycling structure to achieve water reuse. Its specific technical solution is as follows:

[0007] A water collection device for irrigating garden plants includes a water collection channel, a screen cylinder rotatably disposed within the inner cavity of the water collection channel, a partition plate fixedly attached to the outer wall of the screen cylinder at an inclined top of the inner wall of the water collection channel, a pipe fixedly disposed within the inner cavity of the screen cylinder and embedded in the inner wall of the water collection channel, a return water pipe for supplying water to the pipe is disposed on the outer wall of the water collection channel, a nozzle for spraying water onto the inner wall of the screen cylinder is disposed on the outer wall of the pipe, a linkage stirring assembly for mixing a water purification agent is disposed at the bottom of the inner cavity of the water collection channel, and a filter layer is disposed between the linkage stirring assembly and the screen cylinder.

[0008] In the above technical solution, the return water pipeline includes a water pump fixed to the outer wall of the water collection channel, the water inlet of the water pump is embedded inside the water collection channel, and the water outlet of the water pump is connected to the pipeline through the return water pipe.

[0009] The linkage stirring assembly includes stirring shafts that are rotatably arranged in sequence on the inner wall of the water collection channel, stirring blades that are arranged in sequence on the outer wall of the stirring shafts, and a linkage component that drives all stirring shafts to rotate simultaneously on the outer wall of the water collection channel.

[0010] The linkage component includes an extension shaft fixed to the end of the stirring shaft, the extension shaft extending out of the outside of the water accumulation channel, a transmission component sleeved on the outer wall of the extension shaft, and linkage components simultaneously engaging on the outer walls of all the transmission components.

[0011] The sidewalls of the water accumulation channel are symmetrically fixed with limiting frames that fit against the outer wall of the linkage component.

[0012] A water inlet pipe connected to the irrigation pipeline is embedded at the bottom of the outer wall of the drainage ditch.

[0013] A sliding rod is fixed to the inner wall of the water accumulation channel above the screen cylinder, and a scraper that fits against the outer wall of the screen cylinder is sleeved on the outer wall of the sliding rod.

[0014] Both ends of the inner wall of the screen cylinder are fixedly connected to umbrella-shaped frames that are rotatably mounted on the inner wall of the water collection channel.

[0015] The filter layer consists of, from top to bottom, a silica gel perforated plate, a pebble layer, a coarse sand layer, a fine sand layer, a sponge layer, and a lower silica gel perforated plate.

[0016] Compared with the prior art, the beneficial effects of this utility model are: the water collection device for irrigating garden plants:

[0017] 1. After the motor is connected to the power supply through the wire, the output shaft of the motor drives the rotating shaft to rotate, which in turn drives the umbrella-shaped frame to rotate. This causes the screen cylinder to rotate continuously above the inner wall of the water accumulation channel. The continuous rotation of the screen cylinder ensures that the mud and water pass evenly through the screen holes, avoiding the filtration of mud and water in the same position and improving the filtration effect.

[0018] Second, after the mud and water are filtered, the filtered water is introduced into the pipeline through the return water pipe by a water pump. The water source is sprayed into the screen cylinder by the nozzles on the pipeline. The continuously rotating screen cylinder cleans the screen holes in turn, ensuring the filtration effect of the screen cylinder.

[0019] Third, the water filtered by the sieve cylinder is further treated through the filter layer. A water purification agent channel extending to the outside is fixedly installed at the bottom of the outer wall of the water collection channel. The water purification agent is put into the inside of the water collection channel through this channel. The water purification agent is mixed and stirred by the linkage stirring component, which improves the water quality treatment effect.

[0020] Fourth, when necessary, the scraper scrapes off the impurities on the screen cylinder, and at the same time, the spray nozzles clean the screen holes on the screen cylinder. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the structure of a water collection device for irrigating garden plants according to the present invention;

[0022] Figure 2 This is an exploded view of the structure of a water collection device for irrigating garden plants according to the present invention.

[0023] Figure 3 This is a cross-sectional view of the water collection channel portion of the present invention. Figure I ;

[0024] Figure 4 This is a cross-sectional view of the water collection channel portion of the present invention. Figure II ;

[0025] in, Figures 1 to 4 The correspondence between the reference numerals and component names in the attached drawings is as follows: 1-Water accumulation channel, 2-Screen cylinder, 3-Pipe, 4-Sprayer head, 5-Filter layer, 6-Return water pipe, 7-Water pump, 8-Baffle plate, 9-Scraper, 10-Protective cover, 11-Sealing cover, 12-Slide rod, 13-Water inlet pipe, 14-Sleeve, 15-Agitator shaft, 16-Transmission component, 17-Linkage component, 18-Limiting frame, 19-Agitator blade, 20-Umbrella frame. Detailed Implementation

[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0027] The following are specific implementation cases and appendices. Figure 1-4The present invention will be further described below, but the present invention is not limited to these embodiments.

[0028] A water collection device for irrigating garden plants includes a water collection channel 1. A screen cylinder 2 is rotatably installed inside the water collection channel 1. The water collection channel 1 is located in the irrigation drop area, so that the water after irrigation falls into the interior of the water collection channel 1 and is collected by the water collection channel 1. The water collection channel 1 has a rectangular chamber structure, and the top of both sides of the inner wall of the water collection channel 1 has a slope, so that the water enters the interior of the water collection channel 1 along the slope. A partition plate 8 is fixedly attached to the top of the inner wall of the water collection channel 1 at an incline, adhering to the outer wall of the screen cylinder 2. One side of the inclined partition plate 8 is attached to the outer wall of the screen cylinder 2, and the other side of the partition plate 8 is fixed to the inner wall of the water collection channel 1. The screen cylinder 2 is exposed to the outside through the two partition plates 8 on both sides, so that the mud and water fall directly onto the screen cylinder 2 through the guide of the partition plates 8. A pipe 3 is embedded in the inner cavity of the screen cylinder 2 and fixed to the inner wall of the water collection channel 1. A return water pipe is provided on the outer wall of the water collection channel 1 to supply water to the pipe 3. A nozzle 4 is provided on the outer wall of the pipe 3 to spray water onto the inner wall of the screen cylinder 2. The pipe 3 with the nozzle 4 is located inside the screen cylinder 2, and the nozzle 4 is facing upward, so that the nozzle 4 sprays water onto the part of the screen cylinder 2 between the two partition plates 8. The two ends of the pipe 3 extend out of the outside of the water collection channel 1, and the pipe 3 is fixed in the through hole. Water is transported into the pipe 3 through the return water pipe, so that water is sprayed onto the screen cylinder 2. Protective covers 10 are installed on the outer wall of the water collection channel at both the return water pipe and the location of the water pump 7. These protective covers protect this component. After the muddy water is filtered, the filtered water is introduced into the pipe 3 through the return water pipe by the water pump 7. Water is then sprayed onto the screen cylinder 2 by nozzles 4 on the pipe 3. The continuously rotating screen cylinder 2 cleans the screen holes sequentially, ensuring the filtration effect of the screen cylinder 2. A linkage stirring assembly for mixing the water purification agent is installed at the bottom of the inner cavity of the water collection channel 1, and a filter layer 5 is installed between the linkage stirring assembly and the screen cylinder 2. The water filtered by the screen cylinder 2 is further treated by the filter layer 5. A water purification agent channel extending outwards is fixedly installed at the bottom of the outer wall of the water collection channel 1. The water purification agent is introduced into the water collection channel 1 through this channel, and the linkage stirring assembly mixes and stirs the water purification agent, improving the water treatment effect.

[0029] The return water pipeline includes a water pump 7 fixed to the outer wall of the water collection ditch 1. The inlet port of the water pump 7 is embedded inside the water collection ditch 1, and the outlet port of the water pump 7 is connected to the pipe 3 through a return water pipe 6. The water pump 7 is connected to a power source via a wire. The water pump 7 draws water from the water collection ditch 1 into the return water pipe 6, and then into the pipe 3, allowing the irrigation water to be reused and improving the utilization rate of the water.

[0030] It is worth noting that the linkage mixing assembly includes a stirring shaft 15 that is sequentially rotated on the inner wall of the water collection channel 1, stirring blades 19 that are sequentially arranged on the outer wall of the stirring shaft 15, and a linkage component that drives all stirring shafts 15 to rotate simultaneously on the outer wall of the water collection channel 1. The linkage component causes all stirring shafts 15 to drive the stirring blades 19 to rotate, so that the water purification agent and water in each area are fully mixed.

[0031] In addition, the linkage components include an extension shaft fixed to the end of the stirring shaft 15, extending beyond the outside of the water collection channel 1. A transmission component 16 is sleeved on the outer wall of the extension shaft, and linkage components 17 are simultaneously engaged on the outer walls of all transmission components 16. The extension shaft is located outside the water collection channel 1. The transmission component 16 is a sprocket, and the linkage component 17 is a chain. A sealing cover 11 covers the outside of the linkage component 17 and the transmission component 16, and the sealing cover 11 is fixedly installed on the outer wall of the water collection channel 1 for protection. On the other side of the water collection channel 1, a motor is fixedly mounted by a cover. The motor's output shaft passes through the side wall of the water collection channel 1 and is fixedly connected to the end corresponding to the stirring shaft 15. The motor is connected to a power source via a wire, causing the motor's output shaft to drive one of the stirring shafts 15 to rotate. This stirring shaft 15, through the linkage component 17 on the outer wall, drives the remaining transmission components 16 to rotate, resulting in synchronous rotation of all stirring shafts 15. This causes all stirring shafts 15 to drive the stirring blades 19 to rotate inside the water collection channel 1, thereby improving the mixing effect of the water purification agent.

[0032] In addition, the side wall of the water accumulation channel 1 is symmetrically fixed with limiting frames 18 that fit against the outer wall of the linkage 17. The linkage 17 is aligned and limited by the limiting frames 18 on the upper and lower sides, so that the linkage 17 moves cyclically between the two limiting frames 18, preventing the linkage 17 from disengaging from the transmission component 16.

[0033] Furthermore, a water inlet pipe 13, which is connected to the irrigation pipeline, is embedded in the bottom of the outer wall of the water collection ditch 1. The water inlet pipe 13 is fixed to the outer wall of the water collection ditch 1 by a sleeve 14. One end of the water inlet pipe 13 is fixedly embedded in the bottom of the outer wall of the water collection ditch 1, and the other end of the water inlet pipe 13 is connected to the irrigation pipeline in the garden through pipeline laying, thereby circulating irrigation in the garden.

[0034] A sliding rod 12 is fixed to the inner wall of the water collection channel 1 above the screen cylinder 2. A scraper 9, which fits against the outer wall of the screen cylinder 2, is sleeved on the outer wall of the sliding rod 12. Two parallel sliding rods 12 are fixedly installed on the upper part of the inner walls on both sides of the water collection channel 1. The shape of the scraper 9 corresponds to the partition 8 and the circular outer wall of the screen cylinder 2, so that the scraper 9 slides against the outer wall of the screen cylinder 2 and the top of the outer wall of the partition 8. The two sliding rods 12 ensure the stability of the scraper 9 during its movement. When needed, the scraper 9 scrapes off impurities on the screen cylinder 2, and at the same time, it works in conjunction with the spraying of the nozzle 4 to clean the screen holes on the screen cylinder 2.

[0035] Both ends of the inner wall of the screen cylinder 2 are fixedly connected to umbrella-shaped frames 20 that are rotatably mounted on the inner wall of the water collection channel 1. A motor is fixed to the outer wall of the water collection channel 1 via a frame. The output shaft of the motor passes through the side wall of the water collection channel 1 and is connected to the rotating umbrella-shaped frames 20. The two umbrella-shaped frames 20 are respectively fixedly embedded in the inner wall at the openings at both ends of the screen cylinder 2, ensuring that both ends of the screen cylinder 2 slide against the inner walls of the water collection channel 1. The umbrella-shaped frames 20 rotate on the inner wall of the water collection channel 1 via rotating shafts. After the motor is connected to a power source via wires, the output shaft of the motor drives the rotating shaft to rotate, which in turn drives the umbrella-shaped frames 20 to rotate. This causes the screen cylinder 2 to continuously rotate above the inner wall of the water collection channel 1. The continuous rotation of the screen cylinder 2 ensures that the mud and water pass evenly through the screen holes, preventing filtration at the same location and improving the filtration efficiency.

[0036] The filter layer 5, from top to bottom, consists of a silica gel perforated plate, a pebble layer, a coarse sand layer, a fine sand layer, a sponge layer, and a lower silica gel perforated plate. This multi-layered filtration further enhances the water filtration effect, thereby improving water quality and preventing damage to garden plants.

[0037] In the description of this utility model, it should be understood that the terms "coaxial", "bottom", "one end", "top", "middle", "other end", "upper", "side", "top", "inner", "front", "center", "both ends", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0038] Furthermore, the terms "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first," "second," "third," or "fourth" may explicitly or implicitly include at least one of those features.

[0039] In this utility model, unless otherwise explicitly specified and limited, the terms "installation", "setting", "connection", "fixing", "screw connection", etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal connection of two components or the interaction between two components. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0040] 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.

Claims

1. A water collection device for irrigating garden plants, comprising a water collection channel (1), characterized in that: The inner cavity of the water collection channel (1) is rotatably equipped with a screen cylinder (2). The top of the inner wall of the water collection channel (1) is inclined and fixedly connected with a partition plate (8) that fits against the outer wall of the screen cylinder (2). The inner cavity of the screen cylinder (2) is embedded with a pipe (3) that is fixedly connected to the inner wall of the water collection channel (1). The outer wall of the water collection channel (1) is equipped with a return water pipe that supplies water to the pipe (3). The outer wall of the pipe (3) is equipped with a nozzle (4) that sprays water onto the inner wall of the screen cylinder (2). The bottom of the inner cavity of the water collection channel (1) is equipped with a linkage stirring assembly for mixing water purification agent. A filter layer (5) is provided between the linkage stirring assembly and the screen cylinder (2).

2. The water collection device for irrigating garden plants according to claim 1, characterized in that: The return water pipeline includes a water pump (7) fixed to the outer wall of the water collection channel (1), the water inlet of the water pump (7) is embedded in the interior of the water collection channel (1), and the water outlet of the water pump (7) is connected to the pipeline (3) through the return water pipe (6).

3. The water collection device for irrigating garden plants according to claim 1, characterized in that: The linkage stirring assembly includes stirring shafts (15) that are sequentially rotated on the inner wall of the water collection channel (1), stirring blades (19) are sequentially arranged on the outer wall of the stirring shafts (15), and a linkage component that drives all stirring shafts (15) to rotate simultaneously is provided on the outer wall of the water collection channel (1).

4. A water collection device for irrigating garden plants according to claim 3, characterized in that: The linkage component includes an extension shaft fixed to the end of the stirring shaft (15), the extension shaft extends out of the outside of the water accumulation channel (1), the outer wall of the extension shaft is sleeved with a transmission component (16), and the outer walls of all the transmission components (16) are simultaneously engaged with linkage components (17).

5. A water collection device for irrigating garden plants according to claim 4, characterized in that: The sidewall of the water collection channel (1) is symmetrically fixed with a limiting frame (18) that fits against the outer wall of the linkage (17).

6. A water collection device for irrigating garden plants according to claim 1, characterized in that: The bottom of the outer wall of the drainage ditch (1) is fitted with a water pipe (13) that is connected to the irrigation pipe.

7. A water collection device for irrigating garden plants according to claim 1, characterized in that: A slide rod (12) is fixed to the inner wall of the water collection channel (1) above the screen cylinder (2), and a scraper (9) that fits against the outer wall of the screen cylinder (2) is sleeved on the outer wall of the slide rod (12).

8. A water collection device for irrigating garden plants according to claim 1, characterized in that: Both ends of the inner wall of the screen cylinder (2) are fixedly connected to umbrella-shaped frames (20) that are rotatably installed on the inner wall of the water collection channel (1).

9. A water collection device for irrigating garden plants according to claim 1, characterized in that: The filter layer (5) consists of, from top to bottom, a silica gel perforated plate, a pebble layer, a coarse sand layer, a fine sand layer, a sponge layer, and a lower silica gel perforated plate.