A park green land water storage irrigation system based on a resilient city construction

CN224598816UActive Publication Date: 2026-08-07NANJING NO 2 CONSTR DESIGNING INST CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NANJING NO 2 CONSTR DESIGNING INST CO LTD
Filing Date
2025-08-04
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0005]针对现有技术的不足,本申请提供了一种基于韧性城市建设的公园绿地储水灌溉系统,克服了现有技术的不足,旨在解决现有技术中的以上装置在使用时,需要放置于地面的上方,在使用时,只能对雨水进行收集,对于地面的降水不能进行收集,且在降水较大的情况下不能对多余的降水进行收集和排出的问题

Benefits of technology

1.通过设置基地层,在使用时,位于地面内部的过滤箱会对落在基地层的上方的水进行收集,收集的水会在过滤网的过滤后顺着输出管直接进入集水仓的内部完成收集,在需要对植物进行灌溉时,设置的水泵会通过抽水管将集水仓内部的水排入灌溉管的内部通过设置的灌溉口对植物进行灌溉,在过滤箱内部设置的清理机构可以对过滤网的外部进行清理,在驱动电机的带动下清理刷在过滤网的外部进行移动,多余的灰尘会从连接槽进入收集架的内部,这样在使用时,可以对地面的降水进行收集,收集的雨水会被充分的过滤,且过滤完成后剩余的杂质会被自动的进行清理,无需工作人员进行手动的清理,过滤后的雨水会被重新用于灌溉,提升装置实用性。

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Abstract

The application discloses a park green land water storage irrigation system based on a resilient city construction and belongs to the technical field of green land water storage irrigation, which comprises a base layer, a filter box and a water collecting bin are arranged in the base layer, a filter screen is arranged in the filter box in a slanting manner, a connecting groove is formed in one side of the filter box, two groups of moving grooves are formed in the filter box, a threaded rod is arranged in each of the two groups of moving grooves, a cleaning mechanism is arranged above the filter screen, the cleaning mechanism comprises a cleaning frame, a cleaning brush is arranged below the cleaning frame, and a moving block is screw-connected to the outside of the two groups of moving grooves and arranged on the two sides of the cleaning frame.
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Description

Technical Field

[0001] This application relates to the field of green space water storage and irrigation technology, and in particular to a park green space water storage and irrigation system based on resilient urban construction. Background Technology

[0002] The park green space water storage and irrigation system is a comprehensive facility designed to efficiently collect, store, and utilize water resources to meet the irrigation needs of park green space plants. Rainwater or other usable water resources are collected by the collection module, impurities are removed by the filtration facility, and then flow into the storage module for storage. When the irrigation module is activated, water is transported from the storage module to various irrigation devices through the irrigation pipeline network, ultimately achieving precise irrigation of park green space plants.

[0003] The published patent document CN220458169U discloses a water storage and irrigation system for parks and green spaces based on resilient urban construction. This system relates to the technical field of resilient urban park and green space water storage and irrigation systems. It includes a collection box with a collection funnel fixedly connected to its upper surface. A handle is fixedly connected to the outer end of a pull rod, and a movable plate is fixedly connected to the inner end of the pull rod. A scraper is provided on the lower surface of the movable plate. A filter plate is fixedly connected to the surface of the collection box. A controller is installed on the outer surface of the collection box, and a water level sensor is installed on the inner surface of the collection box. The inlet of a first water pump is located inside the collection box, and an irrigation device is installed on the surface of a first water pipe. This invention achieves the purpose of quickly cleaning debris from the upper surface of the filter plate through the arrangement of the pull rod, handle, movable plate, spring, and scraper. It also achieves the purpose of automatically utilizing the water in the collection box through the arrangement of the controller, water level sensor, first water pump, second water pipe, and second water pump.

[0004] When using the above devices, they need to be placed above the ground. They can only collect rainwater and cannot collect groundwater. In cases of heavy rainfall, they cannot collect or drain excess rainwater. Utility Model Content

[0005] To address the shortcomings of existing technologies, this application provides a park and green space water storage and irrigation system based on resilient urban construction, which overcomes the deficiencies of existing technologies and aims to solve the problems of existing devices that need to be placed above the ground, can only collect rainwater, cannot collect ground precipitation, and cannot collect and drain excess precipitation in the event of heavy rainfall.

[0006] To achieve the above objectives, this application provides the following technical solution: a park green space water storage and irrigation system based on resilient city construction, comprising a base layer, wherein a filter box and a water collection tank are arranged inside the base layer, a filter screen is inclinedly arranged inside the filter box, a connecting groove is opened on one side of the filter box, two sets of moving grooves are opened inside the filter box, and threaded rods are arranged inside the two sets of moving grooves, a cleaning mechanism is arranged above the filter screen, the cleaning mechanism includes a cleaning frame, a cleaning brush is arranged below the cleaning frame, and moving blocks threaded to the outside of the two sets of moving grooves are arranged on both sides of the cleaning frame, and a drive motor is arranged through the filter box at the other end of the two sets of threaded rods, the bottom of the filter box is arranged with an output pipe, the other end of the output pipe is interconnected with the inside of the water collection tank, and an irrigation mechanism is arranged at the top of the water collection tank, the irrigation mechanism includes a water pump, a pumping pipe connected to the inside of the water collection tank is arranged at the input end of the water pump, multiple sets of irrigation pipes are arranged at the output end of the water pump, and multiple sets of irrigation ports are arranged outside the irrigation pipes.

[0007] By adopting the above technical solution and setting up a base layer, the filter box located inside the ground collects water falling above the base layer during use. The collected water is filtered by the filter screen and flows directly into the water collection chamber through the output pipe. When it is necessary to irrigate the plants, the water pump discharges the water from the water collection chamber into the irrigation pipe through the irrigation port. The cleaning mechanism inside the filter box can clean the outside of the filter screen. Driven by the motor, the cleaning brush moves on the outside of the filter screen, and excess dust enters the collection rack through the connecting groove. In this way, rainwater can be collected during use. The collected rainwater is fully filtered, and the remaining impurities are automatically cleaned after filtration, eliminating the need for manual cleaning by staff. The filtered rainwater can be reused for irrigation, improving the practicality of the device.

[0008] As a preferred technical solution of this application, a collection rack is provided on one side of the connecting groove, a collection groove is provided at the bottom of the collection rack, a connecting pipe communicating with the connecting groove is provided on one side of the collection groove, and the collection rack is slidably connected between the base layer and the filter box.

[0009] By adopting the above technical solution and setting up a collection rack, impurities can be collected after cleaning during use. After collection, they can be quickly removed, making cleaning more convenient and improving the practicality of the device.

[0010] As a preferred technical solution of this application, a top cover is provided above the filter box, a top plate is provided above the top cover, and multiple sets of water flow holes are provided on the top of the top plate.

[0011] By adopting the above technical solution and setting a top cover, the top plate can perform preliminary filtration of impurities on the top, including leaves, during use, effectively preventing clogging and improving the practicality of the device.

[0012] As a preferred technical solution of this application, a connecting pipe is provided at the bottom of the water collection tank, and a drain pipe connected to the connecting pipe is provided inside the base layer.

[0013] By adopting the above technical solution and setting up a connecting pipe, excess water inside the water collection tank can be discharged during use, forming a rapid drainage channel between the water collection tank and the drain pipe, which can effectively improve drainage efficiency.

[0014] As a preferred technical solution of this application, a water level sensor is installed inside the water collection tank, and the water level sensor is electrically connected to the irrigation mechanism.

[0015] By adopting the above technical solution and installing a water level sensor, the internal water level of the water collection tank can be detected during use, making it more convenient for staff to use.

[0016] As a preferred technical solution of this application, the top of the collection rack is provided with a handle, which is located on one side of the top cover.

[0017] By adopting the above technical solution and by setting a handle, it is more convenient to remove the collection rack from the inside of the base layer during use, thus improving the practicality of the device.

[0018] As a preferred technical solution of this application, a plurality of connecting bolts are provided on one side of the cleaning frame, and the plurality of connecting bolts pass through the cleaning frame and the cleaning brush for threaded connection.

[0019] By adopting the above technical solution and setting connecting bolts, the cleaning brush can be installed and replaced during use, which facilitates maintenance by staff and improves the practicality of the device.

[0020] As a preferred embodiment of this application, the top surface of the top plate is a tapered slope, and the slope of the connecting pipe matches the slope of the filter screen.

[0021] By adopting the above technical solution, the top of the top plate is set as a slope, which allows rainwater to quickly enter the interior of the filter box, while debris will automatically slide off, improving the practicality of the device.

[0022] The beneficial effects of this application are: 1. By setting up a base layer, the filter box located inside the ground collects water falling above the base layer during use. The collected water is filtered by the filter screen and flows directly into the water collection chamber through the output pipe. When it is necessary to irrigate the plants, the water pump discharges the water from the water collection chamber into the irrigation pipe through the irrigation port. The cleaning mechanism inside the filter box can clean the outside of the filter screen. Driven by the motor, the cleaning brush moves on the outside of the filter screen, and excess dust will enter the collection rack through the connecting groove. In this way, rainwater can be collected from the ground. The collected rainwater is fully filtered, and the remaining impurities are automatically cleaned after filtration, eliminating the need for manual cleaning by personnel. The filtered rainwater can be reused for irrigation, improving the practicality of the device.

[0023] 2. By setting up a collection rack, impurities can be collected after cleaning during use. After collection, they can be quickly removed, making cleaning more convenient and improving the practicality of the device. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the overall structure of this application; Figure 2 This is a schematic diagram of the internal structure of this application; Figure 3 This is a schematic diagram of the filter box structure in this application; Figure 4 This is a schematic diagram of the cleaning organization structure in this application.

[0025] In the diagram: 1. Base layer; 2. Filter box; 201. Filter screen; 202. Moving trough; 203. Connecting trough; 204. Drive motor; 205. Threaded rod; 206. Output pipe; 3. Top cover; 301. Top plate; 302. Water outlet; 4. Water collection tank; 401. Water level sensor; 402. Connecting pipe; 5. Irrigation mechanism; 501. Water pump; 502. Irrigation pipe; 503. Irrigation outlet; 505. Pumping pipe; 6. Collection rack; 601. Collection trough; 602. Connecting pipe; 603. Handle; 7. Cleaning mechanism; 701. Cleaning rack; 702. Cleaning brush; 703. Moving block; 704. Connecting bolt; 8. Drain pipe. Detailed Implementation

[0026] The technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.

[0027] Reference Figure 1-4 A water storage and irrigation system for park green spaces based on resilient urban construction includes a base layer 1. Inside the base layer 1 are a filter box 2 and a water collection tank 4. A filter screen 201 is inclinedly installed inside the filter box 2. A connecting groove 203 is provided on one side of the filter box 2. Two sets of movable grooves 202 are provided inside the filter box 2. Each set of movable grooves 202 has a threaded rod 205 inside. A cleaning mechanism 7 is provided above the filter screen 201. The cleaning mechanism 7 includes a cleaning frame 701. A cleaning brush 702 is provided below the cleaning frame 701. Movable blocks 703, threadedly connected to the outside of the two sets of movable grooves 202, are provided on both sides of the cleaning frame 701. The other end of the threaded rod 205 passes through the filter box 2 and is equipped with a drive motor 204. The bottom of the filter box 2 is equipped with an output pipe 206, and the other end of the output pipe 206 is connected to the interior of the water collection tank 4. The top of the water collection tank 4 is equipped with an irrigation mechanism 5, which includes a water pump 501. The input end of the water pump 501 is equipped with a water pumping pipe 505 connected to the interior of the water collection tank 4. The output end of the water pump 501 is equipped with multiple sets of irrigation pipes 502, and the outside of the irrigation pipes 502 is equipped with multiple sets of irrigation ports 503. The top of the filter box 2 is equipped with a top cover 3, and the top of the top cover 3 is equipped with a top plate 301. Multiple sets of water flow holes 302 are opened on the top of the top plate 301.

[0028] By setting up a base layer 1, during use, the filter box 2 located inside the ground collects water falling above the base layer 1. The collected water is filtered by the filter screen 201 and flows directly into the water collection chamber 4 through the output pipe 206. When irrigation is needed, the water pump 501 discharges water from the water collection chamber 4 into the irrigation pipe 502 through the pumping pipe 505, irrigating the plants through the irrigation port 503. The cleaning mechanism 7 installed inside the filter box 2 can clean the outside of the filter screen 201, driven by the drive motor 204. The cleaning brush 702 moves outside the filter screen 201, and excess dust enters the collection rack 6 through the connecting groove 203. In this way, rainwater can be collected from the ground during use. The collected rainwater is fully filtered, and the remaining impurities are automatically cleaned after filtration, eliminating the need for manual cleaning by staff. The filtered rainwater can be reused for irrigation, improving the practicality of the device. By setting the top cover 3, the top plate 301 can perform preliminary filtration of impurities on the top, including leaves, during use, effectively preventing clogging and improving the practicality of the device.

[0029] Reference Figure 1-4A collection rack 6 is provided on one side of the connecting groove 203. A collection groove 601 is opened at the bottom of the collection rack 6. A connecting pipe 602 connected to the connecting groove 203 is provided on one side of the collection groove 601. The collection rack 6 is slidably connected between the base layer 1 and the filter box 2. A connecting pipe 402 is provided at the bottom of the water collection tank 4. A drain pipe 8 connected to the connecting pipe 402 is provided inside the base layer 1. A handle 603 is provided on the top of the collection rack 6. The handle 603 is located on one side of the top cover 3. By setting up the collection rack 6, impurities after cleaning can be collected during use. After collection, they can be quickly removed, making cleaning more convenient and improving the practicality of the device. By setting up the connecting pipe 402, excess water inside the water collection tank 4 can be drained during use, forming a fast drainage channel between the water collection tank 4 and the drain pipe 8, which can effectively improve drainage efficiency. By setting up the handle 603, it is more convenient to remove the collection rack 6 from the inside of the base layer 1 during use, improving the practicality of the device.

[0030] Reference Figure 1-4 The water collection chamber 4 is equipped with a water level sensor 401, which is electrically connected to the irrigation mechanism 5. The water level sensor 401 allows for monitoring of the water level inside the collection chamber 4, making it more convenient for operators. Multiple sets of connecting bolts 704 are provided on one side of the cleaning frame 701, threadedly connecting the cleaning frame 701 to the cleaning brush 702. These connecting bolts 704 allow for easy installation and replacement of the cleaning brush 702, facilitating maintenance and improving the device's practicality. The top surface of the top plate 301 is a tapered slope, and the slope of the connecting pipe 602 matches the slope of the filter screen 201. The slope of the top plate 301 allows rainwater to quickly enter the filter box 2, while debris automatically slides off, further enhancing the device's practicality.

[0031] Working principle: By setting up a base layer 1, during use, the filter box 2 located inside the ground collects water falling above the base layer 1. The collected water is filtered by the filter screen 201 and flows directly into the water collection chamber 4 through the output pipe 206. When irrigation is needed, the water pump 501 discharges water from the water collection chamber 4 into the irrigation pipe 502 through the pumping pipe 505, irrigating the plants through the irrigation port 503. The cleaning mechanism 7 inside the filter box 2 can clean the outside of the filter screen 201. Driven by the drive motor 204... The cleaning brush 702 moves outside the filter screen 201, and excess dust enters the collection rack 6 through the connecting groove 203. In this way, rainwater can be collected from the ground during use. The collected rainwater is fully filtered, and the remaining impurities are automatically cleaned after filtration, eliminating the need for manual cleaning by staff. The filtered rainwater can be reused for irrigation, improving the practicality of the device. By setting up the collection rack 6, impurities can be collected during use, and they can be quickly removed after collection, making cleaning more convenient and improving the practicality of the device. Among them, by setting the top cover 3, the top plate 301 can perform preliminary filtration of impurities on the top, including leaves, during use, effectively preventing blockage and improving the practicality of the device. By setting the connecting pipe 402, excess water inside the water collection tank 4 can be discharged during use, forming a fast drainage channel between the water collection tank 4 and the drain pipe 8, which can effectively improve drainage efficiency. Meanwhile, by setting up a water level sensor 401, the internal water level of the water collection tank 4 can be detected during use, making it more convenient for staff to use. In addition, by setting a handle 603, it is more convenient to remove the collection rack 6 from the inside of the base layer 1 during use, thus improving the practicality of the device; by setting a connecting bolt 704, the cleaning brush 702 can be installed and replaced during use, which is convenient for maintenance by staff and improves the practicality of the device; by setting the top of the top plate 301 to be sloping, rainwater can quickly enter the interior of the filter box 2, while debris will automatically slide off, thus improving the practicality of the device.

[0032] The above are merely preferred embodiments of this application and are not intended to limit this application. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A park green space water storage and irrigation system based on resilient urban construction, comprising a base layer (1), characterized in that, The base layer (1) is equipped with a filter box (2) and a water collection tank (4). The filter box (2) is equipped with a filter screen (201) at an angle. A connecting groove (203) is provided on one side of the filter box (2). The filter box (2) is equipped with two sets of moving grooves (202). A threaded rod (205) is provided inside each of the two sets of moving grooves (202). A cleaning mechanism (7) is provided above the filter screen (201). The cleaning mechanism (7) includes a cleaning frame (701). A cleaning brush (702) is provided below the cleaning frame (701). Moving rods threaded to the outside of the two sets of moving grooves (202) are provided on both sides of the cleaning frame (701). The block (703), the other end of the two sets of threaded rods (205) are both through the filter box (2) and a drive motor (204) is provided. The bottom of the filter box (2) is provided with an output pipe (206). The other end of the output pipe (206) is connected to the interior of the water collection tank (4). The top of the water collection tank (4) is provided with an irrigation mechanism (5). The irrigation mechanism (5) includes a water pump (501). The input end of the water pump (501) is provided with a water pumping pipe (505) connected to the interior of the water collection tank (4). The output end of the water pump (501) is provided with multiple sets of irrigation pipes (502). The outside of the irrigation pipes (502) is provided with multiple sets of irrigation ports (503).

2. The park green space water storage and irrigation system based on resilient urban construction according to claim 1, characterized in that, A collection rack (6) is provided on one side of the connecting groove (203), and a collection groove (601) is provided at the bottom of the collection rack (6). A connecting pipe (602) connected to the connecting groove (203) is provided on one side of the collection groove (601). The collection rack (6) is slidably connected between the base layer (1) and the filter box (2).

3. A park green space water storage and irrigation system based on resilient urban construction according to claim 2, characterized in that, The filter box (2) is provided with a top cover (3) above it, and a top plate (301) is provided above the top cover (3). Multiple sets of water flow holes (302) are opened on the top of the top plate (301).

4. A park green space water storage and irrigation system based on resilient urban construction according to claim 1, characterized in that, The bottom of the water collection tank (4) is provided with a connecting pipe (402), and the interior of the base layer (1) is provided with a drain pipe (8) connected to the connecting pipe (402).

5. A park green space water storage and irrigation system based on resilient urban construction according to claim 1, characterized in that, The water collection tank (4) is equipped with a water level sensor (401), which is electrically connected to the irrigation mechanism (5).

6. A park green space water storage and irrigation system based on resilient urban construction according to claim 3, characterized in that, The top of the collection rack (6) is provided with a handle (603), which is located on one side of the top cover (3).

7. A park green space water storage and irrigation system based on resilient urban construction according to claim 1, characterized in that, The cleaning frame (701) is provided with multiple sets of connecting bolts (704) on one side, and the multiple sets of connecting bolts (704) are threaded through the cleaning frame (701) and the cleaning brush (702).

8. A park green space water storage and irrigation system based on resilient urban construction according to claim 3, characterized in that, The top surface of the top plate (301) is a tapered slope, and the slope of the connecting pipe (602) matches the slope of the filter screen (201).

Citation Information

Patent Citations

  • Park green land water storage irrigation system based on tough city construction

    CN220458169U