Self-circulating sponge city green belt structure
By installing automatic sprinklers in the green belts and using rainwater storage and timing control mechanisms to spray water regularly, the problem of irregular manual watering of the green belts was solved, and the stable growth of green plants and cost reduction were achieved.
Patent Information
- Application Number
- CN202422147288.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-02
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-09-02
AI Technical Summary
Due to the huge road network system, the existing urban road green belts are not watered regularly, which affects the growth life of green plants and increases the cost of greening.
An automatic sprinkler device is set up in the green belt, including an annular water collection tank, an annular water storage tank, a timing control mechanism and a sprinkler mechanism. Rainwater is stored and regularly sprayed for water replenishment and cleaning through timing control.
Regular watering and surface cleaning of green plants are achieved, ensuring the normal growth of green plants, reducing greening costs and extending the life of green plants.
Smart Images

Figure CN223349253U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of construction, in particular to a self-circulating sponge city green belt structure. Background Art
[0002] A sponge city is a city that, like a sponge, exhibits excellent "elasticity" in adapting to environmental changes and responding to natural disasters. It absorbs, stores, infiltrates, and purifies water during rain, releasing it for use when needed. Sponge city construction should adhere to the principle of prioritizing ecology, combining natural approaches with artificial measures. While ensuring safe drainage and flood control, it should maximize the accumulation, infiltration, and purification of rainwater within urban areas, promoting the utilization of rainwater resources and protecting the ecological environment.
[0003] Existing urban road green belts require regular watering to ensure the normal growth of green plants and to clean the dust on the surface of green plants. However, due to the large road network system, manual watering of green belts cannot be carried out regularly and on time, which leads to a decrease in the working life of green plants in the green belts and an increase in greening costs. Improvement is urgently needed. Utility Model Content
[0004] In order to solve the deficiencies of the above-mentioned technologies, the utility model provides a self-circulating sponge city green belt structure, comprising a green belt body and a curbstone, wherein the curbstone is arranged on the green belt body, and an automatic sprinkler device is provided on the curbstone, and the automatic sprinkler device comprises an annular water collecting trough, an annular water storage trough, a timing control mechanism and a sprinkler mechanism, a circle of mounting grooves matching the annular water storage trough is provided on the outer peripheral surface of the curbstone, the annular water storage trough is arranged in the mounting groove, an opening is provided on the annular water collecting trough and a plurality of cover plates with filter screens are provided on the openings, the plurality of cover plates are detachably connected to the annular water collecting trough, the annular water collecting trough is fixedly arranged on the annular water storage trough, and a plurality of water inlets that are interconnected are provided on the annular water collecting trough and the annular water storage trough, and the sprinkler mechanism is arranged in the green belt body and connected to the annular water storage trough through the timing control mechanism.
[0005] By adopting the above technical solution, an automatic sprinkler device including an annular water collecting trough, an annular water storage trough, a timing control mechanism and a sprinkler mechanism is set on the curb. Rainwater can fall into the annular water collecting trough and then enter the annular water storage trough through the water inlet for storage. The sprinkler mechanism is then controlled by the timing control mechanism to spray water regularly, and the green plants in the green belt are regularly replenished with water and the surface is cleaned to ensure the normal growth of the green plants, and thus ensure that the green plants can stably carry out greening work within their growth life.
[0006] Further configuration of the utility model: the sprinkler mechanism includes a water pump, a water pipe, a water spray pipe and a high-pressure nozzle. The curb and the annular water storage tank are both provided with installation openings for installing the water pipe. The water pipe passes through the installation openings and is connected to the interior of the annular water storage tank. The water pump is arranged on the water pipe, one end of the water pipe is connected to the water spray pipe, and the high-pressure nozzle is arranged on the water spray pipe.
[0007] According to the above technical solution, since the sprinkler mechanism includes a water pump, a water pipe, a water spray pipe and a high-pressure nozzle, the curb and the annular water storage tank are provided with installation ports for installing the water pipe. The water pipe passes through the installation port and is connected to the interior of the annular water storage tank. The water pump is arranged on the water pipe, one end of the water pipe is connected to the water spray pipe, and the high-pressure nozzle is arranged on the water spray pipe. The water in the annular water storage tank is pumped out by the water pump and enters the water spray pipe along the water pipe. The water spray pipe is arranged at the center of the green belt, and the entire green belt is sprinkled with water by the high-pressure nozzle.
[0008] The present invention is further provided with an L-shaped water filter plate at a position above the water inlets in the annular water collecting trough.
[0009] By adopting the above technical solution, since an L-shaped water filter plate is provided at a position above the water inlets in the annular water collecting trough, debris in the water can be effectively filtered out, thus avoiding clogging of the water pipe to the greatest extent.
[0010] The utility model is further configured as follows: a protective baffle is provided at the outer edge of the curb for protecting the annular water collecting trough; the protective baffle includes a fixed end and a movable block; the movable block is detachably connected to the fixed end; a sewage outlet is provided at a position corresponding to the movable block at the bottom of the annular water collecting trough and a piston is provided on the sewage outlet.
[0011] By adopting the above technical solution, a protective baffle is provided at the outer edge of the curb for protecting the annular water collection trough, and the protective baffle includes a fixed end and a movable block. The movable block is detachably connected to the fixed end. A sewage outlet is provided at the bottom of the annular water collection trough corresponding to the movable block, and a piston is provided on the sewage outlet. This can prevent the annular water collection trough from being accidentally crushed by vehicles. When the annular water collection trough needs to be cleaned, the movable block can be removed, and the piston of the sewage outlet can be removed to allow the cleaned sewage to flow out of the sewage outlet. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Attachment Figure 1 This is a structural schematic diagram of a self-circulating sponge city green belt structure according to a specific embodiment of the present utility model.
[0013] Attachment Figure 2This is a schematic diagram of the exploded structure of a self-circulating sponge city green belt structure according to a specific embodiment of the utility model.
[0014] Attachment Figure 3 This is a schematic diagram of the isometric cross-sectional structure of a self-circulating sponge city green belt structure according to a specific embodiment of the present utility model.
[0015] 1- green belt body, 2- curb, 3- automatic sprinkler, 4- annular water collection trough, 5- annular water storage trough, 6- timing control mechanism, 7- sprinkler mechanism, 8- cover plate, 9- water inlet, 10- water pump, 11- water pipe, 12- spray pipe, 13- high-pressure nozzle, 14- installation port, 15- L-shaped water filter plate, 16- protective edge, 17- fixed end, 18- movable block, 19- sewage outlet, 20- piston, 21- installation slot. DETAILED DESCRIPTION
[0016] like Figure 1-3 As shown, a self-circulating sponge city green belt structure includes a green belt body 1 and a curbstone 2, the curbstone is arranged on the green belt body, and an automatic sprinkler 3 is provided on the curbstone, and the automatic sprinkler includes an annular water collecting trough 4, an annular water storage trough 5, a timing control mechanism 6 and a sprinkler mechanism 7. A circle of mounting grooves 21 matching the annular water storage trough is opened on the outer peripheral surface of the curbstone, and the annular water storage trough is arranged in the mounting groove. An opening is provided on the annular water collecting trough and a plurality of cover plates 8 with filters are provided on the openings. The plurality of cover plates are detachably connected to the annular water collecting trough, and the annular water collecting trough is fixedly arranged on the annular water storage trough. The annular water collecting trough and the annular water storage trough are both provided with a plurality of water inlets 9 that are interconnected. The sprinkler mechanism is arranged in the green belt body and connected to the annular water storage trough through a timing control mechanism.
[0017] An automatic sprinkler device including an annular water collecting trough, an annular water storage trough, a timing control mechanism and a sprinkler mechanism is set on the curb. Rainwater can fall into the annular water collecting trough and then enter the annular water storage trough through the water inlet for storage. The sprinkler mechanism is then controlled by the timing control mechanism to spray water regularly, and the green plants in the green belt are regularly hydrated and the surface is cleaned to ensure the normal growth of the green plants, and thus ensure that the green plants can stably carry out greening work within their growth life.
[0018] The sprinkler mechanism includes a water pump 10, a water pipe 11, a water spray pipe 12 and a high-pressure nozzle 13. The curb and the annular water storage tank are both provided with installation ports 14 for installing the water pipe. The water pipe passes through the installation port and is connected to the inside of the annular water storage tank. The water pump is arranged on the water pipe, one end of the water pipe is connected to the water spray pipe, and the high-pressure nozzle is arranged on the water spray pipe.
[0019] Since the sprinkler mechanism includes a water pump, a water pipe, a water spray pipe and a high-pressure nozzle, the curb and the annular water tank are both provided with installation ports for the water pipe installation. The water pipe passes through the installation port and is connected to the interior of the annular water tank. The water pump is arranged on the water pipe, one end of the water pipe is connected to the water spray pipe, and the high-pressure nozzle is arranged on the water spray pipe. The water in the annular water tank is pumped out by the water pump and enters the water spray pipe along the water pipe. The water spray pipe is arranged at the center of the green belt, and the entire green belt is sprinkled with water through the high-pressure nozzle.
[0020] An L-shaped water filter plate 15 is provided in the annular water collecting trough at a position above the water inlets.
[0021] Since an L-shaped water filter plate is provided at a position above the water inlets in the annular water collecting trough, debris in the water can be effectively filtered out, thus avoiding clogging of the water pipe to the greatest extent.
[0022] A protective baffle 16 for protecting the annular water collecting trough is provided at the outer edge of the curbstone. The protective baffle includes a fixed end 17 and a movable block 18. The movable block is detachably connected to the fixed end. A sewage outlet 19 is provided at the bottom of the annular water collecting trough at a position corresponding to the movable block, and a piston 20 is provided on the sewage outlet.
[0023] Since a protective baffle is provided at the outer edge of the curb for protecting the annular water collection trough, the protective baffle includes a fixed end and a movable block, and the movable block is detachably connected to the fixed end. A sewage outlet is provided at the bottom of the annular water collection trough corresponding to the movable block, and a piston is provided on the sewage outlet, which can prevent the annular water collection trough from being accidentally crushed by vehicles. When the annular water collection trough needs to be cleaned, the movable block can be removed, and then the piston of the sewage outlet can be removed to allow the cleaned sewage to flow out of the sewage outlet.
Claims
1. A self-circulating sponge city green belt structure, comprising a green belt body and curbstones, wherein the curbstones are arranged on the green belt body, and characterized in that: The curbstone is provided with an automatic sprinkler device, which includes an annular water collecting trough, an annular water storage trough, a timing control mechanism and a sprinkler mechanism. A circle of mounting grooves matching the annular water storage trough is provided on the outer peripheral surface of the curbstone. The annular water storage trough is arranged in the mounting groove. An opening is provided on the annular water collecting trough and a plurality of cover plates with filter screens are provided on the openings. The plurality of cover plates are detachably connected to the annular water collecting trough. The annular water collecting trough is fixedly provided on the annular water storage trough. A plurality of water inlets that are interconnected are provided on the annular water collecting trough and the annular water storage trough. The sprinkler mechanism is provided in the green belt body and is connected to the annular water storage trough through a timing control mechanism.
2. A self-circulating sponge urban green belt structure according to claim 1, characterized in that: The sprinkler mechanism includes a water pump, a water pipe, a water spray pipe and a high-pressure nozzle. The curb and the annular water storage tank are both provided with installation openings for the water pipe. The water pipe passes through the installation openings and is connected to the interior of the annular water storage tank. The water pump is arranged on the water pipe, one end of the water pipe is connected to the water spray pipe, and the high-pressure nozzle is arranged on the water spray pipe.
3. A self-circulating sponge urban green belt structure according to claim 1, characterized in that: An L-shaped water filter plate is provided in the annular water collecting trough at a position above the water inlets.
4. A self-circulating sponge urban green belt structure according to claim 1, characterized in that: A protective baffle is provided at the outer edge of the curb for protecting the annular water collection trough. The protective baffle includes a fixed end and a movable block. The movable block is detachably connected to the fixed end. A sewage outlet is provided at the bottom of the annular water collection trough at a position corresponding to the movable block, and a piston is provided on the sewage outlet.