Municipal greening isolation belt
By setting up water storage tanks and water conveyance devices in the municipal greenbelts, the problem of frequent manual irrigation has been solved, automated water supply has been achieved, irrigation efficiency and uniformity have been improved, and the input of manpower and material resources has been reduced.
Patent Information
- Application Number
- CN202520202676.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-10
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-02-10
AI Technical Summary
The existing municipal greenbelts require frequent manual watering, which consumes a lot of manpower and resources and results in uneven watering, affecting plant growth.
Design a municipal greenbelt with a water storage tank and water conveyance device. Rainwater is stored in the underground water storage tank through drainage covers and water inlets, and water is supplied to the planting troughs regularly through the water conveyance device. Combined with a monitoring device to monitor the water volume, human intervention is reduced.
This approach reduces the input of manpower and resources, improves the uniformity and efficiency of irrigation, ensures long-term water supply for plants, and reduces traffic disruption.
Smart Images

Figure CN223813711U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of municipal afforestation, more specifically, it relates to a municipal afforestation isolation belt. BACKGROUND
[0002] The afforestation isolation belt is a kind of urban afforestation construction facility for separating road, effectively guarantees the driving safety of different lanes, and the afforestation isolation belt usually sets up planting area of certain width and length, different flowers, grasses and trees can be planted in the planting area to improve municipal afforestation construction, beautify road environment, absorb dust and reduce noise and relieve driver's visual fatigue.
[0003] But the green belt is exposed for a long time, so that the water in the planting area evaporates quickly, and it is necessary to frequently arrange staff to irrigate, and the irrigation vehicle is mostly used for irrigation during irrigation, which consumes a lot of manpower and material resources and is easy to cause traffic jam, and irrigation can only be carried out on one side of the isolation belt each time, which is not conducive to the growth of plants due to uneven irrigation of green plants and great impact force.
[0004] Therefore, a new scheme needs to be proposed to solve this problem. UTILITY MODEL CONTENT
[0005] In view of the deficiencies in the prior art, the utility model aims at providing a municipal afforestation isolation belt to solve the problem that a lot of manpower and material resources are consumed to irrigate the isolation belt and the growth of plants is not conducive.
[0006] The above technical purpose of the utility model is realized by the following technical scheme: the municipal afforestation isolation belt comprises a plurality of isolation belt bodies arranged, the isolation belt body is provided with a planting groove, the bottom of the isolation belt body is fixedly connected with a water reservoir, a plurality of water drainage covers are arranged on the isolation belt body along the length direction thereof, a plurality of water storage openings are arranged on the side wall of the water reservoir and located directly below the water drainage cover, and a water delivery device is arranged in the water reservoir and used for guiding the water flow in the water reservoir to the planting groove.
[0007] The utility model is further provided as follows: the cross section of the water reservoir in the width direction is isosceles trapezoidal, the bottom width of the water reservoir is greater than the width of the top surface, and the water storage opening is located directly below the water drainage cover.
[0008] The utility model is further provided as follows: a plurality of water storage openings are arranged symmetrically above the side wall of the water reservoir along the length direction of the isolation belt body, and the bottoms of adjacent water reservoirs are provided with a water delivery pipe in communication with each other.
[0009] The utility model is further provided as follows: the top surface of the water drainage cover is inclinedly arranged along the side close to the planting groove, the side of the water drainage cover away from the planting groove is parallel to the road surface, and the top end of the planting groove is higher than the top surface of the water drainage cover.
[0010] The utility model further sets up: the bottom of planting groove is arranged with water guide pipe, the peripheral wall of water guide pipe is opened through with a plurality of water outlets.
[0011] The utility model further sets up: a plurality of water guide pipes are worn out along the width both ends of planting groove, a plurality of water guide pipes are close to water supply device one end and its intercommunication.
[0012] The utility model further sets up: a plurality of water guide pipes are far from water supply device one end and are through the width one side of adjacent isolation zone body, a plurality of isolation zone bodies are through water supply pipe and a plurality of water guide pipes and interconnect.
[0013] The utility model further sets up: the water inlet and water outlet all are equipped with filter screen, the inner wall of water storage pool is equipped with monitoring device for monitoring water level.
[0014] The utility model further sets up: the length both ends of isolation zone body are fixedly connected with drainage canal, and the lateral wall of water storage pool is surrounded to set out the water outlet of drainage canal.
[0015] Summarized above, the utility model has following beneficial effects: when raining, part of water flow can be stored in water storage pool through water inlet while draining, and the water storage pool buried in the ground and separated from planting groove can effectively slow down the evaporation of internal moisture, achieve the effect of long-term water storage, the interval time of water supply device can be set to regularly guide the moisture in water storage pool to planting groove through water guide pipe to provide moisture for plants, the internal storage capacity of water storage pool can be grasped in time through monitoring device, and the moisture in water storage pool is replenished in time under the condition of long-term no rain, so that the manpower and material resources consumed during subsequent maintenance of green isolation zone are reduced. ACCURACY OF DRAWINGS
[0016] Figure 1 It is the structural schematic diagram of the utility model;
[0017] Figure 2 It is the sectional view of the utility model; Figure 1 It is the enlarged view of A in the middle;
[0018] Figure 3 It is the sectional view of the utility model;
[0019] Figure 4 It is the enlarged view of B in the middle. Figure 3
[0020] In the drawing: 1, isolation zone body; 2, planting groove; 3, water storage pool; 4, drainage cover; 5, water inlet; 6, water supply device; 7, water supply pipe; 8, drainage canal; 9, water outlet; 10, water guide pipe; 11, water outlet; 12, filter screen; 13, monitoring device. DETAILED DESCRIPTION
[0021] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0022] Example: This municipal greenbelt, such as Figure 1 As shown, the system includes several median strip bodies 1 arranged in a row. The number of median strip bodies 1 can be set according to the length of the road to be separated. The median strip bodies 1 arranged in a row can separate the roads on both sides, effectively ensuring the driving safety of different lanes. The median strip bodies 1 are made of cement and bricks, which have high strength and corrosion resistance, so that the median strip bodies 1 can maintain the overall structural stability and weather resistance when buried underground for a long time. A rectangular planting trough 2 is opened along the thickness direction of the median strip body 1.
[0023] like Figure 1 As shown, a water storage tank 3 made of aluminum alloy is fixedly connected to the bottom of the median strip body 1. The aluminum alloy material has high strength and corrosion resistance, which allows the water storage tank 3 to resist pressure and water erosion when buried underground, thus giving the water storage tank 3 a long service life. The median strip body 1 is provided with several drainage covers 4 along its length. The drainage covers 4 are formed by cement injection molding. The drainage covers 4 can drain the water on the road surface in time during rainy days, avoiding water accumulation and affecting traffic.
[0024] like Figure 1 and Figure 4 As shown, the cross-section of the water storage tank 3 in the width direction is an isosceles trapezoid, with the bottom width of the water storage tank 3 being greater than the width of its top surface, causing the length sides of the water storage tank 3 to slope outwards. Several water inlets 5 are located directly below the drainage cover 4 on the side wall of the water storage tank 3, allowing some of the water entering through the drainage cover 4 to enter through the water inlets 5 and be stored in the water storage tank 3. Buried underground and separated from the planting trough 2, the water storage tank 3 effectively slows down the evaporation of internal moisture, enabling the water storage tank 3 to achieve long-term water storage. Several water inlets 5 are located along the isolation strip body 1. The drainage covers 4 are symmetrically arranged along the length of the upper side wall of the water storage tank 3. The top surface of the drainage cover 4 is inclined along the side closest to the planting trough 2, and the side of the drainage cover 4 away from the planting trough 2 is parallel to the road surface. The top of the planting trough 2 is higher than the top surface of the drainage cover 4, so that rainwater will gather above the drainage cover 4 and form a certain water pressure. This causes the water to flow along the inclined arc of the drainage cover 4 and impact the side wall of the planting trough 2 and the water storage tank 3 in a certain arc when passing through the drainage cover 4. This helps the water flow into the water storage inlet 5 and improves the water storage efficiency of the water storage tank 3.
[0025] like Figures 1-3As shown, the water storage pool 3 is provided with a water delivery device 6 for guiding the water flow inside to the planting tank 2, the water delivery device 6 is a water pump, the bottom of the planting tank 2 is arranged with three water guide pipes 10 made of aluminum alloy, the peripheral wall of the water guide pipe 10 is provided with a plurality of water outlets 11, the three water guide pipes 10 are arranged at the two ends of the width of the planting tank 2, and the end of the three water guide pipes 10 close to the water delivery device 6 is communicated with the water delivery device 6, the water delivery device 6 can be arranged to regularly guide the water in the water storage pool 3 to the planting tank 2 through the water guide pipe 10 and flow out of the water outlet 11 to provide water for the plants, avoiding the waste and damage to the plants caused by using the irrigation vehicle, greatly reducing the manpower and material resources consumed for the later maintenance of the plants in the planting tank 2.
[0026] As shown in Figures 1-3 the three water guide pipes 10 are arranged at the two ends of the width of the planting tank 2, and the end of the three water guide pipes 10 close to the water delivery device 6 is communicated with the water delivery device 6, the water delivery device 6 can be arranged to regularly guide the water in the water storage pool 3 to the planting tank 2 through the water guide pipe 10 and flow out of the water outlet 11 to provide water for the plants, avoiding the waste and damage to the plants caused by using the irrigation vehicle, greatly reducing the manpower and material resources consumed for the later maintenance of the plants in the planting tank 2.
[0027] As shown in Figures 1-4 the three water guide pipes 10 are arranged at the two ends of the width of the planting tank 2, and the end of the three water guide pipes 10 close to the water delivery device 6 is communicated with the water delivery device 6, the water delivery device 6 can be arranged to regularly guide the water in the water storage pool 3 to the planting tank 2 through the water guide pipe 10 and flow out of the water outlet 11 to provide water for the plants, avoiding the waste and damage to the plants caused by using the irrigation vehicle, greatly reducing the manpower and material resources consumed for the later maintenance of the plants in the planting tank 2.
[0028] Working principle: in the rain, while draining water through the inclined arrangement of water cover 4 with a certain arc impact on the planting tank 2 and the side wall of the reservoir 3, and through the reservoir 3 side wall of a number of water storage 5 will part of the water flow stored in the reservoir 3, buried in the ground and separated from the planting tank 2 reservoir 3 to slow down the internal moisture evaporation, through a number of water pipes 7 will be a number of adjacent reservoir 3 internal water each other, greatly increasing the water supply device 6 in the reservoir 3 available water, by setting the interval time of water supply device 6 regularly water in the reservoir 3 through the water guide pipe 10 to guide the flow to the planting tank 2 to provide water for plants, through the monitoring device 13 to grasp the reservoir 3 in the water storage capacity in time.
[0029] The above only is the preferred embodiment of the present application, the protection scope of the present application is not only limited to the above-mentioned examples, all technical solutions under the idea of the present application belong to the protection scope of the present application. It should be pointed out that, for ordinary skilled in the art, without departing from the principle of the present application under the premise of a number of improvements and refinements, these improvements and refinements should also be considered as the protection scope of the present application.
Claims
1. A municipal greenbelt, comprising several arranged isolation belt bodies (1), wherein the isolation belt bodies (1) are provided with planting troughs (2), characterized in that: The bottom of the isolation belt body (1) is fixedly connected to a water storage tank (3). The isolation belt body (1) is provided with several drainage covers (4) along its length. Several water storage ports (5) are opened through the side wall of the water storage tank (3). When the drainage cover (4) drains water, some water flows into the water storage tank (3) through several water storage ports (5). The water storage tank (3) is provided with a water conveying device (6) for guiding the water inside to the planting trough (2).
2. The municipal greenbelt isolation belt according to claim 1, characterized in that: The cross-section of the water storage tank (3) in the width direction is an isosceles trapezoid. The width of the bottom surface of the water storage tank (3) is greater than the width of its top surface. The water inlet (5) is located directly below the drainage cover (4).
3. The municipal greenbelt isolation belt according to claim 1, characterized in that: Several of the water inlets (5) are symmetrically arranged above the side wall of the water storage tank (3) along the length of the isolation strip body (1), and water supply pipes (7) are provided between the bottoms of adjacent water storage tanks (3) and communicate with them.
4. The municipal greenbelt isolation belt according to claim 1, characterized in that: The top surface of the drainage cover (4) is inclined along the side close to the planting trough (2), the side of the drainage cover (4) away from the planting trough (2) is parallel to the road surface, and the top of the planting trough (2) is higher than the top surface of the drainage cover (4).
5. The municipal greenbelt isolation belt according to claim 3, characterized in that: The bottom of the planting trough (2) is provided with water pipes (10), and the periphery of the water pipes (10) is provided with several water outlets (11).
6. The municipal greenbelt isolation belt according to claim 5, characterized in that: Several water pipes (10) extend through both ends of the width of the planting trough (2), and the ends of several water pipes (10) near the water conveying device (6) are connected to each other.
7. The municipal greenbelt isolation belt according to claim 6, characterized in that: One end of each of the water pipes (10) away from the water supply device (6) passes through one side of the width of the adjacent isolation strip body (1), and the isolation strip bodies (1) are connected in series with each other through the water supply pipe (7) and the water pipes (10).
8. The municipal greenbelt isolation belt according to claim 7, characterized in that: Both the water inlet (5) and the outlet (11) are equipped with filter screens (12), and the inner wall of the water storage tank (3) is equipped with a monitoring device (13) for monitoring the water level.
9. The municipal greenbelt isolation belt according to claim 1, characterized in that: The isolation strip body (1) is fixedly connected to drainage channels (8) at both ends, and drainage outlets (9) are formed by the drainage channels (8) and the side walls of the water storage tank (3).