Anti-scouring vegetation grid structure for mountain slope
By designing a vegetation grid structure that allows for pre-sowing and subsequent laying, the problems of uneven seed dispersal and seed loss were solved, resulting in improved seed germination rate and seedling survival rate, and enhanced slope erosion resistance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHINA NORTH SURVEY DESIGN & RES INST OF ORDNANCE IND CO LTD
- Filing Date
- 2025-05-14
- Publication Date
- 2026-04-10
AI Technical Summary
The existing vegetation grid structure on mountain slopes suffers from uneven seed sowing after installation, making it easy for seeds to be washed away by rainwater, resulting in uneven vegetation cover and difficulty in effectively protecting slope stability.
Design a vegetation grid structure that can be sown first and then laid, including edge protection grid, round blocks, round grooves and round covers. The round covers are embedded in the round grooves to fix the soil and seeds. The round covers are equipped with water inlet funnels so that rainwater can enter the soil and provide a stable growing environment.
It improves planting efficiency and vegetation coverage uniformity, enhances the slope's resistance to erosion, ensures seed germination and seedling survival rates, and forms a neat and dense vegetation cover.
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Figure CN224098327U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mountain slope technical field especially relates to a mountain slope scouring vegetation grid structure. BACKGROUND
[0002] Mountain slope is the transition zone between natural mountain and artificial construction area, and the stability is easily destroyed. Factors such as heavy rainfall, earthquake and engineering excavation can cause the instability of slope soil, and lead to a large amount of soil sliding, blocking traffic, damaging buildings, and even threatening the safety of residents, therefore, mountain slope vegetation grid structure is needed.
[0003] The existing mountain slope vegetation grid structure usually needs to adopt artificial seed sowing after laying, because of the complex slope topography, it is difficult for construction personnel to maintain uniform sowing intensity and pace interval on steep and rugged slope. In actual operation, artificial sowing often causes seed intensive accumulation in some areas and seed sparsity or even vacancy in some areas due to factors such as slope inclination and obstacles, and if mechanical sowing is adopted, some light quality herbaceous plant seeds are easily blown away from the predetermined growth area by wind, and if it encounters rainy weather, the scouring effect of rainwater on seeds will aggravate the uneven sowing problem. Because the mountain slope has a certain slope, the runoff speed on the slope is fast and the scouring force is strong. The seeds have not been fully combined with the soil after sowing, and lack the fixing effect of root system, so they are easily carried by rainwater along the slope and gathered in low-lying areas or directly washed away from the slope. UTILITARY MODEL CONTENTS
[0004] The utility model mainly provides a mountain slope scouring vegetation grid structure which can be sowed first and laid later.
[0005] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme: a mountain slope scouring vegetation grid structure, comprising: an edge protection grid, the surface intersection of the edge protection grid is fixedly connected with a round block, the top of the round block is provided with a round groove, the inner arc wall of the round groove and close to the top is provided with a ring groove, the ring groove is embedded with a round cover, and the bottom inner wall of the round groove and close to the center is provided with a second round hole.
[0006] Preferably, the holes between the edge protection grids are hexagonal, which can limit the surface mesh of the edge protection grid.
[0007] Preferably, the inner arc wall of the ring groove and the outer arc wall surface of the round cover are screw connected, which can rotate and install the round cover, so as to prevent a large amount of soil from falling during laying.
[0008] Preferably, the surface of the circular cover is provided with a first circular hole, through the above setting, rainwater can enter the soil inside the circular groove.
[0009] Preferably, the top of the circular cover is fixed and communicated with a feeding funnel at the first circular hole, through the above setting, more rainwater can enter the soil inside the circular groove.
[0010] Compared with the prior art, the advantages and positive effects of the present application are that,
[0011] 1. In the present application, the seed can be planted in the soil inside the circular groove on the relatively flat ground, which is more convenient than planting on the already laid inclined slope grid, and the construction personnel can more easily perform the operations such as sowing and soil covering, thereby improving the planting efficiency and quality.
[0012] 2. In the present application, the soil structure in the center of the circular block provides a relatively stable and suitable growth environment for the seeds. The soil can maintain a certain humidity, preventing the seeds from being lost or dried due to wind blowing, rain, etc. in the early stage, which helps the seed germination and the early growth of seedlings, thereby improving the germination rate of seeds and the survival rate of seedlings.
[0013] 2. In the present application, the seeds can be planted in the soil inside the circular groove of the circular block, which can make the vegetation relatively evenly distributed on the slope surface in the early growth stage, which is beneficial to form neat and dense vegetation cover, and better play the protective role of vegetation on the slope, thereby enhancing the anti-erosion effect. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 Fig. 1 is a perspective view of the overall structure of the vegetation grid structure for anti-erosion of mountain slope of the present application;
[0015] Figure 2 Fig. 2 is a partial structure sectional view of the vegetation grid structure for anti-erosion of mountain slope of the present application;
[0016] Figure 3 Fig. 3 is an overall structure sectional view of the vegetation grid structure for anti-erosion of mountain slope of the present application;
[0017] Figure 4 Fig. 4 is a perspective view of the fixed circular cover structure of the vegetation grid structure for anti-erosion of mountain slope of the present application.
[0018] Legend: 1, edge protection grid; 2, circular block; 3, circular groove; 4, annular groove; 5, circular cover; 6, first circular hole; 7, water inlet funnel; 8, second circular hole. DETAILED DESCRIPTION
[0019] In order to enable the above-mentioned purpose, features and advantages of the present application to be more clearly understood, the present application will be further described below with reference to the drawings and embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0020] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, however, the present application can be practiced in different ways from those described herein, therefore, the present application is not limited to the specific embodiments disclosed in the following description.
[0021] Please refer to Figures 1-4 The present application provides a technical scheme: a vegetation grid structure for resisting erosion of a mountain slope, comprising: a side protection grid 1, circular blocks 2 are fixedly connected at the intersection of the surface of the side protection grid 1, circular grooves 3 are formed at the top of the circular blocks 2, annular grooves 4 are formed in the inner arc wall of the circular grooves 3 and close to the top, circular covers 5 are embedded in the annular grooves 4, second circular holes 8 are formed in the bottom inner wall of the circular grooves 3 and close to the center, through the above arrangement, the side protection grid 1 can be laid on a flat ground, and the soil is placed in the circular grooves 3, then the seeds are planted in the circular grooves 3 filled with soil, and then the circular covers 5 are embedded in the annular grooves 4 and rotated to fix the circular covers 5, and then the laid side protection grid 1 can be rolled up.
[0022] As shown in Figure 1 and Figure 2 , the holes between the side protection grids 1 are hexagonal, through the above arrangement, the surface mesh of the side protection grid 1 can be defined.
[0023] As shown in Figure 2 and Figure 3 , the inner arc wall of the annular groove 4 is threadedly connected with the outer arc wall surface of the circular cover 5, through the above arrangement, the circular cover 5 can be rotated and fixed, so that the soil can be prevented from falling a lot during laying.
[0024] As shown in Figure 1 , a first circular hole 6 is formed in the surface of the circular cover 5, through the above arrangement, the rainwater can enter the soil in the circular groove 3.
[0025] As shown in Figure 3 and Figure 4 , a water inlet funnel 7 is fixedly connected and communicated with the first circular hole 6 at the top of the circular cover 5, through the above arrangement, more rainwater can enter the soil in the circular groove 3.
[0026] The method for using and the working principle of the device: the anti-edge grid 1 can be laid on the flat ground, and the soil is placed in the circular groove 3, then the seeds are planted in the circular groove 3 filled with soil, then the circular cover 5 is embedded in the ring groove 4 and rotated, the circular cover 5 can be fixed, then it can be laid by rolling up, when the laying is completed, when it rains, the rainwater can enter the soil in the circular groove 3 through the water inlet funnel 7, when the seeds grow, the roots can penetrate the second circular hole 8 and penetrate into the soil, and the seeds can grow through the first circular hole 6 and climb to the surface of the anti-edge grid 1.
[0027] The above is only a preferred embodiment of the present application, and is not intended to limit the present application in other forms. Any skilled person in the art can modify or change the above disclosed technical content to equivalent embodiments applied to other fields, but any simple modification, equivalent change and modification made on the basis of the technical essence of the present application to the above embodiments shall still fall within the protection scope of the present application.
Claims
1. A vegetation grid structure for protecting a mountain slope from erosion, characterized by, Include: The surface intersection of the anti-edge grid (1) is fixedly connected with a round block (2), the top of the round block (2) is provided with a round groove (3), the inner arc wall of the round groove (3) and close to the top is provided with a ring groove (4), the ring groove (4) is embedded with a round cover (5), and the bottom inner wall of the round groove (3) and close to the center is provided with a second round hole (8).
2. The vegetation grid structure for resisting scour of mountain slope according to claim 1, characterized in that: The hole between the anti-edge grid (1) is hexagonal.
3. The vegetation grid structure for mountain slope scouring resistance according to claim 1, characterized in that: The inner arc wall of the ring groove (4) and the outer arc wall surface of the round cover (5) are screw connected.
4. The vegetation grid structure of claim 1, wherein: The surface of the round cover (5) is provided with a first round hole (6).
5. The vegetation grid structure of claim 4, wherein: The top of the round cover (5) and located at the first round hole (6) is fixedly connected with a feeding funnel (7).