Yantai Slope Protection 3D Mesh Net Quotation, Slope Protection 3D Mesh Net Soil Stabilization, Slope Protection 3D Mesh Net Greening, Slope Protection 3D Mesh Net Environmental Protection
The surface soil of the slope is protected; the third is the root zone, which reinforces and anchors the surface soil of the slope, providing mechanical stability. Generally, in the early stages of plant growth, due to the loose intertwining of individual plant roots without long-established root systems, they are prone to separation from the soil layer.
Not effective in providing protection. The application of three-dimensional mesh, however, aims to enhance the protection in these three aspects to achieve more thorough shallow layer protection. First, within a certain thickness range, it improves the protective performance and mechanical stability. Second, due to the presence of the three-dimensional mesh, the extensive root system of plants is connected to the mesh, forming a plate-like structure (similar to reinforced soil on the slope surface), thereby increasing the tensile and shear strength of the protective layer. This limits the expansion of the "gradual destruction" phenomenon (erosion can directly damage individual plants, and over time, the damaged area increases) and ultimately restricts the occurrence of shallow surface sliding and uplifting on the slope. Three-dimensional vegetation mesh slope protection refers to a new technology that constructs a self-growing protective system on the slope surface by utilizing active plants and engineering materials such as geosynthetic materials. It strengthens the slope through the growth of plants.
Based on the characteristics of the slope's terrain, soil, and regional climate, a layer of geosynthetic material is applied to the slope surface, and a variety of plants are planted in specific combinations and spacings. Through the growth activities of the plants, the purpose of reinforcing the root system and preventing erosion of the stems and leaves is achieved. After treatment with ecological slope protection technology, a dense vegetation cover can be formed on the slope surface, and a tangled root system on the surface soil layer. This effectively inhibits the erosion of the slope by heavy rain runoff, increases the shear strength of the soil mass, reduces the pore water pressure and the self-weight of the soil mass, thereby significantly improving the stability and erosion resistance of the slope. The anti-erosion effect of the vegetation is realized through its three main components: first, the growth layer of the plants (including petals, leaf sheaths, leaves, and stems).
By its dense coverage, it prevents the direct erosion of the soil surface on the slope by rainwater, reduces the scouring energy of heavy rain runoff and the speed of surface runoff, thereby reducing soil loss; secondly, the humus layer (including the interface between the leaf layer and the root stem).




































