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Stereoscopic vegetation cover stabilizing system for slope surface of ecologically fragile area and construction method
The invention provides a vegetation three-dimensional covering stabilizing system for an ecologically fragile area slope surface and a construction method, the vegetation three-dimensional covering stabilizing system comprises a left-right transparent inner side covering plate, and the inner side covering plate is of a U-shaped structure with a forward opening; a plurality of spaced keels are fixedly arranged in a groove defined by the inner side cladding plate, the keels comprise transverse keels extending in the left-right direction and vertical keels fixedly embedded between the adjacent transverse keels, the vertical keels extend in the up-down direction, and the adjacent vertical keels are arranged in a left-right spaced mode; a connecting frame is arranged on the rear side of the inner side cladding plate; when vegetation is planted in a plurality of rectangular hole structures which are formed by connecting transverse connecting rods and vertical connecting rods end to end and are through front and back, soil is divided into a plurality of rectangular hole structures by the transverse connecting rods and the vertical connecting rods, so that the soil can be effectively gathered together and is prevented from passing, and then the vegetation penetrates out of the square holes, so that the vegetation is prevented from being damaged. And the shielding cloth can also prevent soil from passing, so that the vegetation is prevented from toppling and falling off.
本发明提供生态脆弱区坡面的植被立体覆被稳固系统和施工方法,包括左右通透的内侧包覆板,内侧包覆板为开口朝前的U形结构;内侧包覆板所围合而成的槽内固定设有多个间隔的龙骨,龙骨包括沿左右方向延伸设置的横龙骨和相邻横龙骨之间固定嵌设的竖龙骨,竖龙骨沿上下方向延伸设置,且相邻的竖龙骨左右间隔设置;内侧包覆板的后侧设有连接框架;当植被种植在由横连接杆和竖连接杆首尾相连形成多个前后通透的矩形孔结构内时,土壤被横连接杆和竖连接杆分割成多个矩形孔的结构,可以有效将土壤聚集在一起,避免流逝,之后再将植被从方孔内穿出,使得遮挡布也可阻挡土壤流逝,这样植被就不会出现倾倒和脱落的情况。
Stereoscopic vegetation cover stabilizing system for slope surface of ecologically fragile area and construction method
The invention provides a vegetation three-dimensional covering stabilizing system for an ecologically fragile area slope surface and a construction method, the vegetation three-dimensional covering stabilizing system comprises a left-right transparent inner side covering plate, and the inner side covering plate is of a U-shaped structure with a forward opening; a plurality of spaced keels are fixedly arranged in a groove defined by the inner side cladding plate, the keels comprise transverse keels extending in the left-right direction and vertical keels fixedly embedded between the adjacent transverse keels, the vertical keels extend in the up-down direction, and the adjacent vertical keels are arranged in a left-right spaced mode; a connecting frame is arranged on the rear side of the inner side cladding plate; when vegetation is planted in a plurality of rectangular hole structures which are formed by connecting transverse connecting rods and vertical connecting rods end to end and are through front and back, soil is divided into a plurality of rectangular hole structures by the transverse connecting rods and the vertical connecting rods, so that the soil can be effectively gathered together and is prevented from passing, and then the vegetation penetrates out of the square holes, so that the vegetation is prevented from being damaged. And the shielding cloth can also prevent soil from passing, so that the vegetation is prevented from toppling and falling off.
本发明提供生态脆弱区坡面的植被立体覆被稳固系统和施工方法,包括左右通透的内侧包覆板,内侧包覆板为开口朝前的U形结构;内侧包覆板所围合而成的槽内固定设有多个间隔的龙骨,龙骨包括沿左右方向延伸设置的横龙骨和相邻横龙骨之间固定嵌设的竖龙骨,竖龙骨沿上下方向延伸设置,且相邻的竖龙骨左右间隔设置;内侧包覆板的后侧设有连接框架;当植被种植在由横连接杆和竖连接杆首尾相连形成多个前后通透的矩形孔结构内时,土壤被横连接杆和竖连接杆分割成多个矩形孔的结构,可以有效将土壤聚集在一起,避免流逝,之后再将植被从方孔内穿出,使得遮挡布也可阻挡土壤流逝,这样植被就不会出现倾倒和脱落的情况。
Stereoscopic vegetation cover stabilizing system for slope surface of ecologically fragile area and construction method
生态脆弱区坡面的植被立体覆被稳固系统和施工方法
SHEN ZHENZHOU (author) / XIAO PEIQING (author) / YAO WENYI (author) / LI PENG (author) / ZHANG FENGBAO (author) / GAO YUNFEI (author) / LI XIAOLONG (author) / LI CHANGMING (author) / PAN BAOZHU (author) / LI BINBIN (author)
2023-11-24
Patent
Electronic Resource
Chinese
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