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Reservoir hydro-fluctuation belt bank slope protection pine pile-gabion box combined plant-growing retaining wall
The invention provides a reservoir hydro-fluctuation belt bank slope protection pine pile-gabion box combined plant-growing retaining wall which comprises gabion boxes, pine piles, a graded broken stone layer, anti-filter geotextiles and geogrids. The gabion boxes are rectangular meshy box cages formed by braiding or welding steel wires, are arranged along the longitudinal axis of the retaining wall from bottom to top in a stepped mode and are vertically staggered and arranged in a staggered joint mode to form two rows. The rows of pine piles are arranged on the inner sides and the outer sides of the gabion boxes, and the adjacent pine piles are connected by using hemp ropes to form a whole. The graded broken stone layer is arranged between the inner-side pine piles and wall back soil bodies. The anti-filter geotextiles are arranged between the outer-side pine piles and the gabion boxes and between the graded broken stone layer and the wall back soil bodies. The geogrids are arranged between the adjacent gabion boxes and adjacent wall back soil bodies. The reservoir hydro-fluctuation belt bank slope protection pine pile-gabion box combined plant-growing retaining wall has the advantages of being good in whole structural stability, capable of being resistant to hydraulic scour suffered by a bank slope and playing a better protection role on the river bank slope and having the effects of environment greening, air and water body purification, soil fixation and moisture retention.
Reservoir hydro-fluctuation belt bank slope protection pine pile-gabion box combined plant-growing retaining wall
The invention provides a reservoir hydro-fluctuation belt bank slope protection pine pile-gabion box combined plant-growing retaining wall which comprises gabion boxes, pine piles, a graded broken stone layer, anti-filter geotextiles and geogrids. The gabion boxes are rectangular meshy box cages formed by braiding or welding steel wires, are arranged along the longitudinal axis of the retaining wall from bottom to top in a stepped mode and are vertically staggered and arranged in a staggered joint mode to form two rows. The rows of pine piles are arranged on the inner sides and the outer sides of the gabion boxes, and the adjacent pine piles are connected by using hemp ropes to form a whole. The graded broken stone layer is arranged between the inner-side pine piles and wall back soil bodies. The anti-filter geotextiles are arranged between the outer-side pine piles and the gabion boxes and between the graded broken stone layer and the wall back soil bodies. The geogrids are arranged between the adjacent gabion boxes and adjacent wall back soil bodies. The reservoir hydro-fluctuation belt bank slope protection pine pile-gabion box combined plant-growing retaining wall has the advantages of being good in whole structural stability, capable of being resistant to hydraulic scour suffered by a bank slope and playing a better protection role on the river bank slope and having the effects of environment greening, air and water body purification, soil fixation and moisture retention.
Reservoir hydro-fluctuation belt bank slope protection pine pile-gabion box combined plant-growing retaining wall
CHEN HONGKAI (Autor:in) / WU FAN (Autor:in) / TANG HONGMEI (Autor:in)
22.07.2015
Patent
Elektronische Ressource
Englisch
Ecological slope protection structure of reservoir area hydro-fluctuation belt
Europäisches Patentamt | 2024
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