Abstract
In this study, the failure mode of flexible reinforced soil slopes under earthquake action was investigated by shaking table tests. The distribution law of a potential failure surface of a flexible no-faceplate reinforced soil slope under earthquake action was obtained based on the analysis results. A simplified trilinear failure surface suitable for flexible reinforced soil slopes without faceplate was proposed. Subsequently, based on the upper-bound theorem of limit analysis, we derived the formula for calculating the yield seismic acceleration coefficient of a flexible no-faceplate reinforced soil slope under a seismic load. The main parameters that affect its seismic performance were determined. The flexible geogrid reverse-packed reinforced earth structure can effectively limit the fracture of a slope body and improve the stability of the slope. This provides a theoretical basis for facilitating the engineering of flexible reinforced soil slopes.
Cite
CITATION STYLE
Huang, L., He, W., Hou, Y., Liu, D., Wang, B., Zhu, J., & Wang, J. (2021). Seismic Behavior of Flexible Geogrid Wrap-Reinforced Soil Slope. Advances in Civil Engineering, 2021. https://doi.org/10.1155/2021/8833662
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