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Landslide stability analysis based on random-fuzzy reliability: taking Liangshuijing landslide as a case
Authors:Wu Yiping  Cheng Cong  He Gaofeng  Zhang Qiuxia
Institution:1. Faculty of Engineering, China University of Geosciences, Wuhan, 430074, China
2. Kunming Survey & Design Institute of State Forestry Administration, Kunming, 650000, China
Abstract:A large number of reservoir landslides will be impacted under the action of cyclical water level change in Three Gorges Reservoir, therefore its stability analysis and evaluation are important. And various kinds of influencing factors should be considered when landslide stability is analyzed. Taking Liangshuijing landslide as a case, considering the uncertain factors in the landslide stability analysis process, the landslide random-fuzzy reliability is analyzed in the paper, based on the sliding soil shear strength parameters testing and groundwater monitoring data. The results show that the landslide random-fuzzy reliability is the smallest at the process of high water level slowly dropping to low water level, and the landslide is basically at a steady state, which is consistent with landslide body actual deformation. Taking into account the uncertainty of groundwater level in a landslide body is equivalent to taking into account the changes of occurrence conditions in landslide rock and soil. Taking these factors into account is more in line with the actual when compared with only considering shear strength parameters random properties.
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