Stability Analysis of Slope in a Hydropower Station with Local Strength Reduction Method
Zhao Chua
Abstract
Zhao Chua
Abstract
The problem of slope stability was always the emphasis and difficulty of hydropower engineering research, the overall strength reduction method was used widespread, which considering all the rock soil units and was not consistent with the actual. Based on the theory of local strength reduction method,the finite element software was used to analyze the stability of a hydropower station slope containing weak interlayer, the results indicated that: the slope stability safety coefficient was 1. 28 and the slope was stable under natural conditions; but after the rain, the weak interlayer shear strength decreased rapidly and the plastic zone ran through, safety factor of slope stability was only 0. 96, the slope would slide along the weak structural surface. When the upper parts of the dangerous rock body were strengthened, the safety factor of slope stability increased respectively by 75. 8% and 90. 6%, and the plastic zone also reduced.The results could provide some reference for the stability analysis and reinforcement construction of similar slope engineering.
OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The problem of slope stability was always the emphasis and difficulty of hydropower engineering research, the overall strength reduction method was used widespread, which considering all the rock soil units and was not consistent with the actual. Based on the theory of local strength reduction method,the finite element software was used to analyze the stability of a hydropower station slope containing weak interlayer, the results indicated that: the slope stability safety coefficient was 1. 28 and the slope was stable under natural conditions; but after the rain, the weak interlayer shear strength decreased rapidly and the plastic zone ran through, safety factor of slope stability was only 0. 96, the slope would slide along the weak structural surface. When the upper parts of the dangerous rock body were strengthened, the safety factor of slope stability increased respectively by 75. 8% and 90. 6%, and the plastic zone also reduced.The results could provide some reference for the stability analysis and reinforcement construction of similar slope engineering.
Key concepts: Strength reduction, Slope stability, Slope stability analysis, Safety factor, Geotechnical engineering, Factor of safety, Shear strength (soil), Slope stability probability classification