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首页> 外文期刊>ScientificWorldJournal >Geotechnical Characteristics and Stability Analysis of Rock-Soil Aggregate Slope at the Gushui Hydropower Station, Southwest China
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Geotechnical Characteristics and Stability Analysis of Rock-Soil Aggregate Slope at the Gushui Hydropower Station, Southwest China

机译:西南甘水水电站岩土骨料坡岩土特征及稳定性分析

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Two important features of the high slopes at Gushui Hydropower Station are layered accumulations (rock-soil aggregate) and multilevel toppling failures of plate rock masses; the Gendakan slope is selected for case study in this paper. Geological processes of the layered accumulation of rock and soil particles are carried out by the movement of water flow; the main reasons for the toppling failure of plate rock masses are the increasing weight of the upper rock-soil aggregate and mountain erosion by river water. Indoor triaxial compression test results show that, the cohesion and friction angle of the rock-soil aggregate decreased with the increasing water content; the cohesion and the friction angle for natural rock-soil aggregate are 57.7 kPa and 31.3° and 26.1 kPa and 29.1° for saturated rock-soil aggregate, respectively. The deformation and failure mechanism of the rock-soil aggregate slope is a progressive process, and local landslides will occur step by step. Three-dimensional limit equilibrium analysis results show that the minimum safety factor of Gendakan slope is 0.953 when the rock-soil aggregate is saturated, and small scale of landslide will happen at the lower slope.
机译:甘水水电站高斜坡的两个重要特征是层叠蓄积(岩土骨料)和板岩岩体的多级倒塌故障;在本文中选择了宪兵斜坡以案例研究。岩石和土壤颗粒分层积聚的地质过程通过水流的运动进行;板岩块膨胀失效的主要原因是上岩石骨料汇率越来越大的河水河水。室内三轴压缩试验结果表明,岩土骨料的凝聚力和摩擦角度随着含水量的增加而降低;自然岩土聚集体的内聚力和摩擦角为57.7kPa和31.3°和26.1kPa,分别用于饱和岩土聚集体29.1°。岩土骨料斜坡的变形和失效机理是进程过程,局部滑坡逐步发生。三维极限平衡分析结果表明,当岩土骨料饱和时,榕树坡的最低安全系数为0.953,小幅坡度将发生小规模的滑坡。

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