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Application of numerical simulation in the slope stability analysis of reservoir bank

机译:数值模拟在水库岸坡稳定性分析中的应用

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A highway tunnel import will be built on the ice deposits fan on the right bank of the Dadu River. Because of the water storage of Pubugou Hydropower Station, about a quarter in front of the bank slope will be underwater. The main geotechnical material impacting the entire slope is the ice deposits composed by upper-middle PleistoceneIce glacier sediments and glacio-aqueous sediments. Under the action of water, its physical and mechanical properties and strength will be significantly changed, weakening engineering behavior, thus affecting the bank slope stability and the abutment arrangement. On the basis of the bank slope engineering geological conditions, rock and soil structure and mechanical properties, the analysis of factors affecting slope, numerical simulation is used in the bank-slope stability analysis after the impoundment situation. In the case of static highest impoundment level, the stress field and deformation characteristics show that the slope exists the instability possibility very large and must be prevented. Meanwhile, after reservoir impounding, the slope stability states under different excavation conditions are compared to determine a reasonable excavation supporting measures, and provide a quantitative reference for supporting structure and the location selection and support strength set.
机译:将在大渡河右岸的积冰扇上建造一条高速公路隧道入口。由于瀑布沟水电站的蓄水能力,在河岸边坡前约四分之一处将处于水下。影响整个斜坡的主要岩土材料是由上中更新世冰川沉积物和冰川水沉积物组成的冰沉积物。在水的作用下,其物理机械性能和强度将发生显着变化,从而削弱工程性能,从而影响岸坡的稳定性和桥台的布置。根据河岸边坡工程地质条件,岩土结构及力学性能,对影响边坡的因素进行分析,利用数值模拟方法对蓄水情况后的河岸边​​坡稳定性进行了分析。在静态最高蓄水位的情况下,应力场和变形特性表明,边坡存在很大的失稳可能性,必须加以预防。同时,在水库蓄水后,比较不同开挖条件下的边坡稳定状态,确定合理的开挖支护措施,为支护结构和位置选择及支护强度设定提供定量参考。

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