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Study of stability against deep sliding of gravity dam based on JC method

机译:基于JC方法的重力坝深滑动稳定性研究

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In this study, stability against deep sliding of gravity dam is analysed in order to provide guidance for ensuring stability against sliding of gravity dam during the construction and operation periods. Based on checking-point method (JC method), the study proposes an analysis model for stability against deep sliding of gravity dams. In addition, the rigid body limit equilibrium method is utilized to construct the limit state function of deep anti-sliding stability. With sliding plane anti-shear friction coefficient and anti-shear cohesion calculated as random variables, safety degree of stability against deep sliding is analysed. With JC method employed, the calculation program is compiled to calculate the stability against deep sliding of gravity dam and analyse the non-overflow section of gravity dam under normal storage level. According to calculation program, the reliability index β of stability against deep sliding of gravity dam is 4.36, and the failure risk P_f is approximately zero. Additionally, based on the traditional rigid body limit equilibrium method, the safety factor K is 3.23, which meets the requirements of the design specification. According to the above methods, stability against deep sliding of the dam section meets the requirement. In conclusion, JC method provides a calculation and analysis model for gravity dam's stability against deep sliding, serving as references in the design of gravity dams based on reliability theory.
机译:在这项研究中,分析了对重力坝深滑动的稳定性,以便为确保在构造和操作周期期间确保重力坝滑动的稳定性。基于检查点法(JC方法),该研究提出了一种抗重力坝深滑动稳定性的分析模型。此外,利用刚体限制平衡方法构建深度防滑稳定性的极限状态函数。利用滑动平面抗剪切摩擦系数和抗剪切凝聚为随机变量计算,分析了对深滑动的稳定性安全程度。采用JC方法,编译计算程序以计算重力坝深滑动的稳定性,并在正常存储水平下分析重力坝的非溢流部分。根据计算计划,重力坝深滑动稳定性的可靠性指标β为4.36,故障风险P_F大约为零。此外,基于传统的刚体限制平衡方法,安全系数K为3.23,符合设计规范的要求。根据上述方法,防止坝段深滑动的稳定性满足要求。总之,JC方法为重力坝稳定性的稳定性的计算和分析模型,作为基于可靠性理论的重力坝设计的参考。

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