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Failure and Stability Analysis of Jinping-I Arch Dam Based on Geomechanical Model Test and Nonlinear Numerical Analysis

机译:基于地质力学模型试验和非线性数值分析的金平-I拱坝失效与稳定性分析

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摘要

Jinping-I high arch dam is the highest arch dam (305m) in the world, but the topography of its left and right sides of the arch is not symmetrical, which has a great impact on the overall stability of the arch dam. Based on the geomechanical model test and nonlinear numerical simulation, the evolution processes of cracks and failure during overloading in dam body and faults are demonstrated. Three safety factors of Jinping-I are gained and compared with other high arch dams. The safety factor of crack (K-1) is 2.5, the factor of initial nonlinear deformation (K-2) is 4.5 and the factor of the ultimate bearing capacity (K-3) of Jinping-I is 7.5, indicating that the project has a high inherent safety. Treatments of foundation and weak zones are proved to be effective and then suggestions for reinforcement are given. Additionally, the relationships between model test and numerical simulation based on the deformation reinforcement theory are studied, which verifies that the unbalanced force is an effective indicator for cracking.
机译:金平 - 我高拱门是世界上最高的拱门大坝(305米),但拱门的左侧和右侧的地形不是对称的,这对拱门大坝的整体稳定性产生了很大影响。基于地质力学模型试验和非线性数值模拟,证明了大坝体和故障在过载过程中的裂缝和失效的演化过程。与其他高拱坝相比,锦平 - 我的三个安全因素得到了比较。裂缝(K-1)的安全系数为2.5,初始非线性变形(K-2)的因素是4.5,锦平-I的最终承载力(K-3)的因子为7.5,表明该项目具有高固有的安全性。证明了基础和弱区的治疗是有效的,然后给予加强的建议。另外,研究了基于变形增强理论的模型试验与数值模拟之间的关系,这验证了不平衡力是用于开裂的有效指标。

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