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A continuum damage concrete model for earthquake analysis of concrete gravity dam-reservoir systems

机译:混凝土重力坝-水库系统地震分析的连续损伤混凝土模型

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摘要

In this study, the earthquake damage response of the concrete gravity dams is investigated with considering the effects of dam-reservoir interaction. A continuum damage model which is a second-order tensor and includes the strain softening behavior is selected for the concrete material. The mesh-dependent hardening technique is adopted such that the fracture energy dissipated is not affected by the finite element mesh size. The dynamic equilibrium equations of motion are solved by using the improved form of the HHT-α time integration algorithm. Two dimensional seismic analysis of Koyna gravity dam is performed by using the 1967 Koyna earthquake records. The effects of damage on the earthquake response of concrete gravity dams are discussed. Comparison of the Westergaard and Lagrangian dam-reservoir interaction solutions is made. The effects of viscous damping ratio on the damage response of the dam are also studied.
机译:在这项研究中,考虑了水坝-水库相互作用的影响,研究了混凝土重力坝的地震破坏响应。为混凝土材料选择了一个包含二阶张量并包含应变软化行为的连续损伤模型。采用了依赖于网格的硬化技术,以使耗散的断裂能不受有限元网格尺寸的影响。通过使用HHT-α时间积分算法的改进形式来求解运动的动态平衡方程。使用1967年的科伊纳地震记录对科伊纳重力坝进行了二维地震分析。讨论了损伤对混凝土重力坝地震反应的影响。比较了Westergaard和Lagrangian大坝-水库相互作用的解决方案。还研究了粘性阻尼比对大坝损伤响应的影响。

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