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Seismic damage investigation of arch dams under different water levels based on massively parallel computation

机译:基于大规模并行计算的不同水位下拱坝地震破坏研究

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摘要

Parallelization based on the overlapping domain decomposition method (ODDM) is adopted to increase the computation speed of large-scale nonlinear dynamic analysis. A comprehensive system of arch dam-reservoir-foundation is established considering the foundation radiation damping and the nonlinearity of joint opening and concrete damage. A planned 240 m-high arch dam including approximately 3.5 million degrees of freedom and 34 contraction joints is selected as a case study. In particular, to the best of the authors' knowledge, such large-scale seismic damage analysis of an arch dam-reservoir-foundation is unique and can help in understanding damage to an arch dam under an earthquake. The influence of water level on the seismic safety of the arch dam is evaluated based on the damage. New findings are revealed through sophisticated simulation. Under strong earthquake, although free blocks form under low water level conditions, there seems to be no risk of a catastrophic release of the reservoir.
机译:采用基于重叠域分解法(ODDM)的并行化来提高大规模非线性动力学分析的计算速度。考虑到基础辐射阻尼,节理孔的非线性和混凝土的破坏,建立了拱坝-水库-基础综合体系。案例研究选择了计划中的240 m高拱坝,包括约350万个自由度和34个伸缩缝。尤其是,据作者所知,这种对拱坝-水库基础的大规模地震破坏分析是独一无二的,可以帮助您理解地震对拱坝的破坏。根据损伤程度评估水位对拱坝地震安全性的影响。通过复杂的仿真揭示了新发现。在强地震下,尽管在低水位条件下会形成自由块,但似乎没有发生水库灾难性释放的风险。

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