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Extension of the Discontinuous Deformation Analysis Method to Simulate Seismic Response of a Large Rock Cavern Complex

机译:不连续变形分析方法的扩展以模拟大型岩洞复合体的地震反应

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The discontinuous deformation analysis (DDA) method calculates large deformations and discontinuous problems using time-step solving and provides an effective tool for analyzing the seismic response of rock mass engineering. In this paper, extensions of the DDA method to simulate the seismic response of a large rock cavern complex are carried out. First, applicability of the existing seismic input methods, including the multiblock Newmark method, large mass method, and large stiffness method, are discussed. Second, considering the characteristics of the seismic response of a large rock cavern complex, a new seismic DDA model that includes a coupling model and a force-input method is presented. Last, the extended DDA method is used for a case study. Simulations of the quasi-static and seismic dynamic stages for the large rock cavern complex of the Dagangshan hydropower station in southwest China are carried out. Considering the stress and displacement distributions in the quasi-static stage, the most unfavorable movable blocks are found. In the seismic dynamic stage, serious damage to the main machine building and local damage of the downstream sidewall of the main transformer chamber are observed, and the seismic response of the large rock cavern complex can be visually divided into four phases, which show that failures of the most unfavorable movable blocks are an early sign of collapse of a rock cavern complex. (C) 2016 American Society of Civil Engineers.
机译:不连续变形分析(DDA)方法使用时步求解法计算大变形和不连续问题,并为分析岩体工程的地震响应提供了有效的工具。本文对DDA方法进行了扩展,以模拟大型岩石洞室群的地震反应。首先,讨论了现有的地震输入方法的适用性,包括多块Newmark方法,大质量方法和大刚度方法。其次,考虑到大型岩洞群地震反应的特征,提出了一种新的地震DDA模型,该模型包括耦合模型和力输入法。最后,扩展的DDA方法用于案例研究。对西南大港山水电站大岩洞群的准静态和地震动态阶段进行了模拟。考虑到准静态阶段的应力和位移分布,找到了最不利的可动块。在地震动态阶段,观察到对主机的严重破坏和对主变压器室下游侧壁的局部破坏,并且将大型岩洞复合体的地震响应可视化地分为四个阶段,这表明了破坏最不利的可移动块是岩洞群倒塌的早期迹象。 (C)2016年美国土木工程师学会。

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