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Seismic performance and failure modes of the Jin'anqiao concrete gravity dam based on incremental dynamic analysis

机译:基于增量动态分析的金安桥混凝土重力坝的地震性能与故障模式

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摘要

To investigate the potential failure modes of concrete gravity dams under seismic loads, a typical non-overflow dam section of the Jin'anqiao roller compacted concrete (RCC) gravity dam is taken as a case study. A compressive and integral analysis model of the dam body-foundation-reservoir water interaction system is established, in which the viscous-spring boundary and its corresponding free field input mechanism is employed to account for the dam-foundation interaction and fluid-solid coupling method is used to account for the dam-reservoir interaction. Based on the incremental dynamic analysis (IDA) method, IDA curves are generated with the relative displacement angle on the x-axis (damage measure, DM) and peak ground acceleration (PGA) on the y-axis (intensity measure, IM). The damage processes and potential failure modes for the Jin'anqiao gravity dam under different peak accelerations are investigated. It is concluded that under ground motion loadings of the Jin'anqiao dam, the locations at which functional failure may occur are mostly found in the stress concentration of the dam slope, the boundary of the rolling section, the junction between the dam and dam foundation, and the top of the corridor. Therefore, strengthening the seismic protection in these areas is conducive to improving the overall aseismic level of the dam.
机译:为了研究地震载荷下的混凝土重力水坝的潜在故障模式,采取了金安桥辊压缩混凝土(RCC)重力坝的典型非溢流坝段。建立了坝体基础储层水相互作用系统的压缩和整体分析模型,其中采用粘性弹簧边界及其相应的自由场输入机构来解释坝上基础相互作用和流体 - 固耦合方法用于考虑大坝水库相互作用。基于增量动态分析(IDA)方法,使用X轴(损坏测量,DM)和Y轴上的峰接地加速度(PGA)上的相对位移角产生IDA曲线(强度测量,IM)。研究了不同峰加速度下金安桥重力坝的损伤过程和潜在故障模式。得出结论,在金安桥大坝的地面运动载荷下,可能发生功能故障的位置主要发现在坝坡的应力集中,滚动部分的边界,坝基与坝基之间的交界处和走廊的顶部。因此,加强这些区域的地震保护有利于改善大坝的整体抗震水平。

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