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Correlation between strong motion durations and damage measures of concrete gravity dams

机译:混凝土重力坝强运动持续时间与破坏措施的相关性

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Strong motion duration affects the cumulative damage of structures significantly. There are more than 30 different definitions of strong motion duration. This study describes numerically, the interdependency between several different definitions of strong motion duration and structural accumulated damage indices, and the aim is to determine the definitions of strong motion duration that exhibit the strongest influence on structural damages. For this purpose, 20 as-recorded accelerograms with a wide range of durations, which are modified to match a 5% damped target spectrum, are considered in this study, and several different definitions of strong motion duration, such as significant duration, bracketed duration and uniform duration are proposed for measuring these durations. On the other hand, nonlinear seismic analyses of concrete gravity dams subjected to earthquake motions with different strong motion durations are conducted according to the Concrete Damaged Plasticity (CDP) model including the strain hardening or softening behavior. Peak displacement, local damage index, global damage index and damage energy dissipation are established for characterizing the influence of strong motion duration on the dynamic response of concrete gravity dams. The degree of the interrelationship between strong motion durations and damage measures is provided by correlation coefficients. Comparison of the correlation between the different durations of the ground motion and different damage measures reveals that strong motion durations calculated from different definitions have no significant influence on damage measure based on the peak displacement response of the dam, but are positively correlated to the accumulated damage measures such as the local damage index, global damage index and damage energy dissipation for events with similar response spectrum. (C) 2014 Elsevier Ltd. All rights reserved.
机译:强烈的运动持续时间会严重影响结构的累积损坏。强运动持续时间有30多种不同的定义。本研究从数值上描述了强运动持续时间的几种不同定义与结构累积损伤指标之间的相互依赖性,目的是确定对结构损伤影响最大的强运动持续时间的定义。为此,在这项研究中考虑了20种按时间记录的加速度记录,这些记录的持续时间范围很宽,并经过修改以匹配5%的阻尼目标频谱,并且对强运动持续时间进行了几种不同的定义,例如有效持续时间,包围持续时间建议使用统一持续时间来测量这些持续时间。另一方面,根据混凝土破坏塑性(CDP)模型(包括应变硬化或软化行为),对具有不同强烈运动持续时间的地震运动的混凝土重力坝进行非线性地震分析。建立峰值位移,局部破坏指数,整体破坏指数和破坏能量耗散,以表征强运动持续时间对混凝土重力坝动力响应的影响。强烈运动持续时间与损伤度量之间的相互关系程度由相关系数提供。比较不同的地震动持续时间和不同的破坏措施之间的相关性,发现根据大坝的峰值位移响应,根据不同的定义计算出的强运动持续时间对破坏措施没有显着影响,但与累积破坏成正相关测量具有相似响应谱的事件的指标,例如局部破坏指数,全局破坏指数和破坏能量耗散。 (C)2014 Elsevier Ltd.保留所有权利。

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