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Influence of strong motion duration on the seismic performance of high CFRDs based on elastoplastic analysis

机译:基于弹塑性分析的强运动持续时间对高CFRD抗震性能的影响

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摘要

Amplitude, frequency content and duration are the three main features of earthquake ground motions. The first two features have been fully considered in the seismic design of high concrete-faced rockfill dams (CFRDs). However, the role of ground motion duration on the seismic performance assessment of CFRDs remains unclear. In this paper, 40 as-recorded ground motions with a broad distribution of durations modified to match a 5% damped target spectrum are selected to investigate the influence of strong motion duration on the seismic performance of high CFRDs. A generalized plasticity model for rockfill materials, a plastic damage model for face slabs and a generalized interface plasticity model to describe the relative sliding behavior between the face slabs and rockfill are adopted for the dynamic response analysis based on a 2D 200-m-high regular CFRD. The vertical displacement, horizontal displacement, plastic shear strain and a face-slab damage index are used as the dam damage measures (DMs). The correlation coefficient R-2 is selected to reflect the degree of the relationship between strong motion duration and DMs. The results indicate that the vertical displacement, horizontal displacement, and plastic shear strain are positively correlated with strong motion duration, but the face-slab damage index has a low correlation. Therefore, the influence of strong motion duration should be considered in the seismic performance assessment of high CFRDs, and the use of short durations of strong ground motion in the design and seismic performance assessment of CFRDs may overestimate dam performance.
机译:振幅,频率含量和持续时间是地震地震动的三个主要特征。高混凝土面板堆石坝(CFRD)的抗震设计已经充分考虑了前两个特征。但是,地面运动持续时间在CFRD抗震性能评估中的作用尚不清楚。在本文中,选择了40个已记录的地震动,并对其进行了修改以匹配5%阻尼目标谱的持续时间分布,以研究强运动持续时间对高CFRD抗震性能的影响。基于二维200 m高规则性的动力响应分析采用了堆石料的广义塑性模型,面板的塑性损伤模型和描述面板与堆石之间相对滑动行为的广义界面塑性模型。 CFRD。垂直位移,水平位移,塑性剪切应变和面板破坏指数用作大坝的破坏测度(DMs)。选择相关系数R-2以反映强运动持续时间与DM之间的关系的程度。结果表明,垂直位移,水平位移和塑性剪切应变与强运动持续时间呈正相关,而面板损伤指数的相关性较低。因此,在高CFRD的抗震性能评估中应考虑强运动持续时间的影响,而在CFRD的设计和抗震性能评估中使用短持续时间的强地震动可能会高估大坝的性能。

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