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Vulnerability assessment of reinforced concrete buildings at precarious slopes subjected to combined ground shaking and earthquake induced landslide

机译:地震动和地震诱发滑坡共同作用下不稳定边坡钢筋混凝土建筑物的脆弱性评估

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At present, the seismic vulnerability of reinforced concrete (RC) buildings standing in the vicinity of the slope's crest is assessed ignoring, in most cases, the effect of topography and the potential slope instability. This study aspires to investigate these effects by proposing a methodological framework for assessing the vulnerability of typical RC buildings subjected to combined ground shaking and earthquake induced landslide hazards. The method is based on a two-step numerical analysis procedure. First, the acceleration time histories and the permanent differential ground displacement time histories are evaluated employing dynamic non-linear analysis. Then, a series of nonlinear dynamic and static time history analyses are performed for a reference low rise, code-conforming RC frame building located at varying distances from the slope's crest to compute the fragility curves for the two loading conditions i.e. ground shaking considering topographic amplification and seismic permanent landslide displacements. The derived fragility curves, described as a function of peak ground acceleration (PGA) at the rock outcrop, are compared to provide insight into the primary damage mechanism while, in the end, coupled fragility curves are generated to account for the combined potential damages due to ground shaking and seismically induced landslide considering or not the interaction between the two hazards. The proposed coupled fragility curves could be used within a probabilistic risk assessment framework to evaluate the structural vulnerability of specific RC building typologies at precarious slopes due to ground shaking and seismically induced slope displacements.
机译:目前,在大多数情况下,忽略了地形影响和潜在的斜坡不稳定性,评估了位于斜坡顶附近的钢筋混凝土(RC)建筑物的地震脆弱性。这项研究旨在通过提出一种方法框架来评估这些典型的RC建筑物在地面震动和地震诱发的滑坡灾害的共同作用下的脆弱性,从而研究这些影响。该方法基于两步数值分析程序。首先,使用动态非线性分析评估加速时间历史和永久差分地面位移时间历史。然后,针对与斜坡的顶峰距离不同的参考低层,符合代码规范的RC框架建筑进行了一系列非线性动态和静态时程分析,以计算两种荷载条件下的脆性曲线,即考虑地形放大的地震动和地震永久性滑坡位移。比较导出的脆性曲线(描述为岩石露头处的峰值地面加速度(PGA)的函数),以提供对主要破坏机理的洞察力,最后,生成耦合的脆性曲线以说明由于考虑或不考虑两种灾害之间的相互作用,使地面震动和地震诱发的滑坡。提议的耦合脆性曲线可用于概率风险评估框架中,以评估由于地面震动和地震诱发的边坡位移而在不稳定的斜坡上特定钢筋混凝土建筑类型的结构脆弱性。

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