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Correlation between ground motion intensity measures and seismic damage of 3D R/C buildings

机译:3D R / C建筑物的地面运动强度测度与地震破坏之间的关系

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The present paper investigates the correlation between a large number of widely used ground motion intensity measures (IMs) and the corresponding damage to medium-rise 3D, R/C buildings. To accomplish this purpose the seismic performance of two symmetric and two asymmetric in plan 5-storey buildings subjected to 64 bidirectional earthquake ground motions are determined. Structural performance is expressed in terms of the maximum and the average interstorey drift as well as the overall structural damage index and it is determined for many angles of seismic incidence. For each individual pair of accelerograms and each seismic input angle the values of the aforementioned seismic damage measures are determined. Then, the correlation between the damage measures and the IMs is evaluated. The results reveal that the spectral acceleration at the fundamental period of the structure shows the strongest correlation with the maximum and average interstorey drifts, followed by the velocity related seismic IMs. Moreover, the vast majority of the examined ground motion IMs are proved to be inadequate to predict the overall structural damage index of frame-wall (dual) systems.
机译:本文研究了大量广泛使用的地震动强度度量(IM)与对中层3D,R / C建筑物的相应破坏之间的相关性。为了达到这个目的,确定了平面对称的5层建筑物中经历了64次双向地震地震动的两个对称和两个非对称的地震性能。结构性能以最大和平均层间漂移以及整体结构破坏指数来表示,并且是针对许多地震入射角确定的。对于每个单独的一对加速度图和每个地震输入角,确定上述地震破坏措施的值。然后,评估损坏措施与IM之间的相关性。结果表明,结构基本周期的频谱加速度显示出与最大和平均层间漂移的最强相关性,其次是速度相关的地震IM。此外,事实证明,绝大多数检查的地面运动IM不足以预测框架墙(双)系统的整体结构破坏指数。

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