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首页> 外文期刊>Engineering Structures >Fragility assessment of non-ductile RC frame buildings exposed to combined ground shaking and soil liquefaction considering SSI
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Fragility assessment of non-ductile RC frame buildings exposed to combined ground shaking and soil liquefaction considering SSI

机译:考虑到SSI的脆性评估非延展性RC框架建筑物的非延展性RC框架建筑物

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The recent strong seismic events have demonstrated that most damage to coastal buildings is often associated with liquefaction effects. The occurrence of earthquake-induced ground shaking and liquefaction may be dramatic for buildings and poses a considerable threat to people. However, the influence of the simultaneous action of ground shaking and soil liquefaction considering soil-structure interaction (SSI) effects on the structural behaviour of buildings has not been adequately studied yet. In this respect, we propose a methodology for the fragility assessment of non-ductile reinforced concrete (RC) moment-resisting frame buildings exposed to combined ground shaking and soil liquefaction, based on a fully coupled numerical approach considering SSI. A fully coupled (u-P) formulation is employed, which can capture in cohesionless soils the permanent shear-strain accumulation during dilation and soil liquefaction. Two-dimensional incremental dynamic analysis of the nonlinear SSI systems is conducted for the estimation of the building response. The proposed methodology yields either conventional fragility curves, or coupled fragility surfaces, which are a function of more than one intensity measures and provide useful and important information for an integrated fragility assessment. It is shown that the height of the building resting on liquefiable soil may significantly affect its vulnerability to combined ground shaking and soil liquefaction, with the non-ductile low-rise RC frame buildings suffering more structural damages compared to the mid- and high-rise ones. Also, the high-rise buildings, even susceptible to liquefaction, do not sustain severe structural damages but only sink or tilt. The proposed fragility models can be adapted to estimate the risk of typical non-ductile RC frame buildings exposed to ground shaking and soil liquefaction.
机译:最近的强烈地震事件表明,对沿海建筑的大多数损害往往与液化效应有关。地震诱导的地面摇动和液化的发生可能是巨大的建筑物,对人们构成了相当大的威胁。然而,考虑土壤 - 结构相互作用(SSI)对建筑物结构行为的同时摇动和土壤液化的影响尚未得到充分研究。在这方面,我们提出了一种基于考虑SSI的完全耦合的数值方法,提出了一种暴露于组合地面摇动和土壤液化的非延性钢筋混凝土(RC)力矩抗框架建筑物的方法。采用完全偶联(U-P)制剂,其可在粘性土壤中捕获在扩张和土壤液化过程中永久性剪切应变积累。对非线性SSI系统进行二维增量动态分析,用于估计建筑物响应。所提出的方法产生常规脆性曲线或耦合脆性表面,其是一种多于一种强度测量的函数,并提供用于集成脆弱性评估的有用和重要信息。结果表明,储存土壤上搁在液体土壤上的建筑物的高度可能会显着影响其与地面摇动和土壤液化的脆弱性,与中高层相比,非延展性低层RC架构建筑物遭受更多结构损坏那些。此外,甚至易于液化的高层建筑,不维持严重的结构损坏,而是只沉没或倾斜。所提出的脆弱性模型可以适应估计暴露于地面摇动和土壤液化的典型非延展性RC框架建筑物的风险。

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