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Fragility analysis of hillside buildings designed for modern seismic design codes

机译:按照现代抗震设计规范设计的山坡建筑的易损性分析

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摘要

The structural configurations of hillside buildings are significantly different than those observed on flat terrain. To study the effect of often observed structural configurations of hillside buildings, collapse fragility of regular flat land (FL) and irregular split-foundation (SF) and step-back (SB) buildings is studied using incremental dynamic analysis. The effects of building height, seismic zone, and near- and far-field sites on collapse fragility are investigated. It is observed that SF and SB hillside buildings exhibit significant torsional effects at the storey just above the uppermost foundation level. In case of FL buildings, collapse occurs due to the flexural failure of beams and columns. On the other hand, in SF and SB buildings, the collapse occurs due to the combined effects of shear failure of short columns and flexural failure of beams and columns in the storey just above the uppermost foundation level. In general, SF buildings are observed to be the most vulnerable, whereas FL buildings are the least vulnerable. It is observed that high-rise SF and SB buildings show unacceptably high probability of collapse at maximum considered earthquake, in Seismic Zone V and for the near-field site in Seismic Zone IV.
机译:山坡建筑的结构构造与在平坦地形上观察到的构造构造显着不同。为了研究经常观察到的山坡建筑结构形态的影响,使用增量动力分析方法研究了常规平地(FL)和不规则分裂地基(SF)和台阶式(SB)建筑的倒塌脆弱性。研究了建筑物高度,地震带以及近场和远场站点对倒塌脆弱性的影响。可以看出,SF和SB山坡建筑在最上层基础层上方的楼层显示出显着的扭转作用。对于FL建筑物,由于梁和柱的弯曲破坏而导致倒塌。另一方面,在SF和SB建筑物中,倒塌是由于短柱的剪切破坏和刚好在最高基础层之上的层中的梁和柱的弯曲破坏的综合影响而发生的。通常,观察到SF建筑物是最脆弱的,而FL建筑物是最不脆弱的。据观察,在考虑到的最大地震中,在V区地震中以及在IV区地震的近场现场,高层SF和SB建筑物倒塌的可能性极高。

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