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Effect of soil parameter uncertainty on seismic demand of low-rise steel buildings on dense silty sand

机译:土质参数不确定性对稠密粉砂低层钢结构房屋抗震性能的影响

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摘要

Focusing on low-rise steel buildings supported by shallow isolated foundations on dense silty sand, this study demonstrates the effect of uncertainty in soil parameters on seismic response of structures. Considering a set of 20 ground motions representing 10% in 50 years hazard level and concentrating on peak base moment, base shear and interstory drift as the demand variables of interest, it is found that uncertainty in soil parameters may result in significant response variability of the structures, especially when vertical factor of safety is low and the structure is relatively stiff. Uncertainty in friction angle results in significant variability of the peak base moment and base shear, while peak interstory drift ratio is found to be virtually unaffected by uncertainty in soil parameters. It is also found that a linear soil-structure-interaction (SSI) model will not be able to predict such response variability under these set of ground motions.
机译:重点研究了由密实粉砂质地基上的浅层隔离基础支撑的低层钢结构建筑,该研究证明了土壤参数不确定性对结构地震响应的影响。考虑到一组20个代表50年灾害水平10%的地面运动,并集中于峰值基本矩,基础剪力和层间漂移作为感兴趣的需求变量,发现土壤参数的不确定性可能导致土壤响应的显着变化。结构,特别是当垂直安全系数低且结构相对较硬时。摩擦角的不确定性导致峰值基础弯矩和基础剪力的显着变化,而峰值层间漂移率实际上不受土壤参数不确定性的影响。还发现线性土-结构-相互作用(SSI)模型将无法预测在这些地面运动情况下的响应变化。

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