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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Soil-Structure Interaction Effects on Seismic Performance and Earthquake-Induced Losses in Tall Buildings
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Soil-Structure Interaction Effects on Seismic Performance and Earthquake-Induced Losses in Tall Buildings

机译:土-结构相互作用对高层建筑抗震性能和地震损失的影响

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摘要

This paper evaluated the seismic performance of hypothetical tall buildings by estimating intensity measures, engineering demand parameters, and earthquake-induced losses using a soil-structure interaction (SSI) numerical framework. Numerical models for 40-story buildings were developed using OpenSees to study their seismic performance under the following modeling and building configuration conditions: (1) fixed-base structural model, (2) model including SSI effects, (3) fixed-base model with shear walls, and (4) model including shear walls and considering SSI effects. The buildings were assumed to be supported on subsurface conditions typical of downtown Los Angeles. The natural period of the soil profile was parametrically studied; the larger its natural period, the lower were the seismic demands of the building. The inclusion of shear walls caused a reduction of the natural period of the building and computed settlements in relation to the buildings without a shear wall system. Considering SSI effects in the modeling approach changed the computed seismic demands of the tall buildings in terms of maximum interstory drifts, peak story horizontal accelerations, and seismic-induced settlements. Computed median direct economic losses for the 2,475-year mean return period increased as much as 33% by considering SSI effects in the numerical analyses in relation to building losses ignoring those effects.
机译:本文通过使用土-结构相互作用(SSI)数值框架估算强度测度,工程需求参数和地震引起的损失,来评估假设的高层建筑的抗震性能。使用OpenSees开发了40层建筑物的数值模型,以在以下建模和建筑物配置条件下研究其抗震性能:(1)固定基础结构模型,(2)包括SSI效应的模型,(3)固定基础模型(4)包括剪力墙并考虑SSI效应的模型。假定这些建筑物在洛杉矶市区典型的地下条件下得到支撑。对土壤剖面的自然周期进行了参数研究。自然周期越大,建筑物的抗震要求就越低。相对于没有剪力墙系统的建筑物,剪力墙的加入减少了建筑物的自然周期并减少了计算沉降。考虑到建模方法中的SSI效应,从最大层间漂移,峰值层水平加速度和地震引起的沉降方面改变了高层建筑的计算地震需求。通过在不考虑建筑损失的数值分析中考虑SSI效应,在2475年平均回报期内计算的直接经济损失中值增加了33%。

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  • 来源
    《Journal of geotechnical and geoenvironmental engineering》 |2020年第5期|04020028.1-04020028.14|共14页
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  • 作者单位

    Dept. of Civil Environmental and Construction Engineering Univ. of Central Florida Orlando FL 32816;

    Dept. of Civil Engineering and Construction Engineering Management California State Univ. Long Beach CA 90840;

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