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Soil-structure interaction vs Site effect for seismic design of tall buildings on soft soil

机译:软土地基高层建筑抗震设计的土-结构相互作用及副作用

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摘要

In this study, in order to evaluate adequacy of considering local site effect, excluding soil-structure interaction (SSI) effects in inelastic dynamic analysis and design of mid-rise moment resisting building frames, three structural models including 5, 10, and 15 storey buildings are simulated in conjunction with two soil types with the shear wave velocities less than 600 m/s, representing soil classes D_e and E_e according to the classification of AS1170.4-2007 (Earthquake actions in Australia) having 30 m bedrock depth. Structural sections of the selected frames were designed according to AS3600:2009 (Australian Standard for Concrete Structures) after undertaking inelastic dynamic analysis under the influence of four different earthquake ground motions. Then the above mentioned frames were analysed under three different boundary conditions: (ⅰ) fixed base under direct influence of earthquake records; (ⅱ) fixed base considering local site effect modifying the earthquake record only; and (ⅲ) flexible-base (considering full soil-structure interaction). The results of the analyses in terms of base shears and structural drifts for the above mentioned boundary conditions are compared and discussed. It is concluded that the conventional inelastic design procedure by only including the local site effect excluding SSI cannot adequately guarantee the structural safety for mid-rise moment resisting buildings higher than 5 storeys resting on soft soil deposits.
机译:在这项研究中,为了评估考虑局部场地效应的适当性,在非弹性动力分析和中高层抗弯建筑框架设计中不考虑土壤结构相互作用(SSI)效应,包括5层,10层和15层的三种结构模型根据AS1170.4-2007(澳大利亚地震作用)的分类,具有30 m基岩深度的两种剪切力小于600 m / s的土壤类型模拟建筑物,分别代表D_e和E_e土类。所选框架的结构截面是根据AS3600:2009(澳大利亚混凝土结构标准)设计的,并在四种不同地震地震动的影响下进行了非弹性动力分析。然后在三种不同的边界条件下分析了上述框架:(ⅰ)在地震记录直接影响下的固定基础; (ⅱ)固定基地,仅考虑局部场地影响,仅修改地震记录; (ⅲ)柔性基础(考虑到完整的土壤-结构相互作用)。比较并讨论了上述边界条件下的基础剪力和结构位移的分析结果。得出的结论是,仅通过包括SSI以外的局部场地效应的常规非弹性设计程序无法充分保证抵抗中层弯矩的5层以上软土沉积层建筑物的结构安全性。

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