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Influence of Soft Soil Shear Strength on the Seismic Response of Concrete Buildings Considering Soil-Structure Interaction

机译:柔软土剪切强度对考虑土结构互动的混凝土建筑地震响应的影响

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Influences of undrained shear strength on seismic response of moment resisting concrete building considering soil-structure interaction (SSI) have been studied. A 15-storey building model resting on class E_e soil with different values of undrained shear strength has been simulated through FLAC~(3D). Fully nonlinear dynamic analysis under four different earthquakes including two far-field and two near-field recordings has been conducted by direct method and results in terms of base shear, maximum lateral displacement, inter-storey drift and spectral acceleration have been compared and discussed. Results indicate that by increasing the undrained shear strength of the subsoil, the superstructure experiences extra base shear under earthquake excitations due to SSI. Furthermore, the maximum lateral displacements and inter-storey drifts of the superstructure increase by adopting higher values for the undraied shear strength of the subsoil. It is concluded that practicing engineers should treat soil properties gained from field or laboratory tests with extreme care when dealing with numerical based seismic design of the soil-structure systems.
机译:研究了抗剪切强度对考虑土壤 - 结构相互作用(SSI)的抗震混凝土建筑地震响应的影响。通过FLAC〜(3D)模拟了具有不同不驱屑强度值的依赖于e_e土壤的15层楼的建筑模型。在包括两个不同地震下的完全非线性动态分析,包括两个远场和两个近场录制,并通过直接方法进行,并在基础剪切方面导致了最大的横向位移,跨越间漂移和光谱加速度和讨论。结果表明,通过提高底土的不湿润的剪切强度,由于SSI,上部结构在地震激发下经历了额外的基础剪切。此外,通过采用较高的值对于底层的未涉及剪切强度来增加超级结构的最大横向位移和层间漂移。结论是,当处理土壤结构系统的数值抗震设计时,练习工程师应在田间或实验室试验中治疗从场或实验室测试中获得的土壤性质。

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