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2D dynamic structure-soil-structure interaction for twin buildings in layered half-space I: Incident SH-waves

机译:层状半空间中双幢建筑物的二维动态结构-土壤-结构相互作用I:入射SH波

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摘要

Structure-soil-structure interaction (SSSI) is investigated using a model of two shear walls supported by rigid foundations embedded in a soft layer over elastic bedrock. Solution is presented for the model response to incident plane SH-wave based on indirect boundary element method (IBEM). The analysis focuses on the effects of the soil layer. Although the dominant features in the response of flexible structures are those related to the structural resonances, the SSSI effects are not negligible. Further, the SSSI effect are enhanced by the soil layering, and are more pronounced for shallower layer and stiffer bedrock. It is shown that for closely spaced structures, reduction of the peak response occurs, which may reach 30-45%, while, for certain combinations of frequency and separation distance, amplification occurs, which may reach 45-50%, as compared to the stand-alone structure. For inclined wave incidence, the SSSI effects occur for larger separation distances than for vertical incidence. The results may be useful for interpretation of observed response in buildings and seismic response estimation in general.
机译:使用两个剪力墙模型研究结构-土壤-结构相互作用(SSSI),这些剪力墙由嵌入弹性基岩软层中的刚性基础支撑。提出了基于间接边界元方法(IBEM)的模型对入射平面SH波响应的解决方案。分析着重于土壤层的影响。尽管柔性结构响应的主要特征是与结构共振有关的特征,但SSSI效应不可忽略。此外,SSSI效应通过土壤分层得以增强,并且对于较浅的层和较坚硬的基岩更为明显。结果表明,对于紧密间隔的结构,峰值响应会降低,可能会达到30-45%;而对于频率和分离距离的某些组合,会出现放大,与之相比,可能会达到45-50%。独立结构。对于倾斜波入射,SSSI效应发生在比垂直入射更大的分离距离处。该结果可能对于解释建筑物中观察到的响应以及总体上的地震响应估计有用。

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