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Soil-structure interaction analysis using a 1DT-3C wave propagation model

机译:使用1DT-3C波传播模型的土结构相互作用分析

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摘要

The soil-structure interaction (SSI) is generally neglected for seismic design of ordinary buildings. A modeling technique is proposed to facilitate the integration of SSI in building design, considering rocking effects and the shallow foundation deformability. The proposed technique is suitable when the soil can be considered as horizontally layered. The one-directional three-component wave propagation is numerically simulated in a T-shaped horizontally layered soil domain assembled with a three-dimensional (3D) frame structure. A 3D soil model is used until a fixed depth and a 1D model is supposed to be a sufficient approximation in deeper soil layers. The 1DT-3C wave propagation approach is inspired by the consideration that SSI is detected in the near surface soil layers. The proposed modeling approach is verified by comparison with a fully 3D model for vertical propagation in horizontally layered soil and periodic lateral boundary condition. The 1DT-3C wave propagation modeling technique is used to investigate the building response and SSI effects that vary with the frequency content of seismic loading and building-to-soil frequency ratio, respectively.
机译:普通建筑物的地震设计普遍忽略了土壤结构相互作用(SSI)。提出了一种建模技术,以促进SSI在建筑设计中的集成,考虑摇摆效果和浅基础可变形性。当土壤可以被认为水平分层时,所提出的技术是合适的。用三维(3D)框架结构组装的T形水平分层的土壤结构域在数模上模拟单向三分量波传播。使用3D土壤模型,直到固定深度和1D模型应该是深层土层中足够的近似。通过考虑到在近地表土层中检测到SSI的考虑,1DT-3C波传播方法启发。通过与水平分层土壤和周期横向边界条件的垂直传播的完全3D模型进行了验证了所提出的建模方法。 1DT-3C波传播建模技术用于研究分别随着地震载荷和建筑物对土频率比的频率含量而变化的建筑物响应和SSI效应。

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