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Dimensional analysis of structures with translating and rocking foundations under near-fault ground motions

机译:近断层地震动下具有平移和摇摆基础的结构的尺寸分析

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This paper evaluates the inertial soil-structure interaction (SSI) effects on linear and bilinear structures supported on foundation that is able to translate and rock when subject to near-fault ground motions. Through rigorous dimensional analysis, the peak structural responses (e.g. structural drift and total acceleration) of the soil-foundation-structure interacting (SFSI) systems are characterized by a set of dimensionless Π-parameters, which can decisively describe the interactive behavior of SFSI systems. By comparing the normalized structural responses of various structure-foundation systems with their fixed-base counterparts, the study reveals that SSI effects highly depend on the structure-to-pulse frequency ratio, Π_ω, the foundation-to-structure stiffness ratio, Π_k, damping coefficient of foundation impedance, Π_c, the foundation rocking, and the development of nonlinearity in structures. For linear structures, the SSI effects are insignificant when the structure-to-pulse frequency ratio (Π_ω) is smaller than 1.5 and can amplify the structural responses when Π_ω is higher than 1.5. Foundation rocking can shift and enlarge the response amplification zone of SSI. For nonlinear structures, SSI tends to reduce the structural responses for Π_ω<3 while can increase the ductility demands for Π_ω≥3. The bilinear structures may experience more significant SSI effects than linear structures in certain frequency ranges. The numerical simulations on ten real building cases exhibiting significant rocking and a detailed case study on a nine-story frame structure demonstrate the applicability of dimensional analysis results to predict the SSI effects on realistic building structures. The study demonstrates that the dimensional analysis provides a concise and systematic way of evaluating SSI effects.
机译:本文评估了惯性土-结构相互作用(SSI)对地基上支撑的线性和双线性结构的影响,该结构在发生近断层地震动时能够平移和晃动。通过严格的尺寸分析,土壤-基础-结构相互作用(SFSI)系统的峰值结构响应(例如结构漂移和总加速度)的特征在于一组无量纲的Π参数,这些参数可以决定性地描述SFSI系统的相互作用行为。通过比较各种结构基础系统与其固定基础对应结构的规范化结构响应,研究发现SSI效应高度依赖于结构与脉冲的频率比Π_ω,基础与结构的刚度比Π_k,基础阻抗的阻尼系数Π_c,基础摇摆和结构非线性的发展。对于线性结构,当结构与脉冲的频率比(Π_ω)小于1.5时,SSI效果不明显;当Π_ω大于1.5时,SSI效果会放大结构响应。基础摇摆可以移动并扩大SSI的响应放大区域。对于非线性结构,SSI倾向于减小Π_ω<3的结构响应,同时可以增加Π_ω≥3的延性要求。在某些频率范围内,双线性结构可能会比线性结构遭受更大的SSI效应。对十个具有明显摇摆作用的实际建筑案例进行了数值模拟,并对一个九层框架结构进行了详细的案例研究,证明了尺寸分析结果可用于预测SSI对实际建筑结构的影响。研究表明,尺寸分析为评估SSI效果提供了一种简洁而系统的方法。

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