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Soil structure interaction effects on structural parameters for stiffness degrading systems built on soft soil sites

机译:土壤结构相互作用对软土地基上刚度退化系统结构参数的影响

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摘要

In this study, strength reduction factors and inelastic displacement ratios are investigated for SDOF systems with period range of 0.1-3.0 s considering soil structure interaction for earthquake motions recorded on soft soil. The effect of stiffness degradation on strength reduction factors and inelastic displacement ratios is investigated. The modified-Clough model is used to represent structures that exhibit significant stiffness degradation when subjected to reverse cyclic loading and the elastoplastic model is used to represent non-degrading structures. The effect of negative strain - hardening on the inelastic displacement and strength of structures is also investigated. Soil structure interacting systems are modeled and analyzed with effective period, effective damping and effective ductility values differing from fixed-base case. For inelastic time history analyses, Newmark method for step by step time integration was adapted in an in-house computer program. New equations are proposed for strength reduction factor and inelastic displacement ratio of interacting system as a function of structural period (T, T), ductility (μ) and period lengthening ratio (T/T).
机译:在这项研究中,考虑了在软土上记录的地震运动的土壤结构相互作用,研究了周期范围为0.1-3.0 s的SDOF系统的强度折减系数和非弹性位移比。研究了刚度降低对强度折减系数和非弹性位移比的影响。修改后的Clough模型用于表示承受反向循环载荷时刚度明显下降的结构,而弹塑性模型用于表示非退化结构。还研究了负应变硬化对结构的非弹性位移和强度的影响。对土壤结构相互作用系统进行建模和分析,其有效期,有效阻尼和有效延性值不同于固定基准情况。对于非弹性时程分析,在内部计算机程序中采用了Newmark逐步时间积分方法。针对相互作用系统的强度折减系数和非弹性位移比,提出了新的方程,作为结构周期(T,T),延性(μ)和周期延长比(T / T)的函数。

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