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Inelastic displacement ratios of SSI systems

机译:SSI系统的无弹性位移比

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.This paper presents the effect of soil-structure interaction on seismic inelastic displacement ratios of Single Degree of Freedom (SDOF) systems. Existing methods used in the past assumes the soil to be rigid. Through simplified equivalent fixed-base methods, the effect of soil-structure interaction (SSI) on the inelastic behaviour of structures is evaluated for different soil parameters using effective period and damping values. Using a degrading modified Clough model, the influence of different types of degradation is accounted for, for SDOF systems with periods ranging from 0.2 to 1.4 s. In total 300 different earthquake motions recorded on firm soil condition with magnitudes greater than 5 and peak ground acceleration (PGA) values greater than 0.08 g were selected. These records were scaled to the same hazard level and applied on five experimentally-tested reinforced concrete columns selected from the Pacific Earthquake Engineering Research Centre database. A total of 384,000 dynamic analyses were conducted. The results of the soil interacting systems are compared with the fixed-base case for different strength reduction factors (R) and foundation aspect ratios (h/r) for a range of NEHRP soil types C and D properties. These results show that the maximum inelastic displacements for soil type D are greater than those of soil type C and the fixed-base case. Particularly for periods less than 0.6 s with large aspect ratios, the effects of soil-structure interaction should be accounted for. Finally, the collected data was used to derive mathematical expressions for inelastic displacement ratios of SSI systems, suitable for use in performance-based seismic evaluation of structures.
机译:本文介绍了土-结构相互作用对单自由度(SDOF)系统地震非弹性位移比的影响。过去使用的现有方法都假定土壤是刚性的。通过简化的等效固定基法,使用有效周期和阻尼值,针对不同的土壤参数,评估了土-结构相互作用(SSI)对结构非弹性行为的影响。使用退化的改进的Clough模型,对于周期为0.2到1.4 s的SDOF系统,考虑了不同类型的退化的影响。在坚固的土壤条件下,总共记录了300次不同的地震运动,震级大于5,峰值地面加速度(PGA)值大于0.08 g。这些记录被缩放到相同的危害水平,并应用于从太平洋地震工程研究中心数据库中选出的五根经过实验测试的钢筋混凝土柱。总共进行了384,000次动态分析。对于一系列NEHRP土壤C和D类型的特性,将不同的强度折减系数(R)和地基纵横比(h / r)与固定基础情况下的土壤相互作用系统的结果进行比较。这些结果表明,D型土壤的最大非弹性位移大于C型土壤和固定基础情况的最大非弹性位移。特别是对于长宽比小于0.6 s的时段,应考虑土壤与结构相互作用的影响。最后,所收集的数据被用于推导SSI系统的非弹性位移比的数学表达式,适用于基于性能的结构抗震评估。

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