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Characterization of displacement demand for elastic and inelastic SDOF systems

机译:弹性和非弹性SDOF系统位移需求的表征

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摘要

The results of a research concerning the characterization of elastic and inelastic displacement spectral demand as a function of magnitude, source-to-site distance, and soil type are presented. The displacement spectra were computed for single degree of freedom systems subjected to a large set of strong ground motion records. In the elastic case, design displacement spectra, modeled in a simplified way with a bilinear shape in the period range 0-4 s, are then proposed for the estimation of the displacement demand to structures located on different local soil condition, at different distance from the causative fault, and for different levels of magnitude. In order to evaluate the reliability of the proposed design displacement spectra, probabilistic displacement spectra corresponding to different levels of probability of non-exceedance were also carried out. The inelastic displacement demand to elasto-plastic systems was analyzed through the ratio between inelastic and elastic spectral displacements. Simplified relationships of the inelastic displacement ratio are then proposed as a function of displacement ductility, soil condition and period of vibration. Finally, as a comparison, the inelastic displacement ratios were also estimated considering other constitutive models.
机译:提出了关于表征弹性和非弹性位移谱需求随量级,源到站点距离和土壤类型的函数的研究结果。位移谱是针对经历了一组强大的地面运动记录的单自由度系统计算的。在弹性情况下,设计位移谱以简化的方式建模为周期范围为0-4 s的双线性形状,然后被提出用于估算位于不同局部土壤条件下,距离不同距离的结构的位移需求。导致故障的原因,并且程度不同。为了评估所提出的设计位移谱的可靠性,还进行了对应于不同程度超额概率的概率位移谱。通过非弹性和弹性频谱位移之比,分析了对弹塑性系统的非弹性位移需求。然后提出了非弹性位移比的简化关系,作为位移延性,土壤条件和振动周期的函数。最后,作为比较,还考虑了其​​他本构模型来估计非弹性位移比。

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