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Direct displacement-based seismic design of flexible-base structures subjected to pulse-like ground motions

机译:基于直接位移的柔性基础结构在脉冲状地震动作用下的抗震设计

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In this paper, a practical displacement-based framework is presented for seismic design of flexible-base structures in near-fault regions. Particular attention is given to pulse-like motions that may cause significant damage to building structures. The proposed design methodology utilises displacement response spectra constructed using a new procedure, which takes into account the effect of pulse period. An equivalent fixed-base single degree-of-freedom oscillator is adopted to capture the salient features of an actual soil-structure interaction (SSI) system in order to facilitate the design process. Two step-by-step direct-displacement based design (DDBD) procedures based on compatible inelastic spectra and equivalent linearisation are introduced. The effectiveness of the stated design procedures is examined using results of nonlinear response history analysis of two example SSI systems subjected to a set of sixteen spectrum-compatible near-fault pulse-like ground motions. The results of this study suggest that the procedure based on inelastic design spectra, in general, provides a better design solution than using an elastic linearisation Method, especially when structures are designed with a higher ductility demand.
机译:本文提出了一种基于位移的实用框架,用于近断层区域柔性基础结构的抗震设计。特别注意可能会严重破坏建筑结构的类脉冲运动。提出的设计方法利用了使用新程序构造的位移响应谱,该程序考虑了脉冲周期的影响。采用等效的固定基单自由度振荡器来捕获实际土壤-结构相互作用(SSI)系统的显着特征,以简化设计过程。介绍了基于兼容的非弹性光谱和等效线性化的两个逐步的基于直接位移的设计(DDBD)程序。使用两个示例SSI系统的非线性响应历史分析结果,检验了所述设计程序的有效性,该示例系统进行了一组16种频谱兼容的近断层脉冲状地面运动。这项研究的结果表明,与使用弹性线性化方法相比,基于非弹性设计谱的过程通常可提供更好的设计解决方案,尤其是在设计具有更高延展性要求的结构时。

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