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Consistent floor response spectra for performance-based seismic design of nonstructural elements

机译:非结构元素基于性能的抗震设计的一致地面响应谱

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The achievement of adequate performance objectives for buildings under increasing seismic intensities is not only related to the performance of structural members but also to the behavior of nonstructural elements. The need to properly design nonstructural elements for earthquakes has been largely demonstrated in the last few years and has become an important objective within the earthquake engineering community. A crucial aspect in the proper design of nonstructural elements is the definition of the seismic demand in terms of both absolute acceleration and relative displacement floor response spectra. In the first part of this study, relative displacement and absolute acceleration floor response spectra were computed for four reinforced concrete moment-resisting archetype frames via dynamic time-history analyses and were compared with floor response spectra predicted by means of two recent simplified methodologies available in the literature. It was observed that one of the existing methodologies is generally unable to predict consistent absolute acceleration and relative displacement floor response spectra. An improved procedure is developed for estimating consistent floor response spectra for building structures subjected to low and medium-high seismic intensities. This new procedure improves the predictions of a relative displacement floor response spectrum by constraining its ordinates at long nonstructural periods to the expected peak absolute displacement of the floor. The resulting acceleration and relative displacement response spectra are then consistently related by the well-known pseudo-spectral relationship over the entire nonstructural period range. The effectiveness of the proposed methodology was appraised against floor response spectra computed from nonlinear time-history analyses.
机译:在地震强度不断增加的情况下,为建筑物实现适当的性能目标不仅与结构构件的性能有关,而且还与非结构元素的行为有关。过去几年已充分证明了为地震正确设计非结构性元素的需求,这已成为地震工程界的重要目标。合理设计非结构单元的一个关键方面是根据绝对加速度和相对位移底板响应谱来确定地震需求。在本研究的第一部分中,通过动态时程分析计算了四个钢筋混凝土抗弯原型框架的相对位移和绝对加速度地板响应谱,并将其与通过两种最新的简化方法预测的地板响应谱进行了比较。文献。据观察,现有方法之一通常无法预测一致的绝对加速度和相对位移底板响应谱。开发了一种改进的过程,用于估计承受低和中高地震烈度的建筑结构的一致地板响应谱。通过将其在较长的非结构周期内的纵坐标限制为预期的地板绝对峰值位移,此新程序改进了相对位移地板响应频谱的预测。然后,所产生的加速度和相对位移响应谱在整个非结构周期范围内通过众所周知的伪谱关系始终相关。针对非线性时间历史分析计算的地面响应谱,评估了所提出方法的有效性。

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