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Optimal Intensity Measures for the Characterization of the Ground Motion in Performance-Based Seismic Design

机译:基于性能的地震设计中地面运动表征的最佳强度措施

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In Performance-Based Seismic Design, the uncertainty in the estimation of the structural damage is related to the "efficiency" of the intensity measure, IM, adopted to describe the site-specific seismic hazard. Moreover, the choice of an efficient IM may reduce the number of nonlinear dynamic analyses that are needed to estimate the seismic demand with a given confidence level, and taking into account the record-to-record variability. In this paper, the incremental dynamic analysis is used as a tool to compare the efficiency of five IM's. The choice of the most efficient IM depends on the structural typology, the damage level the structure will experience, and the damage measure, DM, that is adopted to describe the damage state of the structure. Thus, the comparison is performed on two reinforced concrete frame structures, built in Italy and designed for gravity loads without any seismic provision; four damage measures are considered.
机译:在基于性能的地震设计中,结构损伤估计的不确定性与强度测量的“效率”有关,即我采用了描述了特定于地的地震危害。此外,有效的IM的选择可以减少估计具有给定置信水平的地震需求所需的非线性动态分析的数量,并考虑到记录到记录的可变性。在本文中,使用增量动态分析用作比较五IM的效率的工具。最高效的IM的选择取决于结构类型,结构将经历的损伤水平,以及采用损伤措施DM来描述结构的损坏状态。因此,对两种钢筋混凝土框架结构进行比较,在意大利建造,设计用于重力载荷,而无需任何地震规定;考虑了四项损害措施。

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