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Evaluation of ground motion selection and modification procedures using synthetic ground motions

机译:使用合成地震动评估地震动选择和修改程序

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摘要

This study presents a novel approach for evaluating ground motion selection and modification (GMSM) procedures in the context of probabilistic seismic demand analysis. In essence, synthetic ground motions are employed to derive the benchmark seismic demand hazard curve (SDHC), for any structure and response quantity of interest, and to establish the causal relationship between a GMSM procedure and the bias in its resulting estimate of the SDHC. An example is presented to illustrate how GMSM procedures may be evaluated using synthetic motions. To demonstrate the robustness of the proposed approach, two significantly different stochastic models for simulating ground motions are considered. By quantifying the bias in any estimate of the SDHC, the proposed approach enables the analyst to rank GMSM procedures in their ability to accurately estimate the SDHC, examine the sufficiency of intensity measures employed in ground motion selection, and assess the significance of the conditioning intensity measure in probabilistic seismic demand analysis. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:这项研究提出了一种在概率地震需求分析的背景下评估地震动选择和修正(GMSM)程序的新颖方法。实质上,对于任何感兴趣的结构和响应量,都采用合成地面运动来得出基准地震需求危险曲线(SDHC),并建立GMSM程序与其对SDHC的最终估计中的偏差之间的因果关系。给出一个示例来说明如何使用合成运动来评估GMSM程序。为了证明所提出方法的鲁棒性,考虑了两个明显不同的随机模型来模拟地面运动。通过量化SDHC的任何估计中的偏差,所提出的方法使分析人员能够对GMSM程序进行准确估计SDHC,检查地震动选择中使用的强度测量的充分性以及评估调节强度的重要性的能力排名概率地震需求分析中的测量。版权所有(c)2015 John Wiley&Sons,Ltd.

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