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An energy-based envelope function for the stochastic simulation of earthquake accelerograms

机译:基于能量的包络函数用于地震加速度图的随机模拟

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摘要

An energy-based envelope function is developed for use in the stochastic simulation of earthquake ground motion. The envelope function is directly related to the Arias intensity of the ground motion as well to the manner in which this Arias intensity is built-up over time. It is shown that this build-up, represented by a Husid plot, can be very well modelled using a simple lognormal distribution. The proposed envelope makes use of parameters that are commonly available in seismic design situations, either following a deterministic scenario-type analysis or following a more comprehensive probabilistic seismic hazard analysis (PSHA), either in terms of Arias intensity or the more common spectral acceleration. The shape parameters of the envelope function are estimated following the calculation of the analytic envelopes for a large number of records from PEER Next Generation of Attenuation (NCA) database. The envelope may also be used to predict the distribution of peak ground acceleration values corresponding to an earthquake scenario. The distribution thus obtained is remarkably consistent with those of the recent NGA models.
机译:开发了一种基于能量的包络函数,用于地震地震动的随机模拟。包络函数与地面运动的Arias强度以及该Arias强度随时间累积的方式直接相关。结果表明,用一个简单的对数正态分布就可以很好地模拟以哈西德图表示的这种堆积。拟议的包络使用确定性情景类型分析或更全面的概率地震危险性分析(PSHA)之后的抗震设计情况中通常可用的参数,无论是基于Arias强度还是更常见的频谱加速度。包络函数的形状参数是根据PEER下一代衰减(NCA)数据库中大量记录的分析包络计算得出的。包络线还可用于预测对应于地震情况的峰值地面加速度值的分布。这样得到的分布与最近的NGA模型的分布非常一致。

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