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首页> 外文期刊>Journal of earthquake and tsunami >A UNIVARIATE PHASE SPECTRUM MODEL FOR SIMULATION OF NONSTATIONARY EARTHQUAKE GROUND MOTIONS
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A UNIVARIATE PHASE SPECTRUM MODEL FOR SIMULATION OF NONSTATIONARY EARTHQUAKE GROUND MOTIONS

机译:用于模拟非平稳地震地面运动的统一相位谱模型

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摘要

A family of simulation methods for nonstationary earthquake ground motions is proposed. It employs a univariate model of phase spectrum built up on a time argument associated with the concept of starting-time of phase evolution of frequency components. This phase model allows a feasible phase spectrum just using few variables of the starting-time in numerical implementation. In order to reduce the computational effort of the starting-time, a wave-group propagation formulation is also introduced. Two observed ground motions at the type-II site, i.e. Northridge and Chi-Chi waves, are investigated for illustrative purposes. Inspired from the proposed method, a numerical technique for the spatial variation of ground motions is also developed, and the investigation of coherency function between the example ground motions observed at different stations is carried out. Numerical results prove the validity and applicability of the simulation scheme. This methodology provides a new perspective towards the representation of nonstationary stochastic ground motions.
机译:提出了一系列非平稳地震地震动模拟方法。它采用了基于时间参数的单变量相位频谱模型,该参数与频率分量的相位演化开始时间的概念相关。该相位模型仅在数值实现中仅使用几个启动时间变量即可实现可行的相位谱。为了减少启动时间的计算量,还引入了波群传播公式。为了说明目的,研究了在II型站点上观察到的两个地面运动,即Northridge波和Chi-Chi波。从提出的方法中得到启发,还开发了一种用于地面运动空间变化的数值技术,并研究了在不同站点观测到的示例地面运动之间的相干函数。数值结果证明了该仿真方案的有效性和适用性。这种方法为非平稳随机地震动的表示提供了新的视角。

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