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A stochastic model and synthesis for near-fault impulsive ground motions

机译:近故障脉冲地面运动的随机模型和综合

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The orientations of ground motions are paramount when the pulse-like motions and their unfavorable seismic responses are considered. This paper addresses the stochastic modeling and synthesizing of near-fault impulsive ground motions with forward directivity effect taking the orientation of the strongest pulses into account. First, a statistical parametric analysis of velocity time histories in the orientation of the strongest pulse with a specified magnitude and various fault distances is performed. A new stochastic model is established consisting of a velocity pulse model with random parameters and a stochastic approach to synthesize high-frequency velocity time history. The high-frequency velocity history is achieved by integrating a stochastic high-frequency accelerogram, which is generated via the modified K-T spectrum of residual acceleration histories and then modulated by the specific envelope function. Next, the associated parameters of pulse model, envelope function, and power spectral density are estimated by the least-square fitting. Some chosen parameters in the stochastic model of near-fault motions based on correlation analysis are regarded as random variables, which are validated to follow the normal or lognormal distribution. Moreover, the number theoretical method is suggested to select efficiently representative points, for generating artificial near-fault impulsive ground motions with the feature of the strongest pulse, which can be used to the seismic response and reliability analysis of critical structures conveniently. Finally, the simulated ground motions demonstrate that the synthetic ground motions generated by the proposed stochastic model can represent the impulsive characteristic of near-fault ground motions.
机译:当考虑类脉冲运动及其不利的地震响应时,地震动的方向至关重要。考虑到最强脉冲的定向,本文研究了具有前向指向性效应的近断层脉冲地面运动的随机建模和综合。首先,对具有指定幅度和各种故障距离的最强脉冲的方向上的速度时间历史进行统计参数分析。建立了一个新的随机模型,该模型由具有随机参数的速度脉冲模型和一种用于合成高频速度时程的随机方法组成。高频速度历史是通过积分随机高频加速度图获得的,该加速度加速度图是通过修正的残余加速度历史的K-T谱生成的,然后通过特定的包络函数进行调制。接下来,通过最小二乘拟合估计脉冲模型,包络函数和功率谱密度的相关参数。基于相关性分析的近断层随机模型中的某些选定参数被视为随机变量,经验证它们遵循正态分布或对数正态分布。此外,建议采用数论方法来有效地选择代表点,以产生具有最强脉冲特征的人工近断层冲动地震动,从而可以方便地用于关键结构的地震反应和可靠度分析。最后,模拟地震动表明,所提出的随机模型产生的合成地震动可以代表近断层地震动的脉冲特性。

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