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Earthquake accelerogram simulation with statistical law of evolutionary power spectrum

机译:具有演化功率谱统计规律的地震加速度图模拟

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By using the technique for evolutionary power spectrum proposed by Nakayama and with reference to the Kameda formula, an evolutionary spectrum prediction model for given earthquake magnitude and distance is established based on the 80 near-source acceleration records at rock surface with large magnitude from the ground motion database of western U.S.. Then a new iteration method is developed for generation of random accelerograms non-stationary both in amplitude and frequency which are compatible with target evolutionary spectrum. The phase spectra of those simulated accelerograms are also non-stationary in time and frequency domains since the interaction between amplitude and phase angle has been considered during the generation. Furthermore, the sign of the phase spectrum increment is identified to accelerate the iteration. With the proposed statistical model for predicting evolutionary power spectra and the new method for generating compatible time history, the artificial random earthquake accelerograms non-stationary both in amplitude and frequency for certain magnitude and distance can be provided.
机译:利用中山提出的演化功率谱技术,并参考龟田公式,基于80个近地面大震源近地加速度记录,建立了给定地震震级和距离的演化谱预测模型。美国西部运动数据库,然后开发了一种新的迭代方法,以生成振幅和频率均非平稳的,与目标进化谱兼容的随机加速度图。由于在生成过程中已经考虑了幅度和相位角之间的相互作用,因此这些模拟加速度计的相位谱在时域和频域中也是不稳定的。此外,识别相位频谱增量的符号以加速迭代。利用所提出的用于预测进化功率谱的统计模型和用于生成兼容时程的新方法,可以提供在一定幅度和距离上振幅和频率均非平稳的人工随机地震加速度图。

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