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A Simplified Technique for Simulating Wide-band Strong Ground Motion for Two Recent Himalayan Earthquakes

机译:模拟最近两次喜马拉雅地震的宽带强地震动的简化技术

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摘要

A simplified technique for simulation of wide-band strong motion based on simple regression relations and Empirical Green’s Function (EGF) technique by Irikura (1986) is presented in this paper. The method uses the acceleration envelope as a shaping window for a filtered white Gaussian noise, to get the synthetic accelerogram from each subfault. Correction factors for slip of large and small events and transmission factors at each boundary of different layers are included in this synthetic accelerogram. The synthetic accelerogram obtained from each subfault is used as the Green’s function to get resultant records. Simulations are made for the confirmed models of the Uttarkashi and the Chamoli earthquakes at a number of stations to get wide-band strong ground motion. The comparison of synthetic with the observed records over a wide range of frequencies for two different Himalayan earthquakes establishes the efficacy of the present technique.
机译:本文提出了一种简单的宽带强运动仿真技术,该技术基于Irikura(1986)的简单回归关系和格林格林函数(EGF)技术。该方法将加速度包络线用作过滤后的高斯白噪声的整形窗口,以从每个子故障中获取合成加速度图。该合成加速度图中包括了大小事件的滑动校正因子以及不同层的每个边界处的传输因子。从每个子故障获得的合成加速度图被用作格林函数来获取结果记录。在多个站点对已确认的Uttarkashi和Chamoli地震模型进行了仿真,以获得宽带强地震动。在两次不同的喜马拉雅地震中,合成频率与观察到的记录在很宽的频率范围内的比较确定了本技术的有效性。

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