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The seismic response of the San Bernardino basin region during the 2001 Big Bear Lake earthquake

机译:圣贝纳迪诺盆地地区在2001年大熊湖地震中的地震反应

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The 2001 Big Bear Lake earthquake (M-w 4.63) was recorded by over 30 strong-motion instruments in the San Bernardino basin region of southern California. At periods longer than about 1 sec, the ground motions in the central portion of the basin have significantly larger amplitudes and extended durations of strong shaking relative to sites outside the basin. In many cases, the peak motions at the basin sites occur 10 or more seconds after the direct S-wave arrival, suggesting that these arrivals are controlled by basin-generated surface waves. To model these motions, I have performed finite-difference simulations using a 3D representation of the basin velocity structure. The basin structure has a minimum shear velocity of 250 m/sec, which coupled with the model grid spacing of 50 m yields a bandwidth resolution limit of T > 1 sec for the numerical simulations. The simulations do quite well at reproducing the observed waveforms, amplitudes, and durations at periods of 3 sec and longer. At shorter periods (1-2 sec), the fit to the recorded motions is less well resolved, especially in matching the waveforms of the later-arriving phases. This suggests that in regions of complex geology, deterministic waveform modeling at periods approaching 1 sec involves more than simply reducing the minimum velocity threshold and, in particular, requires knowledge of the subsurface structure and distribution of seismic velocities at relatively short length scales (on the order of 50 m).
机译:2001年大熊湖地震(M-w 4.63)由加利福尼亚南部圣贝纳迪诺盆地地区的30多种强震仪器记录。在比大约1秒长的时间段内,盆地中心部分的地震动具有明显更大的振幅,并且相对于盆地外部的地点具有强烈的震动持续时间。在许多情况下,盆地位置的峰值运动发生在直接S波到达后10秒钟或更长时间,这表明这些到达是由盆地产生的表面波控制的。为了模拟这些运动,我使用盆地速度结构的3D表示进行了有限差分模拟。盆地结构的最小剪切速度为250 m / sec,再加上模型网格间距为50 m,则数值模拟的带宽分辨率极限为T> 1 sec。在再现观察到的波形,幅度和持续时间为3秒或更长时间的情况下,仿真效果很好。在较短的时间段(1-2秒)内,对记录的运动的拟合分析得不太好,特别是在匹配后面到达阶段的波形时。这表明在复杂地质区域中,确定性波形建模在接近1秒的时间内涉及的不仅仅是简单地降低最小速度阈值,而且尤其需要了解地下结构和相对短的长度尺度上的地震速度分布。约50 m)。

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