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Validation of 3-D basin structure models for long-period ground motion simulation in the Osaka basin, western Japan

机译:在日本西部大阪盆地进行长周期地震动模拟的3-D盆地结构模型的验证

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We studied the applicability of two types of existing three-dimensional (3-D) basin velocity structure models of the Osaka basin, western Japan for long-period ground motion simulations. We synthesized long-period (3-20 s) ground motions in the Osaka basin during a M6.5 earthquake that occurred near the hypothetical Tonankai earthquake source area, approximately 200 km from Osaka. The simulations were performed using a 3-D finite-difference method with nonuniform staggered grids using the two basin velocity structure models. To study the ground motion characteristics inside the basin, we evaluated the wave field inside the basin using the transfer functions derived from the synthetics at the basin and a reference rock site outside the basin. The synthetic waveforms at the basin site were obtained by a convolution of the calculated transfer function and the observed waveform at the reference rock site. First, we estimated the appropriate Q values for the sediment layers. Assuming that the Q value depends on the S wave velocity V (S) and period T, it was set to Q=(1/3V(S))(T-0/T) where V-S is in m/s and the reference period T-0 is 3.0 s. Second, we compared the synthetics and the observations using waveforms and pseudovelocity response spectra, together with a comparison of the velocity structures of the two basin models. We also introduced a goodness-of-fit factor to the pseudovelocity response spectra as an objective index. The synthetics of both the models reproduced the observations reasonably well at most of the stations in the central part the basin. At some stations, however, especially where the bedrock depth varies sharply, there were noticeable discrepancies in the simulation results of the models, and the synthetics did not accurately reproduce the observation. Our results indicate that the superiority of one model over the other cannot be determined and that an improvement in the basin velocity structure models based on simulation studies is required, especially along the basin edges. We also conclude that our transfer function method can be used to examine the applicability of the basin velocity structure models for long-period ground motion simulations.
机译:我们研究了日本西部大阪盆地两类现有的三维(3-D)盆地速度结构模型在长期地面运动模拟中的适用性。我们合成了在假想的Tonankai地震震源区附近发生的M6.5地震期间大阪盆地的长周期(3-20 s)地震动,该地震源距大阪约200公里。使用两个盆地速度结构模型,使用具有非均匀交错网格的3-D有限差分方法进行了模拟。为了研究盆地内部的地震动特征,我们使用从盆地合成物和盆地外部的参考岩石场得到的传递函数评估了盆地内部的波场。通过计算传递函数和参考岩石现场观测波形的卷积获得盆地现场的合成波形。首先,我们估算了沉积物层的适当Q值。假设Q值取决于S波速度V(S)和周期T,则将其设置为Q =(1 / 3V(S))(T-0 / T),其中VS以m / s为单位T-0周期为3.0 s。其次,我们使用波形和伪速度响应谱比较了合成物和观测资料,并比较了两个盆地模型的速度结构。我们还向拟速度响应谱引入了拟合优度作为客观指标。两种模型的合成物在盆地中部的大多数站点都很好地再现了观测结果。但是,在某些站点,尤其是基岩深度急剧变化的站点,模型的模拟结果存在明显差异,并且合成模型无法准确地再现观测结果。我们的结果表明,无法确定一种模型相对于另一种模型的优越性,并且需要基于模拟研究,尤其是沿盆地边缘的盆地速度结构模型的改进。我们还得出结论,我们的传递函数方法可用于检验盆地速度结构模型在长期地面运动模拟中的适用性。

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