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Validation of the Deep Velocity Structure of the Tokachi Basin Based on 3-D Simulation of Long-Period Ground Motions

机译:基于长周期地震动3-D模拟的十胜盆地深层速度结构验证

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摘要

The construction of 3-D basin velocity structures is ongoing in many regions of Japan. The structure models are constructed mainly for the prediction of long-period ground motions from future large earthquakes. In this paper, we validate the 3-D velocity structure model of the Tokachi basin, a deep sedimentary basin located in eastern Hokkaido, Japan, based on 3-D simulation of long-period (2-20 s) ground motions from three nearby intermediate-depth earthquakes; this model was constructed by the National Research Institute for Earth Science and Disaster Prevention (NIED). We make comparisons between the observed and synthetic long-period ground motions for the basin-induced surface waves as well as the direct S-wave. We also try to revise the 3-D velocity structure in the western part of the Tokachi basin based on 1-D velocity structures estimated using long-period S-wave modeling and the microtremor survey method. We then perform the 3-D simulation again to validate the revised model. Based on quantitative comparisons of the long-period ground motions from these simulations with those observed, we conclude that the NIED and revised velocity structure models are generally good at the central basin sites, but that both models require modification at the basin edges to explain the details of the observed basin-induced surface waves.
机译:日本许多地区都在进行3-D盆地速度结构的建设。结构模型的建立主要是为了预测未来大地震的长周期地震动。本文基于日本北海道东部深部沉积盆地十胜盆地的3-D速度结构模型,基于来自附近三个附近地区的长周期(2-20 s)地震动的3-D模拟,验证了该模型的有效性。中深度地震;该模型是由美国国家地球科学与灾难预防研究所(NIED)构建的。我们对盆地诱发的面波以及直接S波的观测到的合成长周期地震动进行了比较。我们还尝试根据长周期S波模型和微震勘测方法估算的一维速度结构来修改十胜盆地西部的3-D速度结构。然后,我们再次执行3-D仿真以验证修改后的模型。根据这些模拟与观测到的长期地面运动的定量比较,我们得出结论:NIED和修正的速度结构模型在盆地中心部位通常是好的,但是两个模型都需要在盆地边缘进行修改以解释观测到的盆地诱发面波的细节。

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