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首页> 外文期刊>Bulletin of the Seismological Society of America >Effects of Seabed Surface Rupture Versus Buried Rupture on Tsunami Wave Modeling: A Case Study for the 2011 Tohoku, Japan, Earthquake
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Effects of Seabed Surface Rupture Versus Buried Rupture on Tsunami Wave Modeling: A Case Study for the 2011 Tohoku, Japan, Earthquake

机译:海床表面破裂与埋藏破裂对海啸波模拟的影响:以2011年日本东北地震为例

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摘要

Parametric investigations of tsunami wave modeling are performed to discuss an important issue related to the sensitivity of tsunami simulation results to varied top-edge depths of a shallowly dipping fault plane (seabed surface rupture versus buried fault rupture). Input boundary conditions (i.e., vertical seabed deformation) for tsunami simulation are calculated using so-called Okada equations. The analysis results for the 2011 Tohoku, Japan, tsunami case study highlight the significant effects of varied top-edge depth parameters on vertical seabed deformation and tsunami wave heights. In particular, the uplifted water outside of the fault plane for the buried rupture case, in comparison with the seabed surface-rupture case, causes large tsunami waves. The results are applicable to other tsunamigenic earthquakes that occur on a gently dipping fault plane at a shallow depth (e.g., anticipated Nankai-Tonankai earthquake) and have important implications on how tsunami inversion should be carried out and how developed source models should be interpreted.
机译:进行了海啸波建模的参数研究,以讨论与海啸模拟结果对浅倾断层平面的不同顶缘深度(海床表面破裂与埋藏断层破裂)的敏感性相关的重要问题。使用所谓的冈田方程式计算海啸模拟的输入边界条件(即垂直海床变形)。 2011年日本东北海啸案例研究的分析结果突显了不同的顶部深度参数对垂直海床变形和海啸波高的重大影响。特别地,与海床表面破裂情况相比,埋藏破裂情况在断层平面外部的隆起的水引起大的海啸波。该结果适用于在浅深度的缓倾断层平面上发生的其他海啸地震(例如,预期的南海-南海地震),并对应如何进行海啸反演以及如何解释已开发的震源模型具有重要意义。

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