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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Modeling of a dispersive tsunami caused by a submarine landslide based on detailed bathymetry of the continental slope in the Nankai trough, southwest Japan
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Modeling of a dispersive tsunami caused by a submarine landslide based on detailed bathymetry of the continental slope in the Nankai trough, southwest Japan

机译:基于Nankai Rourouge南部日本南开坡面的潜艇滑坡造成的分散海啸造型

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Tsunamis caused by submarine landslides are not accompanied by seismic waves and thus may appear at the coast without warning. In this study, detailed bathymetric surveys with a multi-narrow beam echo sounder were used to map submarine landslides on the continental shelf near Cape Muroto, in the Nankai trough off southwestern Japan. One of the surveyed submarine landslides was selected to supply dimensions for the simulation of a submarine mass movement by a two-layer flow model in which the upper and lower layers correspond to seawater and turbidity currents, respectively. The time series of seafloor deformation during this simulated landslide was used as the boundary condition to drive a tsunami simulation. The results showed strong directivity effects during tsunami generation in which pushing-dominant (positive) tsunami waves propagated seaward, in the direction of the submarine landslide, and pulling-dominant (negative) tsunami waves propagated landward. Both types of waves were strongly modified by frequency dispersion. For pulling-dominant waves, a tsunami simulation that included dispersion (Boussinesq) terms predicted greater maximum tsunami heights than a non-dispersive tsunami simulation. To avoid underestimation of tsunami heights, we recommend including dispersion terms when modeling tsunamis caused by submarine landslides for disaster planning purposes.
机译:由潜艇山体滑坡引起的海啸不伴随地震波,因此可能出现在海岸没有警告。在这项研究中,使用多窄光束回声测深仪的详细浴约定调查用于在日本西南部的南开槽附近的南海槽附近的大陆架上映射潜艇滑坡。选择了其中一个受测量的潜水艇垫片以供应用于通过两层流动模型进行潜艇质量运动的尺寸,其中上层和下层分别对应于海水和浊度电流。这种模拟滑坡期间海底变形的时间序列用作驾驶海啸仿真的边界条件。结果表明,在海啸的一代期间,推动占主导地位(正)海啸波在潜艇滑坡的方向上,沿着潜艇滑坡的方向,并拉出占状(负)海啸传播着陆。两种类型的波通过频率分散强烈修改。对于拉动显性波,包括分散(Boussinesq)术语的海啸模拟预测了比非分散海啸模拟更大的最大海啸高度。为避免低估海啸高度,我们建议在模拟海啸损失造成灾害计划目的造成的海啸时包括分散术语。

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