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Parametric Study of Tsunamis Generated by Earthquakes and Landslides

机译:地震和滑坡产生海啸的参数研究

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Tsunami generation and propagation mechanisms need to be clearly understood in order to inform predictive models and improve coastal community preparedness. Physical experiments, supported by mathematical models, can potentially provide valuable input data for standard predictive models of tsunami generation and propagation. A unique experimental set-up has been developed to reproduce a coupled-source tsunami generation mechanism: a two-dimensional underwater fault rupture followed by a submarine landslide. The test rig was located in a 20 m flume in the COAST laboratory at the University of Plymouth. The aim of the experiments is to provide quality data for developing a parametrisation of the initial conditions for tsunami generation processes which are triggered by a dual-source. During the test programme, the water depth and the landslide density were varied. The position of the landslide model was tracked and the free surface elevation of the water body was measured. Hence the generated wave characteristics were determined. For a coupled-source scenario, the generated wave is crest led, followed by a trough of smaller amplitude decreasing steadily as it propagates along the flume. The crest amplitude was shown to be influenced by the fault rupture displacement scale, whereas the trough was influenced by the landslide’s relative density.
机译:需要清楚地了解海啸的产生和传播机制,以便为预测模型提供信息并改善沿海社区的备灾情况。数学模型支持的物理实验可以潜在地为海啸发生和传播的标准预测模型提供有价值的输入数据。已经开发出一种独特的实验装置来重现耦合源海啸的产生机制:二维水下断层破裂,然后是海底滑坡。该试验台位于普利茅斯大学COAST实验室的20 m槽中。实验的目的是为开发由双源触发的海啸发生过程的初始条件的参数化提供质量数据。在测试程序中,水深和滑坡密度有所不同。跟踪滑坡模型的位置,并测量水体的自由表面高度。因此,确定了所产生的波浪特征。对于耦合源方案,所产生的波是波峰引导的,随后是一个较小幅度的波谷,它沿着水槽传播时逐渐减小。结果表明,波峰振幅受断层破裂位移规模的影响,而波谷受滑坡相对密度的影响。

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