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Implications on 1?+?1 D Tsunami Runup Modeling due to Time Features of the Earthquake Source

机译:由于地震源的时间特征,对1?+ 1 d Tsunami运行建模的影响

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摘要

The time characteristics of the seismic source are usually neglected in tsunami modeling, due to the difference in the time scale of both processes. Nonetheless, there are just a few analytical studies that intended to explain separately the role of the rise time and the rupture velocity. In this work, we extend an analytical 1?+?1 D solution for the shoreline motion time series, from the static case to the kinematic case, by including both rise time and rupture velocity. Our results show that the static case corresponds to a limit case of null rise time and infinite rupture velocity. Both parameters contribute in shifting the arrival time, but maximum runup may be affected by very slow ruptures and long rise time. Parametric analysis reveals that runup is strictly decreasing with the rise time while is highly amplified in a certain range of slow rupture velocities. For even lower rupture velocities, the tsunami excitation vanishes and for larger, quicker approaches to the instantaneous case.
机译:由于两种过程的时间量表差异,地震源的时间特征通常忽略了海啸建模。尽管如此,只有一些分析研究旨在单独解释上升时间和破裂速度的作用。在这项工作中,我们通过包括上升时间和破裂的速度来从静态外壳到运动壳的静态案例扩展分析1?1 d解决方案。我们的结果表明,静态外壳对应于空上升时间和无限破裂速度的限制情况。这两个参数都有助于转移到达时间,但最大的运行可能会受到非常缓慢的破裂和长升高时间的影响。参数分析表明,在速度破裂速度范围内的一定范围内高度放大,液化时间是严格地减少。对于甚至更低的破裂速度,海啸励磁消失,而且较大,瞬时案例的方法更快。

著录项

  • 来源
    《Pure and Applied Geophysics》 |2018年第4期|共12页
  • 作者单位

    Department of Geophysics Faculty of Physical and Mathematical Sciences University of Chile;

    National Seismological Center Faculty of Physical and Mathematical Sciences University of Chile;

    Department of Geophysics Faculty of Physical and Mathematical Sciences University of Chile;

    Department of Geophysics Faculty of Physical and Mathematical Sciences University of Chile;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Tsunami; seismology; runup;

    机译:海啸;地震学;跑步;

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