English

On the modelling of tsunami generation and tsunami inundation

Atmospheric and Oceanic Physics 2020-02-20 v1 Classical Physics Fluid Dynamics

Abstract

While the propagation of tsunamis is well understood and well simulated by numerical models, there are still a number of unanswered questions related to the generation of tsunamis or the subsequent inundation. We review some of the basic generation mechanisms as well as their simulation. In particular, we present a simple and computationally inexpensive model that describes the seabed displacement during an underwater earthquake. This model is based on the finite fault solution for the slip distribution under some assumptions on the kinematics of the rupturing process. We also consider an unusual source for tsunami generation: the sinking of a cruise ship. Then we review some aspects of tsunami run-up. In particular, we explain why the first wave of a tsunami is sometimes less devastating than the subsequent waves. A resonance effect can boost the waves that come later. We also look at a particular feature of the 11 March 2011 tsunami in Japan - the formation of macro-scale vortices - and show that these macro-scale vortices can be captured by the nonlinear shallow water equations.

Keywords

Cite

@article{arxiv.1209.1888,
  title  = {On the modelling of tsunami generation and tsunami inundation},
  author = {Frédéric Dias and Denys Dutykh and Laura O'Brien and Emiliano Renzi and Themistoklis Stefanakis},
  journal= {arXiv preprint arXiv:1209.1888},
  year   = {2020}
}

Comments

22 pages, 22 figures, 37 references. Manuscript submitted to Procedia IUTAM. Other author papers can be downloaded at http://www.lama.univ-savoie.fr/~dutykh/