English

Boussinesq modeling of surface waves due to underwater landslides

Classical Physics 2020-02-20 v4 Numerical Analysis Analysis of PDEs Numerical Analysis Atmospheric and Oceanic Physics Computational Physics Fluid Dynamics Geophysics

Abstract

Consideration is given to the influence of an underwater landslide on waves at the surface of a shallow body of fluid. The equations of motion which govern the evolution of the barycenter of the landslide mass include various dissipative effects due to bottom friction, internal energy dissipation, and viscous drag. The surface waves are studied in the Boussinesq scaling, with time-dependent bathymetry. A numerical model for the Boussinesq equations is introduced which is able to handle time-dependent bottom topography, and the equations of motion for the landslide and surface waves are solved simultaneously. The numerical solver for the Boussinesq equations can also be restricted to implement a shallow-water solver, and the shallow-water and Boussinesq configurations are compared. A particular bathymetry is chosen to illustrate the general method, and it is found that the Boussinesq system predicts larger wave run-up than the shallow-water theory in the example treated in this paper. It is also found that the finite fluid domain has a significant impact on the behavior of the wave run-up.

Keywords

Cite

@article{arxiv.1112.5083,
  title  = {Boussinesq modeling of surface waves due to underwater landslides},
  author = {Denys Dutykh and Henrik Kalisch},
  journal= {arXiv preprint arXiv:1112.5083},
  year   = {2020}
}

Comments

32 pages, 16 Figures, 68 references. Other author's papers can be downloaded at http://www.denys-dutykh.com/