Development of a nested tsunami propagation model

  • Kim, Jihun
  • Ahn, Seongho
  • Ha, Taemin
  • Cho, Yong-Sik
Citations

SCOPUS

1

초록

The linear shallow-water equations have been used frequently to simulate transoceanic propagation of tsunamis instead of the linear Boussinesq equations. In previous studies, the physical dispersion is compensated by using the numerical dispersion generated from the leap-frog finite difference scheme. However, the linear Boussinesq equations can be directly solved because computer technique has been improved dramatically. In this study, a new finite difference scheme is proposed to discretize the linear Boussinesq equations. The newly developed model is applied to propagation of a Gaussian hump over a constant water depth. The model is then verified by comparing predicted results with analytic solutions. Predicted results agree well with analytical solutions. The model can be directly applied to simulation of transoceanic propagation of tsunamis.

키워드

Dispersion effectsFinite difference methodLinear Boussinesq equationsTsunamiAnalytic solutionAnalytical solutionsBoussinesq equationsComputer techniquesDeveloped modelDispersion effectFinite differenceFinite difference schemeGaussiansNumerical dispersionsPhysical dispersionPropagation modelsShallow water equationsWater depthComputer simulationEquations of motionFinite difference methodNumerical methodsTsunamisDispersion (waves)
제목
Development of a nested tsunami propagation model
저자
Kim, JihunAhn, SeonghoHa, TaeminCho, Yong-Sik
발행일
2011-06
유형
Conference Paper
저널명
Proceedings of the International Offshore and Polar Engineering Conference
페이지
259 ~ 263