Propagation and run-up of nearshore tsunamis with HLLC approximate Riemann solver

  • Kim, Dae Hong
  • Cho, Yong Sik
  • Yi, Yong Kon
Citations

WEB OF SCIENCE

13
Citations

SCOPUS

18

초록

A numerical model describing the propagation and run-up process of nearshore tsunamis in the vicinity of shorelines is developed based on an approximate Riemann solver. The governing equations of the model are the nonlinear shallow-water equations. The governing equations are discretized explicitly by using a finite volume method. The nonlinear terms in the momentum equations are solved with the Harten-Lax-van Leer-Contact (HLLC) approximate Riemann solver. The developed model is first applied to prediction of water motions in a parabolic basin, and propagation and subsequent run-up process of nearshore tsunamis around a circular island. Computed results are then compared with available analytical solutions and laboratory measurements. Very reasonable agreements are observed.

키워드

shallow-water equationsHLLC approximate Riemann solvernearshore tsunamirun-upHYPERBOLIC CONSERVATION-LAWSEQUATIONSSCHEMESMODEL
제목
Propagation and run-up of nearshore tsunamis with HLLC approximate Riemann solver
저자
Kim, Dae HongCho, Yong SikYi, Yong Kon
DOI
10.1016/j.oceaneng.2006.07.001
발행일
2007-06
유형
Article
저널명
Ocean Engineering
34
8-9
페이지
1164 ~ 1173