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A dispersion-corrected finite element model for simulation of distant tsunamis

Authors
Yoon, Sung BumLim, Chae HoChoi, Junwoo
Issue Date
Mar-2008
Publisher
Taylor & Francis
Keywords
tsunamis; dispersion-correction; finite element model; Boussinesq equations
Citation
Coastal Engineering Journal, v.50, no.1, pp 75 - 99
Pages
25
Indexed
SCIE
SCOPUS
Journal Title
Coastal Engineering Journal
Volume
50
Number
1
Start Page
75
End Page
99
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/42626
DOI
10.1142/S0578563408001727
ISSN
2166-4250
1793-6292
Abstract
A dispersion-corrected finite element model is developed to simulate the propagation of distant tsunamis over a slowly varying topography. A linear Boussinesq wave equation is solved to consider the dispersion effect of tsunami waves by employing a linear triangular mesh and an explicit time integration scheme. The numerical dispersion associated with the explicit scheme is minimized by adjusting both the mesh size and the dispersion-correction parameter. In order to test the present model, numerical simulations for the propagation of an initial Gaussian hump over various constant depths are conducted,and the numerical results are compared with analytical solutions of the linear Boussinesq equations. The present model is also tested for the propagation of tsunamis over a sub merged circular shoal and the numerical results are compared with the numerical solutions obtained using an other Boussinesq model. The present model is shown to be efficient and considerably accurate.
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COLLEGE OF ENGINEERING SCIENCES > DEPARTMENT OF CIVIL AND ENVIRONMENTAL ENGINEERING > 1. Journal Articles

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