Title of article
Relaxation approximation to bed-load sediment transport
Author/Authors
Delis، نويسنده , , A.I. and Papoglou، نويسنده , , I.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
26
From page
521
To page
546
Abstract
In this work we propose and apply a numerical method based on finite volume relaxation approximation for computing the bed-load sediment transport in shallow water flows, in one and two space dimensions. The water flow is modeled by the well-known nonlinear shallow water equations which are coupled with a bed updating equation. Using a relaxation approximation, the nonlinear set of equations (and for two different formulations) is transformed to a semilinear diagonalizable problem with linear characteristic variables. A second order MUSCL-TVD method is used for the advection stage while an implicit–explicit Runge–Kutta scheme solves the relaxation stage. The main advantages of this approach are that neither Riemann problem solvers nor nonlinear iterations are required during the solution process. For the two different formulations, the applicability and effectiveness of the presented scheme is verified by comparing numerical results obtained for several benchmark test problems.
Keywords
finite volume , Bed-load sediment transport , Shallow water equations , relaxation methods
Journal title
Journal of Computational and Applied Mathematics
Serial Year
2008
Journal title
Journal of Computational and Applied Mathematics
Record number
1554234
Link To Document