Title of article
Building fast well-balanced two-stage numerical schemes for a model of two-phase flows
Author/Authors
Thanh، نويسنده , , Mai Duc، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
23
From page
1836
To page
1858
Abstract
We present a set of well-balanced two-stage schemes for an isentropic model of two-phase flows arisen from the modeling of deflagration-to-detonation transition in granular materials. The first stage is to absorb the source term in nonconservative form into equilibria. Then in the second stage, these equilibria will be composed into a numerical flux formed by using a convex combination of the numerical flux of a stable Lax–Friedrichs-type scheme and the one of a higher-order Richtmyer-type scheme. Numerical schemes constructed in such a way are expected to get the interesting property: they are fast and stable. Tests show that the method works out until the parameter takes on the value CFL, and so any value of the parameter between zero and this value is expected to work as well. All the schemes in this family are shown to capture stationary waves and preserves the positivity of the volume fractions. The special values of the parameter 0 , 1 / 2 , 1 / ( 1 + CFL ) , and CFL in this family define the Lax–Friedrichs-type, FAST1, FAST2, and FAST3 schemes, respectively. These schemes are shown to give a desirable accuracy. The errors and the CPU time of these schemes and the Roe-type scheme are calculated and compared. The constructed schemes are shown to be well-balanced and faster than the Roe-type scheme.
Keywords
Lax–Friedrichs scheme , Richtmyer’s scheme , Roe scheme , Two-phase flow , Well-balanced scheme
Journal title
Communications in Nonlinear Science and Numerical Simulation
Serial Year
2014
Journal title
Communications in Nonlinear Science and Numerical Simulation
Record number
1538511
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