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A quasi-conservative discontinuous Galerkin method for multi-component flows using the non-oscillatory kinetic flux

Authors :
Luo, Dongmi
Qiu, Jianxian
Zhu, Jun
Chen, Yibing
Luo, Dongmi
Qiu, Jianxian
Zhu, Jun
Chen, Yibing
Publication Year :
2020

Abstract

In this paper, a high order quasi-conservative discontinuous Galerkin (DG) method using the non-oscillatory kinetic flux is proposed for the 5-equation model of compressible multi-component flows with Mie-Gr\"uneisen equation of state. The method mainly consists of three steps: firstly, the DG method with the non-oscillatory kinetic flux is used to solve the conservative equations of the model; secondly, inspired by Abgrall's idea, we derive a DG scheme for the volume fraction equation which can avoid the unphysical oscillations near the material interfaces; finally, a multi-resolution WENO limiter and a maximum-principle-satisfying limiter are employed to ensure oscillation-free near the discontinuities, and preserve the physical bounds for the volume fraction, respectively. Numerical tests show that the method can achieve high order for smooth solutions and keep non-oscillatory at discontinuities. Moreover, the velocity and pressure are oscillation-free at the interface and the volume fraction can stay in the interval [0,1].<br />Comment: 41 pages, 70 figures

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1228420669
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1007.s10915-021-01494-z