Cite this article:
Cheng Xiao-Han, Nie Yu-Feng, Feng Jian-Hu, Luo Xiao-Yu, Cai Li. Self-adjusting entropy-stable scheme for compressible Euler equationsJ. Chin. Phys. B, 2015, 24(2): 020202.
| Cheng Xiao-Han, Nie Yu-Feng, Feng Jian-Hu, Luo Xiao-Yu, Cai Li. Self-adjusting entropy-stable scheme for compressible Euler equationsJ. Chin. Phys. B, 2015, 24(2): 020202. |
Self-adjusting entropy-stable scheme for compressible Euler equations
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Abstract
In this work, a self-adjusting entropy-stable scheme is proposed for solving compressible Euler equations. The entropy-stable scheme is constructed by combining the entropy conservative flux with a suitable diffusion operator. The entropy has to be preserved in smooth solutions and be dissipated at shocks. To achieve this, a switch function, which is based on entropy variables, is employed to make the numerical diffusion term be automatically added around discontinuities. The resulting scheme is still entropy-stable. A number of numerical experiments illustrating the robustness and accuracy of the scheme are presented. From these numerical results, we observe a remarkable gain in accuracy. -
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