CHINESE JOURNAL OF COMPUTATIONAL PHYSICS ›› 2009, Vol. 26 ›› Issue (6): 799-805.

Previous Articles     Next Articles

A Second-order Hybrid Rotated Riemann Solver for Multi-dimensional Euler Equations on Unstructured Meshes

LEI Guodong, REN Yuxin   

  1. Department of Engineering Mechanics, Tsinghua University, Beijing 100084, China
  • Received:2008-07-07 Revised:2008-12-01 Online:2009-11-25 Published:2009-11-25

Abstract: A second-order rotational upwind transport scheme for multidimensionul compressible Euler equations on unstructured meshes is presented. Cell-centered FVM is employed in which gradient calculation is node-based with more neighbor cells. Slope limiter schemes are constructed for unstructured meshes. Numerical fluxes are evaluated by solving two Riemann problems in two upwind directions, including velocity-difference vector and perpendicular direction. The scheme eliminate shock instabilities or carbuncle phenomena in flux-difference splitting type schemes completely. A hybrid rotated Riemann solver is employed to form an economical numeric flux function and base Riemann solvers employ HLL and Roe FDS.

Key words: unstructured grid, hybrid rotated Riemann solver, Euler equation, Riemann solver, multi-dimensional scheme, shock capture, carbuncle phenomena

CLC Number: