skip to main content
OSTI.GOV title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: A robust low diffusive kinetic scheme for the Navier-Stokes/Euler equations

Journal Article · · Journal of Computational Physics
 [1];
  1. Ecole Nationale Superieure de l`Aeronautique et de l`Espace, Toulouse (France)

A new kinetic scheme based on the equilibrium flux method (EFM) and modified using Osher intermediate states is proposed. This new scheme called EFMO combines the robustness of the equilibrium flux method and the accuracy of flux-difference splitting schemes. The original EFM scheme is expressed in terms of simple wave decomposition in which only the linearly degenerate subpath is calculated from Osher numerical flux while nonlinear waves are still evaluated from the regular EFM splitting. Owing to its capability of withstanding intense nonlinear waves and yet exactly resolving contact discontinuities, EFMO is particularly well suited for the resolution of the Navier-Stokes equations as demonstrated by a series of severe test cases including the high-speed viscous flow around a cone, a shock-boundary layer interaction problem, a vacuum apparition problem, the hypersonic flow around a circular cylinder at Mach 100, and the forward-facing step at Mach 3. 36 refs., 7 figs.

OSTI ID:
535381
Journal Information:
Journal of Computational Physics, Vol. 133, Issue 2; Other Information: PBD: 15 May 1997
Country of Publication:
United States
Language:
English

Similar Records

Preconditioned conjugate gradient methods for the Navier-Stokes equations
Journal Article · Sat Jan 01 00:00:00 EST 1994 · Journal of Computational Physics; (United States) · OSTI ID:535381

On bi-grid local mode analysis of solution techniques for 3-D Euler and Navier-Stokes equations
Journal Article · Wed May 01 00:00:00 EDT 1996 · Journal of Computational Physics · OSTI ID:535381

A high-order gas-kinetic Navier-Stokes flow solver
Journal Article · Mon Sep 20 00:00:00 EDT 2010 · Journal of Computational Physics · OSTI ID:535381