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Implicit Finite-Difference Simulation of Flow about Arbitrary Two-Dimensional Geometries

AIAA Journal · 1978 · Vol. 16(7) · pp. 679–686
J. L. Steger

Abstract

Finite-difference procedures are used to solve either the Euler equations or the thin-layer Navier-Stokes equations subject to arbitrary boundary conditions. An automatic grid generation program is employed, and because an implicit finite-difference algorithm for the flow equations is used, time steps are not severely limited when grid points are finely distributed. Computational efficiency and compatibility to vectorized computer processors is maintained by use of approximate factorization techniques. Computed results for both inviscid and viscous flow about airfoils are described and compared to viscous known solutions.

Computational Fluid Dynamics and AerodynamicsFluid Dynamics and Turbulent FlowsAdvanced Numerical Methods in Computational MathematicsInviscid flowEuler equationsAirfoilFinite differenceFinite difference methodNavier–Stokes equationsGridEuler's formulaMathematicsBoundary value problem
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