NASA NTRS ยท 19940021651
Comments regarding two upwind methods for solving two-dimensional external flows using unstructured grids
Abstract
Steady flow over the leading portion of a multicomponent airfoil section is studied using computational fluid dynamics (CFD) employing an unstructured grid. To simplify the problem, only the inviscid terms are retained from the Reynolds-averaged Navier-Stokes equations - leaving the Euler equations. The algorithm is derived using the finite-volume approach, incorporating explicit time-marching of the unsteady Euler equations to a time-asymptotic, steady-state solution. The inviscid fluxes are obtained through either of two approximate Riemann solvers: Roe's flux difference splitting or van Leer's flux vector splitting. Results are presented which contrast the solutions given by the two flux functions as a function of Mach number and grid resolution. Additional information is presented concerning code verification techniques, flow recirculation regions, convergence histories, and computational resources.
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Kleb, W. L.. 1994-02-01. Comments regarding two upwind methods for solving two-dimensional external flows using unstructured grids. https://ntrs.nasa.gov/citations/19940021651
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