NASA NTRS ยท 19810054609
Numerical method for gas dynamics combining characteristic and conservation concepts
Abstract
An efficient implicit numerical method that solves the compressible Navier-Stokes equations in arbitrary curvilinear coordinates by the finite-volume technique is presented. An intrinsically dissipative difference scheme and a fully implicit treatment of boundary conditions, based on characteristic and conservation concepts, are used to improve stability and accuracy. Efficiency is achieved by using a diagonal form of the implicit algorithm and spatially varying time-steps. Comparisons of various schemes and methods are presented for one- and two-dimensional flows, including transonic separated flow past a thick circular-arc airfoil in a channel. The new method is equal to or better than a version of MacCormack's hybrid method in accuracy and it converges to a steady state up to an order of magnitude faster.
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Coakley, T. J.. 1981-06-01. Numerical method for gas dynamics combining characteristic and conservation concepts. https://ntrs.nasa.gov/citations/19810054609
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