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NASA NTRS · 19750045108

Viscous flow solutions with a cubic spline approximation

Abstract

A cubic spline approximation is used for the solution of several problems in fluid mechanics. This procedure provides a high degree of accuracy even with a nonuniform mesh, and leads to a more accurate treatment of derivative boundary conditions. The truncation errors and stability limitations of several typical integration schemes are presented. For two-dimensional flows a spline-alternating-direction-implicit (SADI) method is evaluated. The spline procedure is assessed and results are presented for the one-dimensional nonlinear Burgers' equation, as well as the two-dimensional diffusion equation and the vorticity-stream function system describing the viscous flow in a driven cavity. Comparisons are made with analytic solutions for the first two problems and with finite-difference calculations for the cavity flow.

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Rubin, S. G., Graves, R. A., Jr.. 1975-03-01. Viscous flow solutions with a cubic spline approximation. https://ntrs.nasa.gov/citations/19750045108

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