Engineering PapersSearch

NASA NTRS · 19750040407

Relaxation methods in fluid mechanics

Abstract

The present work considers the iterative solution of a coupled set of difference equations and examines methods that carry successive approximates to a state that is invariant with further iteration and independent of the initial guess. Methods are studied with regard to their efficiency and economy of computer resources. The basic principles of classical relaxation are set forth, with attention confined to linear elliptic equations. This discussion involves the evaluation of the spectral radius that is the magnitude of the eigenvalue with largest modulus. The subject of relaxation is then related to the study of ordinary differential equations and hyperbolic partial differential equations. Problems that occur when linearly dependent eigenvectors appear in the relaxation matrix are discussed, leading to multiply connected eigenvalues in the Jordan canonical form. Finally, a brief survey of relaxation methods used in aerodynamics is given.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Lomax, H., Steger, J. L.. 1975-01-01. Relaxation methods in fluid mechanics. https://ntrs.nasa.gov/citations/19750040407

Cite the original work for its findings. Save a collection to share your selection of sources.