Numerical Solution of the Full Potential Equation Using a Chimera Grid Approach

Numerical Solution of the Full Potential Equation Using a Chimera Grid Approach

Paperback (21 Oct 2018)

Not available for sale

Includes delivery to the United States

Out of stock

This service is protected by reCAPTCHA and the Google Privacy Policy and Terms of Service apply.

Publisher's Synopsis

A numerical scheme utilizing a chimera zonal grid approach for solving the full potential equation in two spatial dimensions is described. Within each grid zone a fully-implicit approximate factorization scheme is used to advance the solution one interaction. This is followed by the explicit advance of all common zonal grid boundaries using a bilinear interpolation of the velocity potential. The presentation is highlighted with numerical results simulating the flow about a two-dimensional, nonlifting, circular cylinder. For this problem, the flow domain is divided into two parts: an inner portion covered by a polar grid and an outer portion covered by a Cartesian grid. Both incompressible and compressible (transonic) flow solutions are included. Comparisons made with an analytic solution as well as single grid results indicate that the chimera zonal grid approach is a viable technique for solving the full potential equation. Holst, Terry L. Ames Research Center RTOP 505-59-53...

Book information

ISBN: 9781729040928
Publisher: Independently Published
Imprint: Independently Published
Pub date:
Language: English
Number of pages: 38
Weight: 113g
Height: 280mm
Width: 216mm
Spine width: 2mm