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NASA NTRS ยท 19970010813

On Approximate Factorization Schemes for Solving the Full Potential Equation

Abstract

An approximate factorization scheme based on the AF2 algorithm is presented for solving the three-dimensional full potential equation for the transonic flow about isolated wings. Two spatial discretization variations are presented, one using a hybrid first-order/second-order-accurate scheme and the second using a fully second-order-accurate scheme. The present algorithm utilizes a C-H grid topology to map the flow field about the wing. One version of the AF2 iteration scheme is used on the upper wing surface and another slightly modified version is used on the lower surface. These two algorithm variations are then connected at the wing leading edge using a local iteration technique. The resulting scheme has improved linear stability characteristics and improved time-like damping characteristics relative to previous implementations of the AF2 algorithm. The presentation is highlighted with a grid refinement study and a number of numerical results.

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BibTeXRIS

Holst, Terry L.. 1997-02-01. On Approximate Factorization Schemes for Solving the Full Potential Equation. https://ntrs.nasa.gov/citations/19970010813

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