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タイトルUnsteady transonic algorithm improvements for realistic aircraft applications
本文(外部サイト)http://hdl.handle.net/2060/19880006378
著者(英)Batina, John T.
著者所属(英)NASA Langley Research Center
発行日1987-12-01
言語eng
内容記述Improvements to a time-accurate approximate factorization (AF) algorithm were implemented for steady and unsteady transonic analysis of realistic aircraft configurations. These algorithm improvements were made to the CAP-TSD (Computational Aeroelasticity Program - Transonic Small Disturbance) code developed at the Langley Research Center. The code permits the aeroelastic analysis of complete aircraft in the flutter critical transonic speed range. The AF algorithm of the CAP-TSD code solves the unsteady transonic small-disturbance equation. The algorithm improvements include: an Engquist-Osher (E-O) type-dependent switch to more accurately and efficiently treat regions of supersonic flow; extension of the E-O switch for second-order spatial accuracy in these regions; nonreflecting far field boundary conditions for more accurate unsteady applications; and several modifications which accelerate convergence to steady-state. Calculations are presented for several configurations including the General Dynamics one-ninth scale F-16C aircraft model to evaluate the algorithm modifications. The modifications have significantly improved the stability of the AF algorithm and hence the reliability of the CAP-TSD code in general.
NASA分類AERODYNAMICS
レポートNO88N15760
NAS 1.15:100516
AIAA PAPER 88-0105
NASA-TM-100516
権利No Copyright
URIhttps://repository.exst.jaxa.jp/dspace/handle/a-is/147607


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