Boundary integral equations and conservative dissipation schemes for full potential transonic flows

Author:

Morino L.,Iemma U.

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,Computational Mathematics,Computational Theory and Mathematics,Mechanical Engineering,Ocean Engineering,Computational Mechanics

Reference23 articles.

1. Caughey, D. A. (1980): A (limited) perspective on computational aerodynamics. Rpt. no. FDA-80-07, Cornell University, Ithaca, New York

2. Habashi, W. G.; Hafez, M. M. (1982): Finite element solution of transonic flow problems. AIAA J. 20, 1368–1367

3. Hafez, M. M.; South, J.; Murman, E. (1979): Artificial compressibility methods for numerical solution of transonic full potential equation. AIAA J. 17(10), 838–844

4. Hirsh, C. (1990): Numerical computation of internal and external flows, Vol. 2, New York: Wiley

5. Iemma, U.; Mastroddi, F.; Morini, L.; Pecora, M. (1991): A boundary integral formulation for unsteady transonic potential flows. AGARD Specialists Meeting on Transonic Unsteady Aerodynamics and Aeroelasticity Proceedings, San Diego, CA

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