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[2] Theodorsen T., “General Theory of Aerodynamic Instability and the Mechanism of Flutter”, NACA Report 496, 1935

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BIBLIOGRAFIA

BIBLIOGRAFIA

[1] Jan R. Wright, Jonathan E. Cooper, “Introduction to Aircraft Aeroelasticity and Loads”, John Wiley & Sons, Ltd, 2007

[2] Theodorsen T., “General Theory of Aerodynamic Instability and the Mechanism of Flutter”, NACA Report 496, 1935

[3] Ashley H., Zartarian G., “Piston Theory – A new Aerodynamic Tool for the Aeroelastician”, Twenty-Fourth Annual Meeting, IAS, New York, January 23- 26, 1956

[4] Lee-Rausch, E. M., Batina, J. T., “Wing Flutter Boundary Prediction Using Unsteady Euler Aerodynamic Method”, Journal of Aircraft, Vol. 32, No.

2, 1995

[5] Lee-Rausch, E. M., Batina, J. T., “Calculation of AGARD Wing 445.6 Flutter Using Navier-Stokes Aerodynamics”, AIAA-93-3476, 1993

[6] Liu F., Cai J., Zhu Y., Wong A.S.F., Tsai H. M., “Calculation of Wing Flutter by a Coupled CFD-CSD Method”, AIAA-2000-0907, 2000

[7] STAR-CCM+ User Guide 8.04

[8] Ramji, Wei: “Fluide structure interaction for aeroelastic applications”, Progress in aerospace scinces 40(2004) 535-558

[9] Guruswamy GP, Byun C. “Direct coupling of Euler flow equations with plate finite element structures” AIAA J 1994;33(2):375–7

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BIBLIOGRAFIA

[10] Guruswamy GP, Byun C. “Fluid–structure interactions using Navier–

Stokes flow equations coupled with shell finite element structures” AIAA-93- 3087, 1993

[11] Garica JA, Guruswamy GP. “Aeroelastic analysis of transonic wings using Navier–Stokes equations and a nonlinear beam finite element model”

AIAA-99-1215, 1999

[12] Earl H. Dowell, Edward F.Crawley, Howard C. Curtiss. Jr, David A.

Peters, Robert H. Scanlan, Frenando Sisto, “A Modem Course in Aeroelasticity”, Kluwe Academic Publishers, 1995

[13] Raymond L.Bisplinghoff, Holt Ashley, Robert L.Halfman,

“Aeroelasticity”, Dover Publications, INC, 1983

[14] F. Sannelli, C. Cassano, “Valutazione delle potenzialità del software STAR-CC+ per la soluzione di problemi aeroelastici”, Tesi Università di Pisa, 2010

[15] Abaqus documentation 6.12

[16] Hardy, R.L. 1990. “Theory and applications of the multiquadric- biharmonic method”, Comput. Math. Applic., 19, pp.163-208.

[17] Faul, A.C., Goodsell, G. and Powell, M.J.D. 2005. “A Krylov subspace algorithm for multiquadric interpolation in many dimensions.”, IMA Journal of Numerical Analysis, 25, pp. 1-24.

[18]

Gumerov, N.A. and Duraiswami, R. 2007. “Fast radial basis function interpolation via preconditioned Krylov iteration”, SIAM Journal on Scientific Computing, 29, pp. 1876-1899.

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