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Numerical simulation of unsteady transonic flows using a field integral equation method. (English) Zbl 0825.76611

MSC:

76M25 Other numerical methods (fluid mechanics) (MSC2010)
76H05 Transonic flows
Full Text: DOI

References:

[1] Nixon, D., Extended integral equation method for transonic flows, AIAA J., 13, 934-935 (1975) · Zbl 0325.76081
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[4] Ravichandran, K. S.; Arora, N. L.; Singh, R., Transonic full potential solutions by an integral equation method, AIAA J., 22, 882-888 (1984) · Zbl 0553.76054
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[10] Hounjet, M. H.L., Calculation of unsteady transonic flows with shocks by field panel methods, AIAA J., 20, 857-859 (1982) · Zbl 0489.76064
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[12] Chen, D. R.; Sheu, M. J., Comparison of numerical solutions of lower and higher order integral equation methods for two-dimensional aerofoils, AIAA paper 86-2591 (1986)
[13] Chen, D. R.; Sheu, M. J., An investigation of internal singularity methods for multi-element airfoils, J. Aircraft, 26, 189-192 (1989)
[14] Compendium of Unsteady Aerodynamic Measurements. Compendium of Unsteady Aerodynamic Measurements, AGARD R-702 (August 1982)
[15] Chen, D. R.; Sheu, M. J., Numerical solutions for oscillatory aerofoil at high reduced frequency, Comput. Methods in Appl. Mech. Engrg., 74, 55-68 (1989) · Zbl 0687.76005
[16] Jameson, A., Iterative solutions of transonic flows over airfoils and wings, including flows at Mach 1, Comm. Pure Appl. Math., 27, 283-309 (1974) · Zbl 0296.76033
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