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The Application of Circulation Control by Blowing to Helicopter Rotors

Published online by Cambridge University Press:  04 July 2016

I. C. Cheeseman
Affiliation:
National Gas Turbine Establishment, Pyestock
A. R. Seed
Affiliation:
National Gas Turbine Establishment, Pyestock

Summary:

A review of some methods of obtaining augmented lift coefficients in aerofoil sections precedes a description of lift by circulation control by blowing. The basic aerodynamic characteristics are considered as a prelude to a comparison of the merits of their application to helicopter rotors.

In calculating the performance of a helicopter rotor which uses high lift coefficients, the determination of the induced power has demanded an extension of the performance estimation curves normally used. A theoretical model has been developed to calculate the induced power factor which suggests a large increase in this parameter for rotor thrust coefficients above the current helicopter operating regime. Experimental results up to thrust coefficients of 0·1 which confirm the theoretical results are presented.

Some tentative ideas on the application of circulation control to produce a high speed helicopter are considered.

Type
Research Article
Copyright
Copyright © Royal Aeronautical Society 1967

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References

1.Stewart, W.Research and development of rotating wing aircraft. Journal of the Royal Aeronautical Society, Vol. 66, 1962.Google Scholar
2.Fradinburgh, E. A. Aerodynamic efficiency potentials of rotary wing aircraft. American Helicopter Society Sixteenth Annual Forum, 1960.Google Scholar
3.Hafner, R.The domain of the convertible rotor.Ninth Anglo-American Conference, October 1963. Published by American Institute of Aeronautics and Astronautics, 1964.Google Scholar
4.Fitzwilliams, O. L. L.Vibration problems associated with the helicopter. Journal of Helicopter Association of Great Britain, Vol. 11, 1957.CrossRefGoogle Scholar
5.Abbott, Ira H. and von Doenhoff, A. E.Theory of wing Sections. Dover Publication Inc, 1949.Google Scholar
6.Attinello, J. S.Boundary layer control and super circulation. Aeronautical Engineering Review, Vol. 12, 1953.Google Scholar
7.Williams, J. and Butler, S. F. J.Boundary layer control for high lift at low speed. Journal of the Royal Aeronautical Society, Vol. 67, April 1963.Google Scholar
8.Davidson, I. M.The jet flap. Journal of the Royal Aeronautical Society, Vol. 60, 1956.CrossRefGoogle Scholar
9.Stratford, B. S.Early thoughts on the jet flap. The Aeronautical Quarterly, Vol. VII, Part 1, 1956.Google Scholar
10.Dimmock, N. A.Some early jet flap experiments. The Aeronautical Quarterly, Vol. VIII, Part 4, Nov. 1957.Google Scholar
11.Korbacker, G. and Sridhar, K. Areview of the jet flap. UTIA Review, No. 14, 1960.Google Scholar
12.Lockwood, V. E. Lift generation on a circular cylinder by tangential blowing from surface slots. NASA TN D-244, May I960.Google Scholar
13.Gregory, J. D. L. Some observations of surface contamination on helicopter rotor blades. Unpublished Ministry of Supply Report.Google Scholar
14.Weiberg, J. A. and Guilianetti, D. J. Wind tunnel investigation of a tilt wing VTOL airplane with articulated rotors. NASA TN D-2538, March 1965.Google Scholar
15.Richards, E. J. and Jones, J. P.The application of the jet flap to helicopters. Journal of the Helicopter Association of Great Britain, Vol. 9, No. 3, 1956.CrossRefGoogle Scholar
16.Wilkinson, D. A. Unpublished Ministry of Supply Report.Google Scholar
17.Dorand, R.The application of the jet flap to helicopter rotor control. Journal of the Helicopter Association of Great Britain, Vol. 13, December 1959.Google Scholar
18.Payne, P. R.Helicopter dynamics and aerodynamics. Pitman, 1959.Google Scholar
19.Wilmer, M. A. P.The loading of helicopter rotor blades in forward flight. R & M 3318, April 1959.Google Scholar
20.Sweet, G. E., et al Wind tunnel measurements on a lifting rotor at high thrust coefficients and high tip speed ratio. NASA TN D-242, September 1964.Google Scholar
21.Brown, E. L.and Duhon, J. M. Helicopter wind tunnel data and theory correlated to full scale flight performance. AIAA/NASA Flight Testing Conference, February 1965.Google Scholar
22.Cheeseman, I. C. An investigation of powered lift applications throughout the Commonwealth. Report to Nuffield Foundation—unpublished.Google Scholar