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Low noise engine design for the Silent Aircraft Initiative

Published online by Cambridge University Press:  03 February 2016

C. A. Hall*
Affiliation:
Whittle Laboratory, University of Cambridge, Cambridge, UK

Abstract

The Silent Aircraft Initiative was a Cambridge-MIT Institute programme involving a large team of researchers from both the University of Cambridge and the Massachusetts Institute of Technology (MIT). The aim of the project was to produce a concept aircraft design that would be so quiet it would be imperceptible in the urban environments around airports.. This paper gives an overview of how all the sources of engine noise were carefully addressed within the Silent Aircraft design. Novel technologies, a new engine configuration, improved airframe integration, new operational procedures and advanced component design were all required in order to reduce the overall engine noise level to the Silent Aircraft target. The study suggests that in order to dramatically reduce the noise of future aircraft engines a number of major design changes must be combined.

Type
Research Article
Copyright
Copyright © Royal Aeronautical Society 2009 

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References

1. MPD Group, Study of aircraft noise exposure at and around community airports, Final Report for the European Commission, ec.europa.eu/transport/air/studies/air_en.htm 2007.Google Scholar
2. Advisory Council for Aeronautics Research in Europe (ACARE). European Aeronautics: A Vision for 2020, 2000.Google Scholar
3. Dowling, A.P., The Silent Aircraft Initiative — overview, 45th AIAA Aerospace Sciences Meeting and Exhibit, AIAA-2007-0452. Reno, Nevada, 2007.Google Scholar
4. Berglund, B., Lindvall, T. and Schwela, D.H., Guidelines for community noise, World Health Organization, 1999.Google Scholar
5. Hileman, J.I., Spakovszky, Z.S., Drela, M. and Sargeant, M.A., Airframe design for Silent Aircraft, 45th AIAA Aerospace Sciences Meeting and Exhibit, AIAA-2007-0453, Reno, Nevada, USA, 2007.Google Scholar
6. Hall, C.A., and Crichton, D., Engine design studies for a Silent Aircraft, 2007, J Turbomachinery, 129, (3), pp 479487.Google Scholar
7. Crichton, D., Xu, L. and Hall, C.A., Preliminary fan design for a Silent Aircraft, 2007, J of Turbomachinery, 129, (1), pages 184191.Google Scholar
8. De La Rosa Blanco, E., Hall, C.A. and Crichton, D., Challenges in the Silent Aircraft Engine design, 45th AIAA Aerospace Sciences Meeting and Exhibit, AIAA-2007-0454, Reno, Nevada, USA, 2007.Google Scholar
9. Hileman, J.I., Reynolds, T.G., De La Rosa Blanco, E. and Law, T.R., Development of approach procedures for the Silent Aircraft, 45th AIAA Aerospace Sciences Meeting and Exhibit, AIAA-2007-0451. Reno, Nevada, USA, 2007.Google Scholar
10. Hileman, J.I., Crichton, D., De La Rosa Blanco, E. and Law, T.R., Design and operation for ultra low noise take-off, 45th AIAA Aerospace Sciences Meeting and Exhibit, AIAA-2007-0456. Reno, Nevada, USA, 2007.Google Scholar
11. Lighthill, M.J., On sound generated aerodynamically (Part 1: General theory), Proceedings of the Royal Society of London, Series A: Mathematical and Physical Sciences, 1952, 211, pp 564587.Google Scholar
12. Stone, J.R., Groesbeck, D.E. and Zola, C.L., Conventional profile coaxial jet noise prediction, AIAA J, 1983, 21, (3), pp. 336342.Google Scholar
13. Hall, C.A. and Crichton, D. 2005, Engine and installation configurations for a Silent Aircraft, ISABE-2005-1164, Munich, Germany, 2005.Google Scholar
14. Tyler, J.M. and Sofrin, T.G., Axial flow compressor noise studies, Transactions of the Society of Automotive Engineers, 1962, 70, pp 309332.Google Scholar
15. ESDU, Prediction of noise generated by fans and compressors in turbojet and turbofan engines, item 98008 available from www.esdu.com, 1998.Google Scholar
16. Agarwal, A. and Dowling, A.P., Low frequency acoustic shielding of engine noise by the Silent Aircraft airframe, 11th AIAA/CEAS Aeroacoustics Conference, AIAA 2005-2996. Monteray, California, USA, 2005.Google Scholar
17. Law, T.R. and Dowling, A.P., Optimisation of traditional and blown liners for a Silent Aircraft, 12th AIAA/CEAS Aeroacoustics Conference, AIAA-2006-2525. Cambridge, Massachusetts, USA, 2006.Google Scholar
18. ESDU, Prediction of combustor noise from gas turbine engines, Item 05001, available from www.esdu.com, 2005.Google Scholar