Have a personal or library account? Click to login
Airfoil Tonal Noise Prediction Using Urans Cover
Open Access
|Dec 2023

References

  1. Rizzi, S.A. “Urban Air Mobility Noise: Current Practice, Gaps, and Recommendations.” No. NASA/TP-20205007433 (2020).
  2. Brooks, F., Pope, D., and Marcolini, A. Airfoil Self-Noise and Prediction, No. L-16528, NASA, 1989.
  3. Paterson, R.W., Vogt, P.G., Fink, M.R., and Munch, C.L. “Vortex Noise of Isolated Airfoils.” Journal of Aircraft Vol. 10 No. 5 (1973): pp. 296–302.
  4. Tam, C.K.W. “Discrete Tones of Isolated Airfoils.” The Journal of the Acoustical Society of America Vol. 55 No. 6 (1974): p. 5.
  5. Arbey, H. and Bataille, J. “Noise Generated by Airfoil Profiles Placed in a Uniform Laminar Flow.” Journal of Fluid Mechanics Vol. 134 No. 1 (1983): p. 33.
  6. McAlpine, A., Nash, E.C., and Lowson, M.V. “On the Generation of Discrete Frequency Tones by the Flow around an Aerofoil.” Journal of Sound and Vibration Vol. 222 No. 5 (1999): pp. 753–779.
  7. Lowson, M., Fiddes, S., and Nash, E. “Laminar Boundary Layer Aero-Acoustic Instabilities.” 32nd Aerospace Sciences Meeting and Exhibi. American Institute of Aeronautics and Astronautics. Reno, NV, U.S.A, 1994.
  8. Pröbsting, S., Serpieri, J., and Scarano, F. “Experimental Investigation of Aerofoil Tonal Noise Generation.” Journal of Fluid Mechanics Vol. 747 (2014): pp. 656–687.
  9. Casalino, D., Grande, E., Romani, G., Ragni, D., and Avallone, F. “Definition of a Benchmark for Low Reynolds Number Propeller Aeroacoustics.” Aerospace Science and Technology Vol. 113 (2021): p. 106707.
  10. Menter, F., Hüppe, A., Matyushenko, A., and Kolmogorov, D. “An Overview of Hybrid RANS–LES Models Developed for Industrial CFD.” Applied Sciences Vol. 11 No. 6 (2021): p. 2459.
  11. Sandberg, R.D., Jones, L.E., Sandham, N.D., and Joseph, P.F. “Direct Numerical Simulations of Tonal Noise Generated by Laminar Flow Past Airfoils.” Journal of Sound and Vibration Vol. 320 No. 4–5 (2009): pp. 838–858.
  12. Desquesnes, G., Terracol, M., and Sagaut, P. “Numerical Investigation of the Tone Noise Mechanism over Laminar Airfoils.” Journal of Fluid Mechanics Vol. 591 (2007): pp. 155–182.
  13. De Gennaro, M., Kühnelt, H., and Zanon, A. “Numerical Prediction of the Tonal Airborne Noise for a NACA 0012 Aerofoil at Moderate Reynolds Number using a Transitional URANS Approach.” Archives of Acoustics Vol. 42 No. 4 (2017): pp. 653–675.
  14. Oerlemans, S. Wind Tunnel Aeroacoustic Tests of Six Airfoils for Use on Small Wind Turbines; Period of Performance: August 23, 2002 through March 31, 2004, NREL/SR-500-35339, 15007773. 2004.
  15. Langtry, R.B. and Menter, F.R. “Correlation-Based Transition Modeling for Unstructured Parallelized Computational Fluid Dynamics Codes.” AIAA Journal Vol. 47 No. 12 (2009): pp. 2894–2906.
  16. Dick, E. and Kubacki, S. “Transition Models for Turbomachinery Boundary Layer Flows: A Review.” International Journal of Turbomachinery, Propulsion and Power Vol. 2 No. 2 (2017): p. 4.
  17. Rezaeiha, A., Montazeri, H., and Blocken, B. “On the Accuracy of Turbulence Models for CFD Simulations of Vertical Axis Wind Turbines.” Energy Vol. 180 (2019): pp. 838–857.
  18. Ansys Inc. “Ansys Fluent, Release 21.1, Theory Guide”, Canonsburg, Pennsylvania, USA, 2021.
  19. Curle, N. “The Influence of Solid Boundaries upon Aerodynamic Sound.” Proceedings of the Royal Society of London. Series A, Mathematical and Physical Sciences Vol. 231 No. 1187 (1955): pp. 505–514.
  20. Ffowcs-Williams, J.E.F. and Hawkings, D.L. “Sound Generation by Turbulence and Surfaces in Arbitrary Motion.” Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences Vol. 264 No. 1151 (1969): pp. 321–342.
  21. Lighthill, M. “On Sound Generated Aerodynamically I. General Theory.” Proceedings of the Royal Society of London. Series A, Mathematical and Physical Sciences Vol. 211 No. 1107 (1952): pp. 564–587.
  22. Lighthill, M. “On Sound Generated Aerodynamically. II. Turbulence as a Source of Sound.” Proceedings of the Royal Society of London. Series A, Mathematical and Physical Sciences Vol. 222 No. 1148 (1954): pp. 1–32.
  23. Free Field Technologies SA. “ACTRAN VI 2021.1 User’s Guide”, Belgium, 2020.
Language: English
Page range: 1 - 17
Submitted on: Nov 22, 2022
|
Accepted on: Sep 11, 2023
|
Published on: Dec 8, 2023
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2023 Witold Klimczyk, Adam Sieradzki, published by ŁUKASIEWICZ RESEARCH NETWORK – INSTITUTE OF AVIATION
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.