Numerical Investigation of Riblets on Rod-Airfoil Interaction Noise
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Publisher
Springer Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-16-7423-5_7
Reference10 articles.
1. Casalino, D., Jacob, M., Roger, M.: Prediction of rod-airfoil interaction noise using the Ffowcs Williams-Hawkings analogy. AIAA J. 41(2), 182–191 (2003)
2. Geyer, T.F., Wasala, S.H., Sarradj, E.: Experimental study of airfoil leading edge combs for turbulence interaction noise reduction. Acoustics 2(2), 207–223 (2020)
3. Chen, W., Qiao, W., Tong, F., et al.: Numerical investigation of wavy leading edges on rod–airfoil interaction noise. AIAA J. 56(7), 2553–2567 (2018)
4. Zamponi, R., Satcunanathan, S., Moreau, S., et al.: On the role of turbulence distortion on leading-edge noise reduction by means of porosity. J. Sound Vib. 485, 115561 (2020)
5. Li, Y., Chen, Z., Wang, X.: Flow/noise control of a rod–airfoil configuration using “natural rod-base blowing”: numerical experiments. Eur. J. Mech.-B/Fluids 83, 99–113 (2020)
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