New Smart Twisting Active Rotor (STAR) – pretest predictions

van der Wall, B. G. et al. (2024) New Smart Twisting Active Rotor (STAR) – pretest predictions. CEAS Aeronautical Journal, (Accepted for Publication)

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Additional Information:Open Access funding enabled and organized by pro-ject DEAL. The work was conducted by institutional funding and by the following resources. The work at Konkuk University was supported by the National Research Foundation of Korea (NRF) grant by the Korean Government (MSIT), Republic of Korea (2022R1A4A1018884). The work at KARI has been supported by the Korea Aerospace Research Institute’s R and D program funded by the Korean Government (MSIT), Republic of Korea (FR22E03; FR23D03). The work in the US is supported by the US Army DEVCOM AvMC and the NASA Revolutionary Verti-cal Lift Technology (RVLT) Project. The financial support to Rinaldo Steininger by the De-fense Science and Technology Laboratory (DSTL) of the UK is gratefully acknowledged. Part of the results of UofG were obtained using the ARCHIE-WeSt High-Performance Computer (www.archie-west.ac.uk), EPSRC grant no. EP/K000586/1.
Keywords:Active twist, active rotor blade control, blade-vortex interaction (BVI) noise, helicopter vibration, rotor stall, high advance ratio, slowed rotor concept.
Status:Accepted for Publication
Refereed:Yes
Glasgow Author(s) Enlighten ID:Barakos, Professor George and Steininger, Rinaldo
Authors: van der Wall, B. G., Lim, J. W., Riemenschneider, J., Kalow, S., Wilke, G. A., Boyd, D. D., Bailly, J., Delrieux, Y., Cafarelli, I., Tanabe, Y., Sugawara, H., Jung, S. N., Hong, S. H., Kim, D.-H., Kang, H. J., Barakos, G., and Steininger, R.
College/School:College of Science and Engineering
College of Science and Engineering > School of Engineering > Autonomous Systems and Connectivity
Journal Name:CEAS Aeronautical Journal
Publisher:Springer
ISSN:1869-5582
ISSN (Online):1869-5590

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