Analysis of Bending-Torsion Coupling Vibration of a Rotating Cantilever Blade
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-67152-4_26
Reference11 articles.
1. Banerjee, J.R., Kennedy, D.: Dynamic stiffness method for inplane free vibration of rotating beams including coriolis effects. J. Sound Vib. 333(26), 7299–7312 (2014). https://doi.org/10.1016/j.jsv.2014.08.019
2. Cheng, J., Hui, X., Yan, A.: Frequency analysis of a rotating cantilever beam using assumed mode method with coupling effect. Mech. Based Des. Struct. Mach. 34(1), 25–47 (2006). https://doi.org/10.1080/15367730500501587
3. Hamdi, H., Mrad, C., Hamdi, A., Nasri, R.: Dynamic response of a horizontal axis wind turbine blade under aerodynamic, gravity and gyroscopic effects. Appl. Acoust. 86(December), 154–164 (2014). https://doi.org/10.1016/j.apacoust.2014.04.017
4. Hamdi, H., Farah, K.: Beam finite element model of a vibrate wind blade in large elastic deformation. Wind Struct. Int. J. 26(1), 25–34 (2018). https://doi.org/10.12989/was.2018.26.1.025
5. Hamdi, H., Hamdi, A., Nasri, R.: Centrifugal and gyroscopic effects on dynamic response of rotating cantilever beams under step loading. Mech. Res. Commun. 132(June), 104185 (2023). https://doi.org/10.1016/j.mechrescom.2023.104185
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