Kazan (Volga region) Federal University, KFU
KAZAN
FEDERAL UNIVERSITY
 
EVALUATION OF AERODYNAMIC FORCES ACTING ON OSCILLATING CANTILEVER BEAMS BASED ON THE STUDY OF THE DAMPED FLEXURAL VIBRATION OF ALUMINIUM TEST SAMPLES
Form of presentationArticles in international journals and collections
Year of publication2018
Языканглийский
  • Egorov Andrey Gennadevich, author
  • Kamalutdinov Ayrat Marsovich, author
  • Nuriev Artem Nailevich, author
  • Bibliographic description in the original language Egorov A.G, Kamalutdinov A.M, Nuriev A.N., Evaluation of aerodynamic forces acting on oscillating cantilever beams based on the study of the damped flexural vibration of aluminium test samples//Journal of Sound and Vibration. - 2018. - Vol.421, Is.. - P.334-347.
    Annotation The paper is devoted to study of the aerodynamic forces acting on flat cantilever beams per- forming flexural vibrations in a viscous fluid. Original method for the force evaluation is pre- sented based on analysis of experimental measurements of a logarithmic decrement of vibra- tions and relative variation in frequency of duralumin test specimens. The theoretical core of the method is based on the classical theory of bending beam oscillations and quasi-two dimensional model of interaction between a beam and a gas. Using the proposed method, extensive series of experiments for a wide range of oscillations parameters were carried out. The processing of the experimental data allowed to establish the global influence of the aero- dynamic effects on beam oscillations and the local force characteristics of each cross-section of the beam in the form of universal functions of dimensionless amplitude and dimensionless frequency of oscillation. The obtained estimates of the drag and added mass
    Keywords Cantilever beam, Damped flexural vibrations, Aerodynamic damping, Aerodynamic coefficients, Theoretical-experimental method
    The name of the journal Journal of Sound and Vibration
    URL https://www.scopus.com/inward/record.uri?eid=2-s2.0-85043471285&doi=10.1016%2fj.jsv.2018.02.006&partnerID=40&md5=e271571ba84008feb1f4b972ebaa6ec7
    Please use this ID to quote from or refer to the card https://repository.kpfu.ru/eng/?p_id=177798&p_lang=2

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