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Autorotation dynamics of a low aspect-ratio rectangular prism
Institution:1. RWDI Anemos Ltd, Dunstable, UK;2. Centre for Aeronautics, City University, London, UK;1. Swinburne University of Technology, Hawthorn, Victoria, 3122, Australia;2. Fluids Laboratory for Aeronautical and Industrial Research (FLAIR), Department of Mechanical and Aerospace Engineering, Monash University, Melbourne, Victoria 3800, Australia;3. Institut de Mécanique des Fluides de Toulouse (IMFT), Université de Toulouse, CNRS, INPT, UPS, Toulouse, France;1. Monash University, Malaysua School of Engineering, Jalan Lagoon Selatan 47500, Bandar Sunway, Selangor Darul Ehsan, Malaysia;2. Swinburne University, PO Box 218, Hawthorn VIC 3122, Australia
Abstract:This paper presents two previously unreported aspects of the autorotation dynamics of low aspect ratio rectangular prisms, observed during an experimental study of the dynamics of helicopter underslung loads. Low-speed wind tunnel tests of a simplified container model free to rotate on a fixed axis demonstrated (a) that autorotation rate can lock-in to a structural mode and (b) that static hysteresis in autorotation rate can occur at low speeds. Autorotation lock-in behaves in a similar manner to vortex-shedding lock-in, suggesting that a similar feedback flow process between vortex wake dynamics and body motion is operating, and may provide a partial explanation for the complex changes in behaviour of rotating slung loads at high airspeeds. Static hysteresis at low speeds results in a bifurcation diagram for autorotation which is similar to that for cross-wind galloping of a square prism, including the effects of friction and inertia. The similarity in bifurcation behaviour seems likely to indicate similar dynamics rather than flow physics, suggesting that it may be possible to apply techniques developed to model the effect of non-linear damping characteristics in galloping to the modelling of autorotation.
Keywords:Autorotation  Lock-in  Bifurcation  Underslung load  Rectangular prism  Tumbling
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