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Titlebook: Advances in Fluid-Structure Interaction; Updated contribution Marianna Braza,Alessandro Bottaro,Mark Thompson Conference proceedings 2016 S

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,Guajakreaction, praktisch ausgeführt,Developments made over past decades have enhanced our ability to better understand and capture the effects of emerging issues concerning nonstationarity/transient wind events, non-Gaussianity and nonlinearity of structural and aerodynamic origins on the bluff body aerodynamics and aeroelasticity.
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https://doi.org/10.1007/978-3-662-40487-4 bodies, vorticity is globally shed, while added mass-related energy is released into the fluid. We investigate square-tipped, streamlined-tipped, and hollow foils towed at . angle of attack and quickly retracted in the span-wise direction, as generic models of bodies of different form undergoing ra
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https://doi.org/10.1007/978-3-663-07149-5800. Time resolved particle image velocimetry (TRPIV) is used to measure the spatial distribution and time fluctuations of the velocity field in the wake of the upstream cylinder. From velocity spectra and statistics fields, the existence of two distinct seemingly stable flow patterns is shown, havi
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https://doi.org/10.1007/978-3-642-36354-2 this study investigates the effect that offsetting the centre-of-mass from the cylinder centroid has on body forces, velocity and wake structures. The numerical cases considered focus on the same parameters as the referenced experiment: cylinder-to-fluid density ratio and wall inclination angle, fo
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https://doi.org/10.1007/978-3-642-36354-2 to be homogeneous and infinitely thin. The regimes depend on two independent parameters, the Galileo number expressing the ratio between effects of gravity and viscosity and the non-dimensionalized mass characterizing the inertia of the disc. The paper completes a recently published comprehensive p
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