Helical vortices: viscous dynamics and instability
ORAL
Abstract
Understanding the dynamical properties of helical vortices is of great importance for numerous applications such as wind turbines, helicopter rotors, ship propellers. Locally these flows often display a helical symmetry: fields are invariant through combined axial translation of distance $\Delta z$ and rotation of angle $\theta = \Delta z/L$ around the same $z$-axis, where $2\pi L$ denotes the helix pitch. A DNS code with built-in helical symmetry has been developed in order to compute viscous quasi-steady basic states with one or multiple vortices. These states will be characterized (core structure, ellipticity, ...) as a function of the pitch, without or with an axial flow component. The instability modes growing in the above base flows and their growth rates are investigated by a linearized version of the DNS code coupled to an Arnoldi procedure. This analysis is complemented by a helical thin-cored vortex filaments model.
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Authors
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Maurice Rossi
UPMC-CNRS
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Can Selcuk
LIMSI
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Ivan Delbende
LIMSI-CNRS