Unsteady flow near front and rear stagnation points
ORAL
Abstract
We consider unsteady flows near stagnation points on a cylindrical body immersed in a viscous incompressible fluid. This problem admits similarity solutions, assuming a hyperbolic time evolution of the free-stream velocity. These are exact solutions of the Navier--Stokes equations, having a boundary-layer character similar to that of classical steady forward stagnation-point flow. The velocity profiles are obtained by numerical integration of a non-linear ordinary differential equation. A wide range of possible behaviour is revealed, depending on whether the flow in the far field is accelerating or decelerating, and depending on the flow direction. For the forward-flow situation, the solution is unique for the accelerating case, but bifurcates for modest deceleration, while for sufficient rapid deceleration there exists a one-parameter family of solutions. For the rear-flow situation, a unique solution exists (remarkably!) for sufficiently strong acceleration, and a one-parameter family again exists for sufficient strong deceleration.
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Authors
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Dmitry Kolomenskiy
CERFACS, Toulouse, France, Centre Europeen de Recherche et de Formation Avancee en Calcul Scientifique (CERFACS), Toulouse, France
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Keith Moffatt
DAMTP, University of Cambridge, UK
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Marie Farge
LMD-IPSL-CNRS, ENS Paris, France, Ecole Normale Sup\'erieure, Ecole Normale Superieure, Paris, France, LMD-IPSL-CNRS ENS
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Kai Schneider
M2P2-CNRS and Aix-Marseille University, France, Aix-Marseille Universit\'e, Aix-Marseille University, Marseille, France, M2P2-CNRS \& CMI, Aix-Marseille University, Marseille, France, Aix-Marseille University, M2P2-CNRS \& CMI Aix-Marseille University, Marseille, France, M2P2-CNRS and CMI, Aix-Marseille University, Marseille, France