Multiple states in highly turbulent Taylor-Couette flow
ORAL
Abstract
The ubiquity of turbulent flows in nature and technology makes it of utmost importance to fundamentally understand turbulence. Kolmogorov's 1941 paradigm suggests that for strongly turbulent flows with many degrees of freedom and its large fluctuations, there would only be \emph{one} turbulent state as the large fluctuations would explore the entire higher-dimensional phase space. Here we report the first conclusive evidence of multiple turbulent states for large Reynolds number Re $ = \mathcal{O}$($10^6$) (Taylor number Ta $= \mathcal{O}$($10^{12}$) Taylor-Couette flow in the regime of ultimate turbulence, by probing the phase space spanned by the rotation rates of the inner and outer cylinder. The manifestation of multiple turbulent states is exemplified by providing combined global torque and local velocity measurements. This result verifies the notion that bifurcations can occur in high-dimensional flows (i.e. very large Re) and questions Kolmogorov's paradigm.
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Authors
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Sander Huisman
University of Twente
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Roeland van der Veen
University of Twente
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Chao Sun
University of Twente, Physics of Fluids Group, Faculty of Science and Technology, University of Twente, 7500 AE Enschede, The Netherlands, Physics of Fluids, Faculty of Science \& Technology, University of Twente, The Netherlands
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Detlef Lohse
University of Twente, Physics of Fluids Group, Faculty of Science and Technology, University of Twente, 7500 AE Enschede, The Netherlands, PoF Univ. of Twente, Physics of Fluids, Mesa+ Institute, University of Twente, P.O. Box 217, 7500 AE Enschede, Physics of Fluids, Faculty of Science \& Technology, University of Twente, The Netherlands, Physics of Fluids, University of Twente, Univ of Twente