Turbulent Taylor-Couette flow between counter-rotating cylinders develops intermittently fluctuating boundary layers for sufficient counter-rotation. We demonstrate the phenomenon in direct numerical simulations for radius ratios ?=0.5 and 0.71 and propose a theoretical model for the critical value in the rotation ratio. Numerical results as well as experiments show that the onset of this intermittency coincides with the maximum in torque. The variations in torque correlate with the variations in mean Taylor vortex flow, which is first enhanced for weak counter-rotation and then is reduced as intermittency sets in. To support the model, we compare it to numerical results, to experiments at higher Reynolds numbers, and to Wendt's data
Taylor-Couette flow, the flow between two coaxial co- or counter-rotating cylinders, is one of the p...
Turbulent Taylor–Couette flow with arbitrary rotation frequencies ω1, ω2 of the two coaxial cylinder...
We generalize an analogy between rotating and stratified shear flows. This analogy is summarized in...
Turbulent Taylor-Couette flow between counter-rotating cylinders develops intermittently fluctuating...
In Taylor-Couette flow with sufficiently strong counter-rotating cylinders, the turbulence near the ...
In turbulent shear flows, the interaction of vortices with a solid surface determines the drag exert...
We use experiments and direct numerical simulations to probe the phase space of low-curvature Taylor...
Strongly turbulent Taylor-Couette flow with independently rotating inner and outer cylinders with a ...
We analyze the global transport properties of turbulent Taylor-Couette flow in the strongly turbulen...
Turbulent Taylor–Couette flow with arbitrary rotation frequencies ω1, ω2 of the two coaxial cylinder...
International audienceWe experimentally study the turbulent flow between two coaxial and independent...
A series of direct numerical simulations were performed of Taylor-Couette (TC) flow, the flow betwee...
Direct numerical simulations of Taylor–Couette flow, i.e. the flow between two coaxial and independe...
The statistics of velocity fluctuations of turbulent Taylor-Couette flow are examined. The rotation ...
Taylor-Couette flow, the flow between two coaxial co- or counter-rotating cylinders, is one of the p...
Taylor-Couette flow, the flow between two coaxial co- or counter-rotating cylinders, is one of the p...
Turbulent Taylor–Couette flow with arbitrary rotation frequencies ω1, ω2 of the two coaxial cylinder...
We generalize an analogy between rotating and stratified shear flows. This analogy is summarized in...
Turbulent Taylor-Couette flow between counter-rotating cylinders develops intermittently fluctuating...
In Taylor-Couette flow with sufficiently strong counter-rotating cylinders, the turbulence near the ...
In turbulent shear flows, the interaction of vortices with a solid surface determines the drag exert...
We use experiments and direct numerical simulations to probe the phase space of low-curvature Taylor...
Strongly turbulent Taylor-Couette flow with independently rotating inner and outer cylinders with a ...
We analyze the global transport properties of turbulent Taylor-Couette flow in the strongly turbulen...
Turbulent Taylor–Couette flow with arbitrary rotation frequencies ω1, ω2 of the two coaxial cylinder...
International audienceWe experimentally study the turbulent flow between two coaxial and independent...
A series of direct numerical simulations were performed of Taylor-Couette (TC) flow, the flow betwee...
Direct numerical simulations of Taylor–Couette flow, i.e. the flow between two coaxial and independe...
The statistics of velocity fluctuations of turbulent Taylor-Couette flow are examined. The rotation ...
Taylor-Couette flow, the flow between two coaxial co- or counter-rotating cylinders, is one of the p...
Taylor-Couette flow, the flow between two coaxial co- or counter-rotating cylinders, is one of the p...
Turbulent Taylor–Couette flow with arbitrary rotation frequencies ω1, ω2 of the two coaxial cylinder...
We generalize an analogy between rotating and stratified shear flows. This analogy is summarized in...