Optimal Taylor-Couette flow: Radius ratio dependence
arXiv:1304.6331 · doi:10.1017/jfm.2014.134
Abstract
Taylor-Couette flow with independently rotating inner (i) and outer (o) cylinders is explored numerically and experimentally to determine the effects of the radius ratio η on the system response. Numerical simulations reach Reynolds numbers of up to Re_i=9.5 x 10^3 and Re_o=5x10^3, corresponding to Taylor numbers of up to Ta=10^8 for four different radius ratios η=r_i/r_o between 0.5 and 0.909. The experiments, performed in the Twente Turbulent Taylor-Couette (T^3C) setup, reach Reynolds numbers of up to Re_i=2x10^6$ and Re_o=1.5x10^6, corresponding to Ta=5x10^{12} for η=0.714-0.909. Effective scaling laws for the torque J^ω(Ta) are found, which for sufficiently large driving Ta are independent of the radius ratio η. As previously reported for η=0.714, optimum transport at a non-zero Rossby number Ro=r_i|ω_i-ω_o|/[2(r_o-r_i)ω_o] is found in both experiments and numerics. Ro_opt is found to depend on the radius ratio and the driving of the system. At a driving in the range between {Ta\sim3\cdot10^8} and {Ta\sim10^{10}}, Ro_opt saturates to an asymptotic η-dependent value. Theoretical predictions for the asymptotic value of Ro_{opt} are compared to the experimental results, and found to differ notably. Furthermore, the local angular velocity profiles from experiments and numerics are compared, and a link between a flat bulk profile and optimum transport for all radius ratios is reported.
Submitted to JFM, 28 pages, 17 figures
References in corpus (7)
- Optimal Taylor-Couette flow: direct numerical simulations
- Direct Numerical Simulations of Local and Global Torque in Taylor-Couette Flow up to Re=30.000
- Boundary layer dynamics at the transition between the classical and the ultimate regime of Taylor-Couette flow
- Direct Numerical Simulation of turbulent Taylor-Couette flow
- Logarithmic temperature profiles in the ultimate regime of thermal convection
- Intermittent boundary layers and torque maxima in Taylor-Couette flow
- Applying Laser Doppler Anemometry inside a Taylor-Couette geometry - Using a ray-tracer to correct for curvature effects
Cited by in corpus (15)
- High Reynolds number Taylor-Couette turbulence
- Exploring the phase diagram of fully turbulent Taylor-Couette flow
- The near-wall region of highly turbulent Taylor-Couette flow
- Effects of the computational domain size on direct numerical simulations of Taylor-Couette turbulence with stationary outer cylinder
- Momentum transport in Taylor-Couette flow with vanishing curvature
- Drag reduction in numerical two-phase Taylor-Couette turbulence using an Euler-Lagrange approach
- Deformation and orientation statistics of neutrally buoyant sub-Kolmogorov ellipsoidal droplets in turbulent Taylor-Couette flow
- Taylor-Couette turbulence at radius ratio : scaling, flow structures and plumes
- Turbulent drag in a rotating frame
- Controlling secondary flow in Taylor-Couette turbulence through spanwise-varying roughness
- Statistics, plumes and azimuthally traveling waves in ultimate Taylor-Couette turbulent vortices
- Double maxima of angular momentum transport in TC turbulence
- Life stages of wall-bounded decay of Taylor-Couette turbulence
- Marginally stable and turbulent boundary layers in low-curvature Taylor-Couette flow
- The boiling Twente Taylor-Couette (BTTC) facility: Temperature controlled turbulent flow between independently rotating, coaxial cylinders