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Effects of the computational domain size on direct numerical simulations of Taylor-Couette turbulence with stationary outer cylinder

机译:计算域大小对固定外圆柱泰勒-库埃特湍流直接数值模拟的影响

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In search for the cheapest but still reliable numerical simulation, a systematic study on the effect of the computational domain ("box") size on direct numerical simulations of Taylor-Couette flow was performed. Four boxes with varying azimuthal and axial extents were used. The radius ratio between the inner cylinder and the outer cylinder was fixed to eta = r(i)/r(o) = 0.909. The outer cylinder was kept stationary, while the inner rotated at a Reynolds number Re-i = 10(5). Profiles of mean and fluctuation velocities are compared, as well as autocorrelations and velocity spectra. The smallest box is found to accurately reproduce the torque and mean azimuthal velocity profiles of larger boxes, while having smaller values of the fluctuations than the larger boxes. The axial extent of the box directly reflects on the Taylor-rolls and plays a crucial role on the correlations and spectra. The azimuthal extent is found to play a minor role in the simulations, as the boxes are large enough. For all boxes studied, the spectra do not reach a box independent maximum. (C) 2015 AIP Publishing LLC.
机译:为了寻找最便宜但仍可靠的数值模拟,系统地研究了计算域(“盒子”)大小对泰勒-库埃特流直接数值模拟的影响。使用了四个具有不同方位角和轴向范围的盒子。内圆柱和外圆柱之间的半径比固定为eta = r(i)/ r(o)= 0.909。外圆柱体保持静止,而内圆柱体以雷诺数Re-i = 10(5)旋转。比较平均速度和波动速度的分布图,以及自相关和速度谱。发现最小的盒子可以准确地再现较大盒子的扭矩和平均方位角速度曲线,同时具有比较大盒子小的波动值。盒子的轴向范围直接反映在泰勒辊上,对相关性和光谱起着至关重要的作用。由于框足够大,因此在模拟中发现方位角范围较小。对于所有研究的盒子,光谱均未达到盒子独立的最大值。 (C)2015 AIP Publishing LLC。

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