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首页> 外文期刊>Flow, turbulence and combustion >Effect of Flow Structures on Turbulence Statistics of Taylor-Couette Flow in the Torque Transition State
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Effect of Flow Structures on Turbulence Statistics of Taylor-Couette Flow in the Torque Transition State

机译:转矩过渡状态下流动结构对泰勒-库埃特流湍流统计的影响

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Direct numerical simulations of Taylor-Couette flow from R e= 8000 to 25000 have been conducted to investigate changes of turbulence statistics in the transition of the Reynolds number dependency of the mean torque near R e= 10000. The velocity fluctuations are decomposed into the contributions of the Taylor vortex and remaining turbulent fluctuations. Significant Reynolds number dependencies of these components are observed in the radial profiles of the Reynolds stress and the transmission of the mean torque. The contributions of Taylor vortex and turbulent components in the net amount of mean torque are evaluated. The Taylor vortex component is overtaken by the turbulent counterpart around R e= 15000 when they are defined as the azimuthally averaged component and the remnants. The results show that the torque transition can be explained by the competition between the contributions of azimuthally averaged Taylor vortex and the remaining turbulent components.
机译:为了研究在R e = 10000附近平均​​扭矩的雷诺数依赖性的转变过程中湍流统计的变化,已经进行了泰勒-库埃特流从R e = 8000到25000的直接数值模拟。速度波动分解为贡献泰勒涡旋和剩余的湍流波动。在雷诺应力的径向分布和平均扭矩的传递中,观察到了这些分量的明显雷诺数依赖性。评估了泰勒涡旋和湍流分量在平均平均扭矩净值中的贡献。当泰勒涡旋分量被定义为方位角平均分量和余量时,在R e = 15000附近被湍流对应物超越。结果表明,扭矩过渡可以通过方位角平均泰勒涡旋的贡献与其余湍流分量之间的竞争来解释。

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