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首页> 外文期刊>日本機械学会論文集. B編 >Direct Numerical Simulation of An Axially Rotating Pipe Flow (2nd Report, Turbulent Heat Transfer for Low Rotation Rate)
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Direct Numerical Simulation of An Axially Rotating Pipe Flow (2nd Report, Turbulent Heat Transfer for Low Rotation Rate)

机译:轴向旋转管道流动的直接数值模拟(第二份报告,低旋转速率的湍流传热)

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摘要

A direct numerical simulation (DNS) with turbulent transport of a scalar quantity was perfor- med for fully-developed turbulent rotating pipe flows. In this paper, the Reynolds number, which is based on bulk velocity and pipe diameter, was constant, Re_b=5293, and the rotation ratio of a wall velocity to a bulk velocity were set to be 0.25, 0.3 and 0.35. A uniform heat-flux was applied to the wall as a thermal boundary condition. Prandtl number of the working fluid was 0.71. The turbulent statistics such as the mean temperature, temperature fluctuations, and scalar flux distribution were obtained. The turbulent heat transfer decreases with the rotating ratio increase. Moreover, the scalar-flux budgets were also obtained for each rotation ratio.
机译:对充分发展的湍流旋转管流进行了直接数值模拟(DNS),并进行了标量的湍流传输。在本文中,基于体积速度和管径的雷诺数是恒定的,Re_b = 5293,并且壁速度与体积速度的旋转比分别设置为0.25、0.3和0.35。将均匀的热流作为热边界条件施加到壁上。工作流体的普朗特数为0.71。获得了平均温度,温度波动和标量通量分布等湍流统计数据。湍流传热随着旋转比的增加而减小。此外,还针对每个旋转比率获得了标量通量预算。

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