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Free stream flow and forced convection heat transfer around a rotating circular cylinder subjected to a single gust impulse

机译:在单阵风脉冲作用下,绕旋转圆柱体的自由流和强制对流换热

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摘要

The effect of a single gust impulse on free stream flow and forced convection heat transfer across a two dimensional steadily rotating circular cylinder is numerically investigated. Reynolds number is varied between 80 and 160 while the non-dimensional steady rotation rate is restricted to a maximum value of 5 for a fluid with constant Prandtl number of 7. The governing equations namely continuity, momentum and energy equations have been solved using the Constant Wall Temperature boundary condition. Interesting results are presented depicting the behavior of the stretched boundary layer and the temperature field around the rotating cylinder. The convective heat transfer is observed to evolve differently for different combinations of the aforementioned parameters under the influence of the upstream gust.
机译:数值研究了单一阵风冲动对二维稳定旋转圆柱体上自由流和强迫对流换热的影响。雷诺数在80到160之间变化,而对于恒定Prandtl数为7的流体,无量纲稳态旋转速率被限制为最大值5。使用常数可以求解控制方程,即连续性,动量和能量方程壁温边界条件。给出了有趣的结果,描述了拉伸边界层的行为以及旋转圆柱体周围的温度场。在上游阵风的影响下,对于上述参数的不同组合,观察到对流传热会有所不同。

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