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首页> 外文期刊>International Journal of Rotating Machinery >Prediction of Heat Transfer For Turbulent Flow in Rotating Radial Duct
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Prediction of Heat Transfer For Turbulent Flow in Rotating Radial Duct

机译:径向管内湍流传热的预测

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摘要

The objective of the current modeling effort is to validate the numerical model and improve upon the prediction of heattransfer in rotating systems. Low-Reynolds number turbulence model (without the wall function) has been employed for three-dimensional heat transfer predictions for radially outward flow in a square cooling duct rotating about an axis perpendicular to its length. Computations are also made using the standard and extended high-Reynolds number kturbulence models (in conjunction with the wall function) for the same flow configuration. The results from all these models are compared with experimental data for flows at different rotation numbers and Reynolds number equal to 25,000. The results show that the low-Reynolds number model predictions are not as good as the high-Re model predictions with the wall function. The wall function formulation predicts the right trend of heat transfer profile and the agreement with the data is within 30% or so for flows at high rotation number. Since the Navier-Stokes equations are integrated all the way to wallin the case of low-Re model, the computation time is relatively high and the convergence is rather slow, thus rendering the low-Re model as an unattractive choice for rotating flows at high Reynolds number.The extended k-ε turbulence model is also employed to compute heat transfer for rotating flows with uneven wall temperatures and uniform wall heat flux conditions. The comparison with the experimental data available in literature shows that the predictions on both the leading wall and the trailing wall are satisfactory and within 5-25% agreement.
机译:当前建模工作的目标是验证数值模型并改进旋转系统中传热的预测。低雷诺数湍流模型(无壁函数)已用于三维传热预测,以用于绕着垂直于其长度的轴旋转的方形冷却管道中的径向向外流动。对于相同的流量配置,还使用标准和扩展的高雷诺数湍流模型(结合壁函数)进行计算。将所有这些模型的结果与不同转数和雷诺数等于25,000的流量的实验数据进行比较。结果表明,具有壁函数的低雷诺数模型预测不如高雷诺数模型预测好。壁函数公式可预测传热曲线的正确趋势,对于高转数的流量,其与数据的一致性在30%左右。由于在低Re模型的情况下将Navier-Stokes方程一直集成到墙中,因此计算时间相对较长并且收敛速度很慢,因此使Low-Re模型成为高旋转流的无吸引力选择。雷诺数。扩展的k-ε湍流模型还用于计算壁温不均匀且壁热通量条件均匀的旋转流的传热。与文献中的实验数据进行的比较表明,对前壁和后壁的预测都令人满意,且相差在5-25%之间。

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