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Discussion on heat transfer correlation in turbulent channel flow imposed wall-normal magnetic field

机译:壁面法向磁场作用下湍流通道传热相关性的探讨

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摘要

Heat transfer degradation in high Prandtl number fluid was evaluated via direct numerical simulation (DNS). Target flow fields were fully developed turbulent channel flows imposed a wall-normal magnetic field in the high and low Prandtl number conditions (Pr = 5.25 and 0.025, respectively). Values of the bulk Reynolds number (Re_b = 14,000) and the Hartmann number (Ha = 0-32) were set to be equivalent to those of the previous experimental study by Yokomine et al. The numerical results of the Nusselt number for the high Prandtl number fluid were in good agreement with the experimental results by Yokomine et al. However, the magneto-hydrodynamics (MHD) effect on the heat transfer degradation was considerably larger than the empirical correlation proposed by Blum, particularly in the large interaction parameter range. On the other hand, the DNS results for the low Prandtl number fluid were consistent with the empirical correlation proposed by Blum and the experimental results by Gardner and Lykoudis. Therefore, we proposed a new correlation of the MHD heat transfer in high Prandtl number fluid (Pr = 5.25), and suggested that the empirical correlation proposed by Blum could be recommended for low Prandtl number fluid in the large interaction parameter range.
机译:通过直接数值模拟(DNS)评估了高Prandtl数流体中的传热降解。目标流场是充分发展的湍流通道,在高和低普朗特数条件下(分别为Pr = 5.25和0.025)施加了壁法向磁场。整体雷诺数(Re_b = 14,000)和哈特曼数(Ha = 0-32)的值设置为与Yokomine等人先前实验研究的值相同。高普朗特数流体的努塞尔数的数值结果与Yokomine等人的实验结果非常吻合。但是,磁流体动力学(MHD)对传热退化的影响远大于Blum提出的经验相关性,特别是在较大的相互作用参数范围内。另一方面,低普朗特数流体的DNS结果与Blum提出的经验相关性以及Gardner和Lykoudis的实验结果一致。因此,我们提出了高Prandtl数流体(Pr = 5.25)中MHD换热的新相关性,并建议在较大的相互作用参数范围内,建议将Blum提出的经验相关性用于低Prandtl数流体。

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