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Investigation of magnetohydrodynamics flow and heat transfer in the presence of a confined square cylinder using SM82 equations

机译:使用SM82方程研究密闭方形圆柱体中的磁流体动力学流动和传热

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In this paper, magnetohydrodynamics flow and heat transfer of a liquid metal (GaInSn) in the presence of a confined square obstacle is studied numerically, using a quasi-2-D model known as SM82. The results of the present investigation are compared with the results of the other experimental investigations and a good agreement with the average deviation of about 2.8% is achieved. The effects of Reynolds number, Hartmann number, and blockage ratio on the re-circulation length, Strouhal number, averaged Nusselt number, and isotherms are examined. The numerical results indicate that based on the Reynolds and Hartmann numbers in a fixed blockage ratio, due to the direct interactions of the secondary vortices and the Karman ones, the Strouhal number may increase or decrease. Some correlations are also provided to determine the re-circulation length in terms of the Reynolds and Hartmann numbers for various blockage ratios.
机译:在本文中,使用被称为SM82的准2维模型,对存在受限方形障碍物的液态金属(GaInSn)的磁流体动力学流动和传热进行了数值研究。将本研究的结果与其他实验研究的结果进行比较,可以得出平均偏差约为2.8%的良好一致性。研究了雷诺数,哈特曼数和封堵率对循环长度,斯特劳哈尔数,平均努塞尔数和等温线的影响。数值结果表明,基于固定阻塞比的雷诺数和哈特曼数,由于次级涡旋和卡尔曼涡旋的直接相互作用,斯特劳哈尔数可能会增加或减少。还提供了一些相关性,以根据各种阻塞比的雷诺数和哈特曼数来确定再循环长度。

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