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Direct numerical simulation of Mhd heat transfer of the liquid metal in a horizontal pipe with the joint effect of the longitudinal magnetic field and thermo-gravitational convection

机译:水平管中液态金属MHD传热的直接数值模拟,具有纵向磁场的关节效应和热重向对流

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The results of the direct numerical simulation (DNS) of the MHD heat transfer in turbulent flow of liquid metal (LM) in a horizontal pipe under the joint influence of a longitudinal magnetic field (MF) and thermo-gravitational convection (TGC) are presented. Discusses the characteristics of hydrodynamics and heat transfer in the longitudinal MF in the absence of TGC. Suppression of turbulent transport is observed with an increase in the Hartmann number: the heat transfer coefficients, the friction coefficient. The authors calculated the effect of TGC in a strong longitudinal MF for a homogeneous heating. Investigated the averaged fields of velocity and temperature, heat transfer characteristics, the distribution of wall temperature along the perimeter of the cross section of the pipe. The effect of TGC on the velocity field is affected stronger than in the temperature field.
机译:呈现了在纵向磁场(MF)的关节影响下的水平管中的液态金属(LM)中MHD热传递的直接数值模拟(DNS)的结果,并进行了纵向磁场和热重量对流(TGC)的湍流。讨论了TGC的纵向MF中流体动力学和热传递的特征。观察到湍流传输的抑制随着Hartmann数的增加:传热系数,摩擦系数。作者计算了TGC在均匀加热强的纵向MF中的效果。研究了速度和温度,传热特性的平均领域,沿管的横截面周边的壁温分布。 TGC对速度场的影响受到比温度场更强的影响。

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