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Experimental study on flow characteristics of a vertically falling film flow of liquid metal NaK in a transverse magnetic field

机译:横向磁场中液态金属NaK垂直降膜流的流动特性实验研究

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Experimental study was carried out on the characteristics of a vertically falling film flow of liquid metal sodium-potassium alloy (NaK-78) in a vertical square duct in the presence of a transverse magnetic field. The magnitude of the applied magnetic field was up to 0.7 T. The Reynolds number, defined by the hydraulic diameter based on the wetted perimeter length and the liquid average velocity, ranged from 8.0 x 10~3 to 3.0 x 10~4. The free surfaces of the falling film flows in both a stainless steel and an acrylic resin channels were visualized. The instantaneous film thickness of the falling film flow in the acrylic resin channel was then measured by means of the ultrasonic transmission technique. Magnetohydrodynamic (MHD) effects on the characteristics of the falling film flow were investigated by the visualization and the statistical analysis of the measured film thickness. It was found that the falling liquid NaK film was thickened and the flow was stabilized remarkably by a strong transverse magnetic field. A bifurcation of the film was recovered by the applied magnetic field. The turbulence of the flow was substantially suppressed.
机译:在存在横向磁场的情况下,对垂直方管中液态金属钠钾合金(NaK-78)的垂直降膜流特性进行了实验研究。施加的磁场强度最大为0.7T。雷诺数由水力直径(基于润湿的周长和液体平均速度)定义,范围为8.0 x 10〜3至3.0 x 10〜4。可见在不锈钢和丙烯酸树脂通道中流动的降膜的自由表面。然后通过超声传输技术测量丙烯酸树脂通道中降膜流的瞬时膜厚。磁流体动力学(MHD)对降膜流动特性的影响通过可视化和对测得膜厚的统计分析进行了研究。发现下降的液体NaK膜变厚并且流动被强的横向磁场显着稳定。通过施加的磁场恢复膜的分叉。流动的湍流被基本抑制。

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