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首页> 外文期刊>International Journal of Heat and Mass Transfer >NUMERICAL ANALYSIS OF SOLUTAL CONVECTION IN ROTAING SHALLOW ELECTROCHEMICAL CELLS
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NUMERICAL ANALYSIS OF SOLUTAL CONVECTION IN ROTAING SHALLOW ELECTROCHEMICAL CELLS

机译:旋转浅层电化学池中土壤对流的数值分析

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摘要

A numerical study of solutal convection in rotating shallow electrochemical cells is performed. Typical cases show complex interactions among the centrifugal, Coriolis forces and mass transfer process in the rotating cells, which depend on the Ek and Sc Ros numbers. At low rotational speed (Ek is near 0.01) the inviscid core flow is unicellular and sandwiched between the top and bottom Ekman layers. When Ek is less than about 0.006, a series of secondary cells are induced by the Coriolis force in the core. It is found that the Coriolis force suppresses the centrifugal convection, reducing the mass transfer rate, especially at low Sc Ros. The present numerical results are shown to be in good agreement with our earlier scaling analysis as well as with our experimental mass transfer data.
机译:进行了旋转浅电化学池中溶质对流的数值研究。典型的情况表明旋转单元中离心力,科里奥利力和传质过程之间存在复杂的相互作用,这取决于Ek和Sc Ros数。在低转速(Ek接近0.01)下,无粘性芯流是单细胞的,并夹在顶部和底部Ekman层之间。当Ek小于约0.006时,核心中的科里奥利力诱导一系列二次细胞。发现科里奥利力抑制了离心对流,降低了传质速率,特别是在低Sc Ros下。结果表明,目前的数值结果与我们之前的比例分析以及实验传质数据非常吻合。

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