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DETAILED MATHEMATICAL MODELING OF LIQUID METAL STREAMER FORMATION AND BREAKUP

机译:液态金属流道形成和破裂的详细数学建模

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摘要

A Cahn-Hilliard phase field model is formulated to describe transport-limited electrochemical reactions coupled with fluid flow in a metal reduction cell. When the reaction is limited by mass transfer of metal ions from the electrolyte to the cathode, the metal-electrolyte interface at the cathode exhibits a Mullins-Sekerka instability, leading to the growth of dendrite-like "streamers" of liquid metal into the electrolyte, which in turn significantly enhance the apparent mass transfer coefficient there. Model results for iron reduction from ferrous oxide in slag show formation of these streamers. Although the double-layer is not included in this model, the related phenomenon of electrocapillarity can be represented by a gradient penalty term which includes the electric potential gradient, such that intcrfacial energy is a function of the electric field normal to the interface.
机译:建立了Cahn-Hilliard相场模型,以描述与金属还原池中的流体流动相关的运输受限的电化学反应。当反应受到金属离子从电解质到阴极的质量转移的限制时,阴极处的金属-电解质界面表现出Mullins-Sekerka不稳定性,从而导致液态金属的枝状样“流光”生长到电解质中,这反过来显着提高了表观传质系数。从炉渣中的氧化亚铁还原铁的模型结果表明这些流光的形成。尽管此模型中不包括双层,但电毛细现象的相关现象可以由包含电势梯度的梯度惩罚项来表示,从而界面能量是垂直于界面的电场的函数。

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