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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >A New Approach to Numerical Simulation of Melt Flows and Interface Instability in Hall-Héroult Cells
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A New Approach to Numerical Simulation of Melt Flows and Interface Instability in Hall-Héroult Cells

机译:Hall-Héroult单元中熔体流动和界面不稳定性数值模拟的新方法

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摘要

A new approach to numerical analysis of magnetohydrodynamic phenomena in aluminum reduction cells is proposed. The flows of aluminum and cryolite, as well as the instability of the interface between the two layers, are described using a nonlinear two-dimensional model based on the shallow-water approximation. There are two principal distinctive properties of our model. First, the background melt flow and instability are considered as coupled fully nonlinear parts of one nonsteady process. Second, while capturing the main physical mechanisms operating in the system, the model is computationally very efficient and allows simulations in a "real-time" regime.
机译:提出了一种新的数值计算铝还原电池中磁流体动力学现象的方法。使用基于浅水近似的非线性二维模型描述了铝和冰晶石的流动以及两层之间的界面的不稳定性。我们的模型有两个主要的鲜明特性。首先,本底熔体流动和不稳定性被视为一个非稳定过程的耦合的完全非线性部分。其次,在捕获系统中运行的主要物理机制时,该模型在计算上非常有效,并允许在“实时”状态下进行仿真。

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