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A Transient Model of the Anodic Current Distribution in an Aluminum Electrolysis Cell

机译:铝电解槽中阳极电流分布的瞬态模型

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In the aluminum reduction technology, the current in a cell is first distributed through a series of anodes before reaching the electrolytic bath and the metal pad. This can be conceptualized as a series of resistances in parallel, each with its own parameters and resulting current. In this work, a transient model of the anodic current distribution is presented. This model tracks the properties of each anode (age, dimensions, presence or absence of slots) and predicts the local current, anode-cathode distance (ACD) and current efficiency throughout the anodic cycle. More complex phenomena, such as the deformation of the metal pad and the ledge formation around new anodes, are also taken into account by simplified laws. The model has been extensively validated based on industrial measurements, and can now be used to gain insight into the behavior of the pot, estimate the local ACD, and guide design and operating decisions.
机译:在铝制还原技术中,在到达电解浴和金属垫之前,首先通过一系列阳极分布电池中的电流。这可以被概念化为一系列并行电阻,每个电阻都具有自己的参数和导致电流。在这项工作中,呈现了阳极电流分布的瞬态模型。该模型跟踪每个阳极(年龄,尺寸,存在或不存在槽)的属性,并预测整个阳极循环的局部电流,阳极 - 阴极距离(ACD)和电流效率。通过简化的法律还考虑了更复杂的现象,例如金属垫的变形和新阳极周围的形成凸台形成。该模型已根据工业测量广泛验证,现在可以用于深入了解锅的行为,估计本地ACD,以及指导设计和操作决策。

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