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Pragmatic analysis of the electric submerged arc furnace continuum

机译:埋弧电炉连续体的语用分析

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A transient mathematical model was developed for the description of fluid flow, heat transfer and electromagnetic phenomena involved in the production of ferronickel in electric arc furnaces. The key operating variables considered were the thermal and electrical conductivity of the slag and the shape, immersion depth and applied electric potential of the electrodes. It was established that the principal stimuli of the velocities in the slag bath were the electric potential and immersion depth of the electrodes and the thermal and electrical conductivities of the slag. Additionally, it was determined that, under the set of operating conditions examined, the maximum slag temperature ranged between 1756 and 1825?K, which is in accordance with industrial measurements. Moreover, it was affirmed that contributions to slag stirring due to Lorentz forces and momentum forces due to the release of carbon monoxide bubbles from the electrode surface were negligible.
机译:开发了一个瞬态数学模型来描述电弧炉生产镍铁过程中涉及的流体流动,传热和电磁现象。考虑的关键操作变量是炉渣的导热性和电导率以及电极的形状,浸入深度和施加的电势。已经确定,渣浴中速度的主要刺激是电极的电势和浸入深度以及渣的热导率和电导率。另外,确定在所检查的一组操作条件下,最高炉渣温度在1756至1825?K之间,这与工业测量结果一致。此外,可以肯定的是,由于洛伦兹力和由于从电极表面释放一氧化碳气泡而引起的动量力对炉渣搅拌的贡献可忽略不计。

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