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The dual-electrode DC arc furnace--modelling insights

机译:双电极直流电弧炉-建模见解

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The dual-electrode direct current (DC) arc furnace uses two graphite electrodes, one connected as cathode and one as anode. Such an arrangement avoids some of the design difficulties associated with the anode hearth traditionally used in single-electrode and twin-cathode DC furnaces, but can introduce other design and operational difficulties including deflection of the arcs toward the furnace walls. Counter-intuitively, both arc jets in a dual-electrode furnace travel from the electrode down to the bath surface, despite carrying electric current in opposite directions-this is suggested in the theory of the governing equations of arc formation, and confirmed by experiments using high-speed photography. The dual-electrode arc system at small pilot-plant scale is studied using a transient magnetohydrodynamic model capable of predicting arc deflection and interaction from first principles, and the results are compared to the behaviour of twin-cathode systems at similar power. Finally, a simple arrangement of the furnace busbars, M configuration, is shown to provide some passive protection against arc deflection.
机译:双电极直流电弧炉使用两个石墨电极,一个连接为阴极,另一个连接为阳极。这种布置避免了与传统上在单电极和双阴极DC炉中使用的阳极炉床相关的一些设计困难,但是会引入其他设计和操作困难,包括电弧向炉壁的偏转。与直觉相反,双电极炉中的两个电弧射流都从电极向下流向熔池表面,尽管它们沿相反的方向传递电流,这在电弧形成的控制方程理论中已经提出,并通过使用高速摄影。使用能够根据第一原理预测电弧偏转和相互作用的瞬变磁流体动力学模型,研究了小规模试验工厂的双电极电弧系统,并将结果与​​双阴极系统在类似功率下的行为进行了比较。最后,显示了M形炉子母线的简单布置,可提供一些防止电弧偏转的被动保护。

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