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Numerical simulation of melt convection in a dual-electrode arc furnace for MgO production

机译:MgO生产双电极电弧炉中熔体对流的数值模拟

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摘要

DC electric arc melting is emerging as a promising technology for production of fused MgO. The dual-electrode DC electric arc furnace (EAF), an alternative design using an anode and cathode electrode instead of a three phase AC arc furnace, is investigated using computational modelling methods. Since the thermal field of the EAF is significantly influenced by the electromagnetic stirring of the molten bath, the melt convection are investigated with different electric currents and bath dimensions. Only a quarter 3D symmetry sector is considered for the analysis. The coupled non-linear conservation equations for mass, momentum, energy and electrical charge are solved with the commercial software ANSYS. The calculated flow field indicates that the melt convection is fully turbulent when the electric current reaches the rated value. The Lorentz force is the dominating driving force for the convection, and the mean velocity is almost a linear function of the Lorentz force. According to the Richardson number, the buoyancy becomes more important when the bath volume grows and the electric current decreases, and the Lorentz force becomes more important when the bath volume shrinks and the electric current increases. In order to make a comparison of magnetic stirring between DC and AC modes, 50 Hz AC power is assumed to supply the dual-electrode EAF. The time-averaged Lorentz force is computed in the time-harmonic analysis for the AC mode. It is found that the Lorentz force distribution is the same if the effective value of the AC current is equal to the DC current.
机译:直流电弧熔化已成为生产熔融MgO的有前途的技术。使用计算模型方法研究了双电极直流电弧炉(EAF),它使用阳极和阴极电极替代三相交流电弧炉。由于电弧炉的电磁场极大地影响了电弧炉的温度场,因此在不同的电流和熔池尺寸下对熔体对流进行了研究。分析仅考虑四分之一的3D对称扇区。用商业软件ANSYS求解质量,动量,能量和电荷的耦合非线性守恒方程。计算出的流场表明,当电流达到额定值时,熔体对流完全湍流。洛伦兹力是对流的主要驱动力,平均速度几乎是洛伦兹力的线性函数。根据理查森数,当浴池容量增加而电流减小时,浮力变得更重要;而当浴池容积减小且电流增加时,洛伦兹力变得更加重要。为了比较DC和AC模式之间的电磁搅拌,假定50 Hz AC电源提供双电极EAF。在交流模式的时间谐波分析中计算了时间平均洛伦兹力。发现如果交流电流的有效值等于直流电流,则洛伦兹力分布是相同的。

著录项

  • 来源
    《Heat and mass transfer》 |2018年第12期|3509-3519|共11页
  • 作者

    Zhen Wang; Ninghui Wang;

  • 作者单位

    School of Innovation and Entrepreneurship, Dalian University of Technology;

    School of Electrical Engineering, Dalian University of Technology;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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