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Volume 2 Issue 2
Sep.  1995
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GUO HONGZHI, ZHAO PEI, WANG KAILI, ZHU JIE, FU JIE, and MA TINGWEN, MATH-MODELLING OF ELECTROMAGNETICAL FLOW FIELD AND HEAT TRANSFER IN DC ELECTRIC-ARC FURNACE BATH, J. Univ. Sci. Technol. Beijing, 2(1995), No. 2, pp. 136-140.
Cite this article as:
GUO HONGZHI, ZHAO PEI, WANG KAILI, ZHU JIE, FU JIE, and MA TINGWEN, MATH-MODELLING OF ELECTROMAGNETICAL FLOW FIELD AND HEAT TRANSFER IN DC ELECTRIC-ARC FURNACE BATH, J. Univ. Sci. Technol. Beijing, 2(1995), No. 2, pp. 136-140.
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直流电弧炉熔池内电磁流体流动与传热的数值模拟

  • 建立了描述直流电弧炉内磁场强度、电流密度、速度场、温度场的数学模型。数值求解控制方程,绘制了描述30t直流弧炉熔池的磁场强度、电流密度、洛仑兹力、流函数、速度及温度分布曲线,预示与测定的温度场相符合,计算的循环流量与有关文献的相一致。
  • MATH-MODELLING OF ELECTROMAGNETICAL FLOW FIELD AND HEAT TRANSFER IN DC ELECTRIC-ARC FURNACE BATH

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    • A mathematical formulation is developed to represent the magneticfield intensity, the current density, the velocity field, the temperature field in the DC arc furnace bath.The governing equations are solved numerically to describe the magnetic field intensity profiles, the current density profiles, Lorentz force profiles, streamline profiles, the velocity profiles and temperature profiles in the 30t DC-EAF bath. The theoretical predictions of temperature field are in good agreement with measurement in the 30t DC-EAF bath, and the recirculation rate of flow is also in good agreement with published estimation.
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