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Numerical Simulation of Electromagnetic Field and Temperature Field in Medium-frequency Induction Furnace Melting Process

机译:中频感应炉熔炼过程中电磁场和温度场的数值模拟

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摘要

A mathematical model for describing the melting process in the medium-frequency induction furnace was developed.Finite difference method was applied to deal with coupling electromagnetic field and temperature field in the melting process.The magnetic induction,temperature distribution and the phase interface moving characteristic during melting of the furnace burden were calculated.The effects of the direct current and inductive heating frequency on the process were analyzed.The simulation results show that: In the direction of burden radius,magnetic induction decreases from the outside of the burden to the center.Solid/liquid interface moves gradually from the outside of the burden to the center.The movement speed increases when the burden begins to melt.In the direction of the burden height,the distribution of eddy current in the surface is accord with the edge effect of the coil.Solid/liquid interface moves gradually from the center to the two sides.The direct current has a greater effect on the electromagnetic field and temperature field than frequency.
机译:建立了描述中频感应炉熔炼过程的数学模型,采用有限差分法处理熔炼过程中的电磁场和温度场耦合,磁感应,温度分布和相界面运动特性仿真结果表明:在炉料半径方向上,磁感应强度从炉外到中心逐渐减小。固/液界面从重物的外部逐渐向中心移动。重物开始熔化时,运动速度增加。在重物高度的方向上,表面中的涡流分布与边缘的边缘效应一致。固/液界面从中心逐渐向两侧移动,直流电对电磁场和温度场的影响要大于频率。

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