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An Efficient Simulation Method for Current and Power distribution in 3-Phase Electrical Smelting Furnaces

机译:三相电熔炉电流和功率分配的有效仿真方法

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Abstract: A simplified simulation method for 3-phase AC smelting furnaces is presented and analyzed. The DC potential equation is first solved for three basis problems where the potential is 1 V at the top of one electrode and 0 V at the two others. Then these three solutions are combined, taking the phase shift between the electrodes into account. The method ignores electromagnetic induction. Mathematical analysis shows that this approximation is better the smaller the furnace. Further studies are required to find how well it performs for large furnaces. The method has been tested using COMSOL Multiphysics. Computed results are compared with a pure DC approach. The method is suitable to provide more understanding of AC effects in 3-phase furnaces. When simulation results are compared with full AC computations, effects of the phase shift between the electrodes can be separated from effects due to electromagnetic induction.
机译:摘要:提出并分析了一种三相交流熔炼炉的简化仿真方法。首先针对三个基本问题求解直流电势方程,其中一个电极的顶部电势为1 V,另外两个电极的电势为0V。然后考虑到电极之间的相移,将这三种解决方案合并。该方法忽略了电磁感应。数学分析表明,炉子越小,该近似值越好。需要进行进一步的研究以发现其在大型熔炉中的性能如何。该方法已使用COMSOL Multiphysics进行了测试。将计算结果与纯DC方法进行比较。该方法适合于提供更多对三相炉中交流电影响的理解。将仿真结果与完整的交流计算进行比较时,可以将电极之间的相移效应与电磁感应效应分开。

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