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Liquid metal induction heating modelling for cold crucible applications

机译:用于冷坩埚应用的液态金属感应加热建模

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摘要

The time dependent numerical model of cold crucible melting is based on the coupled electromagnetic, temperature and turbulent velocity field calculation accounting for the magnetically confined liquid metal shape continuous change. The model is applied to investigate the process energy efficiency dependence on the critical choice of AC power supply frequency and an optional addition of a DC magnetic field. Test cases of the metal load up to 50 kg are considered. The behaviour of the numerical model at high AC frequencies is instructively validated by the use of the electromagnetic analytical solution for a sphere and temperature measurements in a commercial size cold crucible furnace.
机译:冷坩埚熔化的时间相关数值模型基于电磁场,温度场和湍流场的耦合计算,并考虑了磁约束液态金属形状的连续变化。该模型用于研究过程能量效率对关键选择的交流电源频率和可选的直流磁场的依赖性。考虑了金属负载不超过50 kg的测试案例。通过使用电磁分析解决方案对商业规模的冷坩埚炉中的球体和温度进行测量,可以很好地验证数值模型在高AC频率下的行为。

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