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Dynamics of an axisymmetric electromagnetic 'crucible' melting

机译:轴对称电磁“坩埚”熔化的动态

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摘要

Different industrial induction melting processes involve free surface and melt-solid interface of the liquid metal subject to dynamic change during the technological operation. Simulation of the liquid metal dynamics requires to solve the non-linear, coupled hydrodynamic-electromagnetic-heat transfer problem accounting for the time development of the liquid metal free boundary with a suitable turbulent viscosity model. The present paper describes a numerical solution method applicable for various axisymmetric induction melting processes, such as, crucible with free top surface, levitation, semilevitation, cold crucible and similar melting techniques. The presented results in the cases of semi-levitation and crucible with free top surface meltings demonstrate oscillating transient behaviour of the free metal surface indicating the presence of gravity-inertial-electromagnetic waves which are coupled to the internal fluid flow generated by both the rotational and potential parts of the electromagnetic force.
机译:不同的工业感应熔化过程涉及液态金属的自由表面和熔融固体界面,其在技术操作期间受到动态变化的影响。液态金属动力学的仿真需要解决非线性,耦合的流体动力学 - 电磁传热问题,核对液态金属粘度模型的液态金属边界的时间发展。本文介绍了一种用于各种轴对称感应熔化过程的数值溶液方法,例如,具有自由顶表面,悬浮,半导体,冷坩埚和类似熔化技术的坩埚。本结果在半升升和具有自由顶表面熔体的坩埚的情况下表现出自由金属表面的振荡瞬态行为,其指示重力 - 惯性电磁波的存在,其耦合到由旋转和旋转的内部流体流动的内部流体流动电磁力的潜在部分。

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