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Improved 3D Electromagnetic Analytical Model for Translational Motion Induction Heater with Consideration of Finite Length Effects

机译:考虑有限长度效应的平移感应加热装置的改进3D电磁分析模型

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In this paper we present an electromagnetic model to compute translational motion eddy current in a conductive plate of an induction heater. The movement of the plate in a dc magnetic field created by a PM inductor generates induced currents that are at the origin of a heating power by Joule effect. The magnetic field expressions due to the PMs is obtained by solving the three dimensional Maxwell equations by the method of separation of variables, using a magnetic scalar potential formulation and a magnetic field strength formulation. The motional eddy currents are computed and the finite length extremity effects are taken into account using the image’s method. The proposed model takes into account the reaction field due to induced currents. The obtained results are close to those obtained from the 3D FE simulations and experiments.
机译:在本文中,我们提出了一个电磁模型来计算感应加热器导电板上的平移运动涡流。平板在PM感应器产生的直流磁场中的运动会产生感应电流,该感应电流通过焦耳效应在加热功率的起点。通过使用磁标量势公式和磁场强度公式通过变量分离方法求解三维麦克斯韦方程组,可以得出由PM引起的磁场表达式。使用图像方法计算运动涡流,并考虑有限长度的末端效应。所提出的模型考虑了由于感应电流引起的反应场。所获得的结果接近于从3D FE模拟和实验获得的结果。

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