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A multi-domain boundary-relaxation technique for the calculation of the electromagnetic field in ferrite-core inductive plasmas

机译:一种多域边界松弛技术,用于计算铁氧体磁心感应等离子体中的电磁场

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摘要

A technique is discussed for calculating the electromagnetic field in two-dimensional inductive plasmas with an arbitrary number of magnetic materials and load coils. The method is a generalization of the boundary-relaxation technique for systems with an arbitrary number of conducting regions, and extends its applicability to systems which contain magnetically active materials. Each material is defined on a distinct ortho-curvilinear numerical structured mesh. This facilitates the coupling of the electromagnetic model with the calculation of material transport, in which typically only one of these grids is involved. The method allows an exact and straightforward formulation of the boundary conditions and has the additional advantage that only current-carrying regions of space need to be discretized. The technique has been verified by running the model for a number of test cases for which analytical solutions exist, and later applied to a geometry which is characteristic for plasma induction lamps. A selection of these results will be demonstrated and discussed. [References: 21]
机译:讨论了一种用于计算具有任意数量的磁性材料和负载线圈的二维感应等离子体中的电磁场的技术。该方法是针对具有任意数量的导电区域的系统的边界松弛技术的概括,并将其适用性扩展到包含磁性活性材料的系统。每种材料都在不同的正交曲线数字结构化网格上定义。这促进了电磁模型与材料传输的计算的耦合,其中通常仅涉及这些网格之一。该方法允许边界条件的精确而直接的表述,并且具有额外的优点,即仅需要离散载流区域。通过为存在分析解决方案的多个测试案例运行模型,对该技术进行了验证,然后将该技术应用于等离子感应灯特有的几何形状。这些结果的选择将得到演示和讨论。 [参考:21]

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