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Simulated Experiments for Teaching CAD Techniques Using Analytic and Finite Element Solutions of Electromagnetic Two-Dimensional Problems with Longitudinal Symmetry

机译:纵向对称电磁二维问题的解析和有限元解的CAD技术教学模拟实验

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The paper describes an approach to teaching low-frequency electromagnetic CAD techniques to undergraduate students pursuing a degree course in electrical engineering. The simulated experiments make use of a two-dimensional open-access software based on the finite-element method. At the laboratory meetings, the problems are initially solved analytically. Upon this, students learn how to create the numeric model and how to define the sequence of field problems that lead to the required solution. Simulation tasks based on a force-producing electromagnet are used to introduce numeric techniques to determine magnetic field distribution, evaluation of energy storage and generation of magnetic forces. The nature of the magnetic force generated in the air gaps of the C -core electromagnet is explained in detail. Magnetic forces are calculated by the classical and weighted versions of the method of Maxwell stress tensor. The paper provides all the basic elements required for further exploration of devices with longitudinal symmetry.
机译:本文介绍了一种向攻读电气工程学位课程的本科生教授低频电磁CAD技术的方法。仿真实验利用基于有限元方法的二维开放访问软件。在实验室会议上,首先通过分析解决了问题。在此基础上,学生将学习如何创建数值模型以及如何定义导致所需解决方案的现场问题的顺序。基于产生力的电磁体的模拟任务用于引入数值技术来确定磁场分布,评估能量存储和产生磁力。详细解释了C芯电磁体的气隙中产生的磁力的性质。磁力是通过麦克斯韦应力张量法的经典形式和加权形式来计算的。本文提供了进一步探索具有纵向对称性的设备所需的所有基本元素。

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