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首页> 外文期刊>International journal of electrical engineering and education >Calculation of the inductance of conductive nonmagnetic conductors by means of finite element method simulations
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Calculation of the inductance of conductive nonmagnetic conductors by means of finite element method simulations

机译:通过有限元方法模拟计算导电非磁导体的电感

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摘要

This article analyzes the inductance of different conductive nonmagnetic conductors' configurations under alternating current supply. The inductance is a key design parameter in tracks of electronic devices, power transmission and distribution systems, and lightning, grounding, and bonding systems. Inductance highly relies on the problem geometry, and under AC supply, it is also influenced by skin and proximity effects. The inductance significantly determines voltage drop in conductors, thus increasing reactive power consumption and limiting conductors' ampacity. Although this is an important topic, it is seldom studied in detail in undergraduate and even in graduate physics and engineering studies. To this end, this paper compares the results provided by existing closed formulas for simple conductors' configurations with those attained through two-dimensional finite element method simulations. Finite element method based simulations are increasingly being incorporated in the syllabuses of graduate and undergraduate courses due to their accurate solutions and flexibility, since finite element method models can be applied in a wide range of electrical frequencies and configurations, some of which do not have an analytical solution. The finite element method based approach presented in this paper has been found a valuable complement to the lectures and assignments in electricity courses for engineering students.
机译:本文在交流电源下分析了不同导电非磁导体配置的电感。电感是电子设备,电力传输和分配系统以及闪电,接地和粘接系统的关键设计参数。电感高度依​​赖于问题几何形状,并且在交流电源下,它也受皮肤和邻近效应的影响。电感显着决定导体中的电压降,从而增加了无功功耗和限制导体的余地。虽然这是一个重要的话题,但很少在本科生和甚至在研究生物理和工程研究中详细研究。为此,本文将现有封闭式公式提供的结果与通过二维有限元方法模拟所达到的简单配置。基于元素法的模拟越来越多地被纳入研究生和本科课程的教学大纲,因为它们的准确解决方案和灵活性,因为有限元方法模型可以应用于各种电频率和配置,其中一些没有分析解决方案。本文提出的基于有限元方法的方法已经发现了对工程学生电力课程的讲座和作业有价值的补充。

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