Research on fast calculation of dynamic process with thermal effects in electromagnetic device based on semi-analytical modeling

W. Yang, Peng Liu, G. Zhai
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Abstract

Dynamic characteristics of some electrical actuators such as contactor or relay can be accurately obtained with Finite Element method though the calculation takes usually long time. However, for some high power device such calculation can be meaningless because it disregards the thermal effects of the coil. And these thermal effects can produce significant impaction to the output characters. Indeed such problems are difficult to handle because it involves coupled phenomena from various physical domains, namely thermal, electric and magnet effect. Much research has been done to deal with such multi-physics problem. Our research focuses on embedding the thermal model of the coil to the already established semi-analytical model, which can calculate the dynamic process both efficiently and accurately. As a matter of fact, the Joule heat of the coil has two main effects: altering the B-H characters of the ferromagnetic materials and altering the resistivity of the charged coil. And these changes will in turn affect the dynamic process and the heating power of the coil. The thermal transient process featured by heating power, heat radiation power and thermal resistance etc, is studied to make this coupling feasible for fast calculation based on semi-analytical model. JQ-52F, a high power DC contactor with solenoid structure, is chosen as an example to elaborate our research.
基于半解析建模的电磁器件热效应动态过程快速计算研究
一些电动执行器如接触器或继电器的动态特性可以用有限元法精确计算,但计算时间较长。然而,对于一些高功率器件,这样的计算可能是没有意义的,因为它忽略了线圈的热效应。这些热效应会对输出特性产生很大的影响。事实上,这些问题很难处理,因为它涉及到各种物理领域的耦合现象,即热效应、电效应和磁效应。在处理这类多物理场问题方面已经做了大量的研究。我们的研究重点是将线圈的热模型嵌入到已经建立的半解析模型中,从而可以高效准确地计算出线圈的动态过程。事实上,线圈的焦耳热有两个主要作用:改变铁磁材料的B-H特性和改变带电线圈的电阻率。而这些变化又会反过来影响线圈的动态过程和发热功率。研究了以加热功率、热辐射功率和热阻等为特征的热瞬态过程,使这种耦合能够实现基于半解析模型的快速计算。以JQ-52F电磁结构大功率直流接触器为例,详细阐述了本文的研究工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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