带公共屏蔽的封装母线系统的磁热建模

I. Popa, A. Dolan
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引用次数: 2

摘要

在本文中,我们提出了一种方法,为一个封装母线系统的磁和热建模,在三相执行,为高压使用QuickField软件。本文提出了一种将磁场问题与静、瞬态热场问题耦合发展起来的具有公共屏蔽的三相执行母线系统几何问题的数值模型。将磁场问题的比损失作为热场问题的热源,实现了问题的耦合。磁场问题也与电路有关。在铁磁屏蔽系统中,导体之间产生的电动力与在无屏蔽系统中产生的电动力值不同。在模型中考虑了电导率随温度的变化。利用磁模型计算的功率损耗,估算了热模型中对流和辐射的整体换热系数。在计算总传热系数时,考虑了空气的物理性质对温度的依赖性。数值温度值和解析温度值吻合得很好。该模型可用于带共屏蔽的三相母线系统的分析、设计和优化。
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Magneto-thermal modeling of an encapsulated busbars system with common shield
In this paper, we propose an approach for the magnetic and thermal modeling of an encapsulated busbars system, in three-phase execution, for high voltage using QuickField software. The paper proposes a numerical model developed by coupling of the magnetic field problem with the stationary and transient heat field problems for the geometry of a three-phase execution busbars system with common shield. The coupling of problems is realized by importing specific losses from the magnetic field problem as heat sources for thermal field problem. The magnetic field problem is also coupled to the electrical circuit. The electrodynamic forces that occur between conductors in the presence of the ferromagnetic shield have different values compared to those that occur in an unshielded system. In the model it was taken into account the variation of electrical conductivity with the temperature. The global heat transfer coefficient by convection and radiation used in thermal model was estimated using the power losses computed by magnetic model. When evaluating the global heat transfer coefficient was taken into account the temperature dependence of the physical properties of the air. There is a good agreement between numerical and analytical temperature values. The presented model can be used for analysis, design and optimization of three-phase busbars system with common shield.
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