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首页> 外文期刊>IEEE Transactions on Magnetics >Finite Element Analysis of Thermal Problems in Gas-Insulated Power Apparatus With Multiple Species Transport Technique
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Finite Element Analysis of Thermal Problems in Gas-Insulated Power Apparatus With Multiple Species Transport Technique

机译:多种输运技术的气体绝缘电力设备热问题的有限元分析

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摘要

Thermal analysis is paramount in the design process of gas-insulated power apparatus. In this paper, a multiple species transport technique is proposed to deal with the heat transfer problem of gas-insulated power apparatus, in which the ambient air as well as ${rm SF}_{6}$ gas is included in the solution region. The FEM is employed to investigate the coupled eddy current, fluid, and thermal fields. Temperature-dependent electric and thermal properties of the materials are considered. The power losses calculated from electromagnetic analysis are used as heat input for fluid and thermal analysis, in which the need for convective boundary condition is eliminated. The proposed method is applied to the thermal analysis of both single- and three-phase bus bars and is validated by comparison with the analytical method and experimental results reported in the literature.
机译:在气体绝缘动力设备的设计过程中,热分析至关重要。针对气体绝缘动力装置的传热问题,本文提出了一种多物种输运技术,其中在解决方案区域中包括环境空气以及$ {rm SF} _ {6} $气体。 FEM用于研究耦合的涡流,流体和热场。考虑材料的随温度变化的电和热性能。通过电磁分析计算出的功率损耗用作流体和热分析的热量输入,从而消除了对流边界条件的需要。所提出的方法可用于单相和三相母线的热分析,并通过与文献中报道的分析方法和实验结果进行比较而得到验证。

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