大电流真空电弧阳极热过程分析

Chuan Xiang, Zhihui Huang, J. Zou
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引用次数: 1

摘要

在真空断路器断弧过程中,电极间等离子体向阳极流动,对阳极进行持续加热,并通过蒸发和辐射对阳极进行冷却。阳极热过程决定了vcb能否成功中断故障电流。在本研究中,我们建立了一个考虑阳极内部局部区域的熔融和相变、焦耳加热、热传导和热辐射的二维阳极热模型。阳极表面热流密度边界条件采用求解真空电弧MHD方程得到的边界条件。计算了阳极的温度分布和熔池尺寸。在此基础上,详细分析了断流过程中电弧电流对阳极最高温度的影响。该研究工作可为进一步研究压电陶瓷电弧后动态介电恢复特性奠定基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of anode thermal process of high-current vacuum arc
The anode is heated continuously by the inter-electrode plasma flowing towards the anode and cooled by evaporation and radiation during the arc interruption process of vacuum circuit breakers (VCBs). The anode thermal process determines whether the VCBs can interrupt the fault current successfully. In this study, we established a two-dimension anode thermal model taking into account the molten and phase change of local regions within anode, the Joule heating, the thermal conduction and the heat radiation. The heat flux density boundary condition on the anode surface utilized that obtained by solving of MHD equations of vacuum arc. Calculation of the temperature distribution and the molted pool size of anode were then conducted. After that, the analysis of the influence of arc current on the maximum temperature of anode during the current interruption was carried out in detail. The research work can serve as a base for the study of the post-arc dynamic dielectric recovery of VCBs.
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