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首页> 外文期刊>IEEE Transactions on Plasma Science >Investigation on Arc Behavior During Arc Motion in Air DC Circuit Breaker
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Investigation on Arc Behavior During Arc Motion in Air DC Circuit Breaker

机译:空气直流断路器电弧运动过程中电弧行为的研究

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摘要

In this paper, the complicated arc phenomena in air dc circuit breakers that are widely used in rail transit and vessels are investigated with both experimental and numerical approaches. Initially, the basic arc motion characteristics in the switch are presented by the recorded waveforms and images in the carefully designed breaking experiments. Phenomena of arc stagnation and back commutation are revealed and the influence of arc chamber width on the arc stagnation is preliminarily discussed according to the experimental results. Then, to make the nature of arc motion clear and to determine the influence details of the arc chamber width on arc motion characteristics, a simplified model based on magnetohydrodynamics theory is built and four cases with the arc chambers of different widths are calculated. The simulated arc behavior is presented by the temperature distribution sequences. In addition, the formation process of back commutation is described in detail by the variation of arc column. The influence mechanism of arc chamber width on arc motion is analyzed according to the differences of pressure propagation and temperature distribution in the arc chamber. Furthermore, the calculated arc displacement curves show that the arc stagnation time could be shortened and the risk of back commutation could be reduced by decreasing the arc chamber width within the reasonable extent.
机译:本文通过实验和数值方法研究了广泛应用于轨道交通和船舶的空气直流断路器中的复杂电弧现象。最初,在精心设计的中断实验中,记录的波形和图像显示了开关中的基本电弧运动特性。揭示了电弧停滞和反换向的现象,并根据实验结果初步讨论了电弧室宽度对电弧停滞的影响。然后,为弄清电弧运动的本质并确定电弧室宽度对电弧运动特性的影响细节,建立了基于磁流体动力学理论的简化模型,并计算了四种不同宽度电弧室的情况。模拟的电弧行为由温度分布序列表示。另外,通过换向弧柱详细描述了反向换向的形成过程。根据电弧室内压力传播和温度分布的差异,分析了电弧室宽度对电弧运动的影响机理。此外,计算得出的电弧位移曲线表明,通过在合理范围内减小电弧室宽度,可以缩短电弧停滞时间,并可以减少换向的风险。

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