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Effects of DC Component in Asymmetric Fault Current on the Thermal Recovery Characteristics of an SF6 Autoexpansion Circuit Breaker

机译:不对称故障电流中的直流分量对SF 6 自膨胀断路器热恢复特性的影响

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A 2-D magnetohydrodynamic arc model is used to study the thermal recovery processes with long and short arc durations in an autoexpansion circuit breaker where a significant dc component in the fault current exists. The influence of the dc component on the pressure built-up in the expansion volume was first investigated and the thermal recovery characteristics compared with cases where asymmetry of the fault current is negligible. Results show that, in comparison with the cases of symmetrical fault current, pressurization in the expansion volume is largely determined by the arc energy in the second half cycle of fault current, which is significantly influenced by the dc component. The dc component affects evidently the arc temperature at the current zero point and leads to a reduction in the critical rate of rise of recovery voltage.
机译:二维磁流体动力电弧模型用于研究故障电流中存在重要直流分量的自动膨胀断路器中电弧持续时间长短的热恢复过程。首先研究了直流分量对在膨胀体积中积累的压力的影响,并且与故障电流的不对称性可以忽略的情况相比,热回收特性得到了改善。结果表明,与故障电流对称的情况相比,膨胀体积中的压力主要由故障电流的后半个周期中的电弧能量决定,而直流分量对此影响很大。直流分量明显影响当前零点处的电弧温度,并导致恢复电压的临界上升率降低。

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