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Testing and Modeling of Low Current Arc in Free Air

机译:空气中低电流电弧的测试和建模

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摘要

As single-phase-earth fault occurred in low current earthed system, arc self-extinguishing characteristics caused by the short-circuit currents influence the safety and the reliability of Grid working. A simulated test circuit is adopted in the paper, to discuss arcing characteristics on low current system by abundant tests. Based on these achieved test data, taking the movement of long AC arc into account to get arc factual length, an arc dynamic conductance model at low current is setup, promoting the equivalent circuit and arc self-extinction criterion of arc model. Single-phase-earth arcing fault on 10kV distribution network is computed and analyzed as an example by the simulation program, those results, as arc length, arc waveforms and arc duration times, conform test phenomenon. With the studies, arc self-extinction mechanism at low current in free air has been completed further to expose the physical nature of air arc, and proposing a practical arc model to guide the engineering application.
机译:在低电流接地系统中发生单相接地故障时,由短路电流引起的电弧自熄特性会影响电网的安全性和可靠性。本文采用了模拟测试电路,通过大量测试讨论了低电流系统的电弧特性。基于这些获得的测试数据,考虑长交流电弧的运动以获得电弧的实际长度,建立了低电流下的电弧动态电导模型,提升了电弧模型的等效电路和电弧自熄灭准则。以仿真程序为例,对10kV配电网单相接地电弧故障进行了计算分析,结果表明,电弧长度,电弧波形和持续时间均符合试验现象。通过研究,进一步完善了自由空气中低电流电弧自熄机理,进一步揭示了空气电弧的物理性质,并提出了实用的电弧模型来指导工程应用。

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