Plasma Characteristics of Medium Voltage AC Air Arc Discharge and Its Application on Arc Electrical Parameters Calculation

Tong Zhou, Qing Yang, Tao Yuan, Hengxin He, Hongwen Liu
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Abstract

Abstract Medium voltage (MV) AC air arcs occur frequently in distribution networks. An electric arc can easily cause electrical fires, leading to serious accident consequences. Obtaining the electrical characteristics of arc faults through arc models is a crucial measure to detect and prevent arc faults. The arc electrical characteristics are affected by many factors such as the ambient air pressure, current magnitude, and arc length, and it is difficult to describe it in an analytical form. The widely used conventional black-box arc model reflects the influence of multiple factors on the electrical characteristics of arcs through fitting or empirical formulae. The model ignores the intrinsic physical and chemical processes, and the applicable range of the model is limited. Focusing on this problem, based on the physicochemical processes of the arc in the arcing and post-arcing stages, a relationship between the electrical and plasma characteristics of the MV AC air arc was established. Subsequently, the arc plasma characteristics were determined experimentally, and were applied to the calculation of the arc electric characteristics. Finally, the calculation results of the arc electrical characteristics were verified using the experimental results, providing a basis for related model improvements and applications.
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中压交流空气电弧放电等离子体特性及其在电弧电学参数计算中的应用
配电网中压(MV)交流空气电弧是配电网中常见的电弧。电弧很容易引起电气火灾,导致严重的事故后果。通过电弧模型获取电弧故障的电特性是检测和预防电弧故障的关键措施。电弧电特性受环境气压、电流大小、电弧长度等诸多因素的影响,难以用解析形式描述。广泛使用的传统黑盒电弧模型通过拟合或经验公式来反映多种因素对电弧电特性的影响。该模型忽略了内在的物理和化学过程,模型的适用范围有限。针对这一问题,基于电弧在电弧前后阶段的物理化学过程,建立了中压交流空气电弧的电特性与等离子体特性之间的关系。实验确定了电弧等离子体的特性,并将其应用于电弧电特性的计算。最后,利用实验结果验证了电弧电特性的计算结果,为相关模型的改进和应用提供了依据。
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