AC partial discharge characteristic at minute air gap under non-uniform electric field

M. Kida, T. Kawashima, Y. Murakami, M. Nagao
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引用次数: 1

Abstract

For a raise of the miniaturization and reliability of various electric power apparatuses, it is important to clarify the partial discharge characteristic in their insulation part. In many case, partial discharge may occur under the non-uniform field. So, it is necessary to understand the partial discharge characteristic under non-uniform electric filed. Partial discharge inception voltage (PDIV) was measured under AC voltage application using needle-plane electrode system. Partial discharge inception electric field (PDIE) was estimated using COMSOL that is a general purpose physical simulation software. When the air gap distance was below 50 μm and the tip radius was 10, 30 and 60 μm, PDIE at the needle tip was almost the same as the electric field estimated by the Paschen curve. In this case, it is considered that PDIV may be decided by the electric field at the needle tip and that the emission of initial electrons plays very important role in the partial discharge process. However, when the needle tip radius was 10 or 30 μm and the air gap distance became 50 μm, PDIE at the needle tip became higher than the electric field strength estimated by the Paschen curve. In this latter case, it is considered that even if initial electron was emitted from the needle tip, the electric field was not enough to develop the detectable electron avalanche. From our experiment, the electric field strength necessary to the detectable partial discharge development is estimated to be about 67 % of the electric field strength necessary to the initial electron emission from the needle tip.
非均匀电场作用下小气隙交流局部放电特性
为了提高各种电力设备的小型化和可靠性,明确其绝缘部分的局部放电特性是十分重要的。在许多情况下,局部放电可能发生在非均匀场下。因此,有必要了解非均匀电场作用下的局部放电特性。采用针面电极系统测量了交流电压下局部放电起始电压。局部放电起始电场(PDIE)采用通用物理模拟软件COMSOL进行估算。当气隙距离小于50 μm,针尖半径分别为10、30和60 μm时,针尖处的PDIE与Paschen曲线估计的电场基本一致。在这种情况下,我们认为PDIV可能是由针尖处的电场决定的,而初始电子的发射在局部放电过程中起着非常重要的作用。而当针尖半径为10 μm或30 μm,气隙距离为50 μm时,针尖处的PDIE高于Paschen曲线估计的电场强度。在后一种情况下,认为即使初始电子从针尖发射,电场也不足以产生可探测的电子雪崩。从我们的实验中,可检测的局部放电发展所需的电场强度估计约为针尖初始电子发射所需电场强度的67%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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