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Experimental study and numerical modelling of a dielectric barrier discharge in hybrid air-dielectric insulation

机译:混合空气-电介质绝缘中介质阻挡放电的实验研究和数值模拟

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Results from experiments and numerical modelling of dielectric barrier discharges (or microdischarges) responsible for surface charging of a plane-parallel electrode arrangement covered with non-conducting solid dielectric coatings and comprising an air gap are presented. The purpose was to analyse the discharge progress and its influence on the surface charge build-up, which essentially is the cause of, from a high voltage insulation perspective, a beneficial electric field distribution with lowered electric field in the air gap and enhanced electric field in the dielectric coatings. The experimental investigation was performed in terms of high-voltage impulse testing, applying a crest voltage at the discharge inception level. Discharge current was measured and its progress in the air gap was photographed using an image intensified charged-couple device camera. Temporal and spatial development of an individual barrier discharge in a plane-parallel and rotational-symmetric geometry was numerically analysed by means of a two-dimensional diffusive-drift model. The idea of using limited barrier discharging to condition the hybrid insulation, which changes the electric field distribution and subsequently improves the insulation performance of the electrode system, is effectively demonstrated by the numerical simulation and supported by measured results. In a number of cases, measured and calculated discharge current patterns were found to agree structurally and to correctly display the predicted avalanche and streamer discharge phases. (C) 2003 Elsevier B.V. All rights reserved. [References: 33]
机译:给出了电介质势垒放电(或微放电)的实验结果和数值模型的结果,该介质负责对覆盖有非导电固体电介质涂层并包含气隙的平面平行电极装置进行表面充电。目的是分析放电过程及其对表面电荷积聚的影响,从高电压绝缘的角度来看,这基本上是有益的电场分布的原因,该电场分布具有减小的气隙电场并增强了电场在介电涂层中。在高压脉冲测试方面进行了实验研究,在放电开始时施加峰值电压。测量放电电流,并使用图像增强型电荷耦合器件照相机拍摄其在气隙中的进展。借助二维扩散漂移模型,对平面平行和旋转对称几何结构中单个势垒放电的时间和空间发展进行了数值分析。数值模拟有效地证明了使用有限势垒放电来调节混合绝缘的想法,该混合绝缘改变了电场分布并随后改善了电极系统的绝缘性能,这一想法已通过数值模拟得到了有效证明,并得到了测量结果的支持。在许多情况下,发现测量和计算的放电电流模式在结构上是一致的,并且可以正确显示预测的雪崩和拖缆放电阶段。 (C)2003 Elsevier B.V.保留所有权利。 [参考:33]

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