Relationship between the paper covering thickness of the electrode and the development of the surface flashover at impulse voltages

V. Abri
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Abstract

The surface flashover (SF) is one of the main causes of the breakdown in high voltage devices insulated with composite materials such as oil/cellulose system. It is highly probable that the SF can be initiated in the oil near the highly stressed electrode then propagates along the oil solid interface to the ground. In this paper the development of the streamer in oil to a creep discharge or surface flashover is qualitatively analyzed, as well as its relationship to the thickness of the paper covering the high voltage electrode. A sphere plane electrode configuration and impulse voltage were used for the investigation. The experimental result has shown a tendency of a thicker paper covering of the high voltage electrode to lower the partial discharge level thus decreasing the probability for the discharge to develop as a surface flashover. The puncturing of the paper seems to be the main cause of the breakdown. This is explained by the facility of the streamer to extract the discharge from the metal source in the punctured region of the electrode.
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脉冲电压下电极的覆纸厚度与表面闪络发展的关系
表面闪络是油/纤维素等复合材料绝缘高压器件击穿的主要原因之一。极有可能在高压电极附近的油层中产生顺波,然后沿油固界面向地面传播。本文定性地分析了油中流光向蠕变放电或表面闪络的发展,以及其与高压电极覆盖纸厚度的关系。采用球平面电极结构和脉冲电压进行了研究。实验结果表明,在高压电极上覆盖较厚的纸层有降低局部放电水平的趋势,从而降低了放电发展为表面闪络的可能性。纸被刺破似乎是损坏的主要原因。这可以用流线从电极穿孔区域的金属源中提取放电的装置来解释。
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