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Effect of suspending bubbles on tracking failure of oil-impregnated pressboard

机译:悬浮气泡对浸油纸板的跟踪失效的影响

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Moisture in oil-immersed transformer will become small bubbles suspending in insulation oil at high temperature. In order to investigate the influence of suspending bubbles on tracking failure of oil-impregnated pressboard in oil-paper insulation, a model based on needle-plate electrodes was established. This model was used to study effect of the number of suspending bubbles generated by dropped distilled water on the discharge voltage, how the discharge signals varied during the process of tracking failure on the oil-impregnated pressboard surface with the effect of suspending bubbles, and the surface carbonization process of oil-impregnated pressboard during tracking failure. The results show that when the number of suspending bubbles increases with the increase of dropped distilled water, the partial discharge inception voltage in oilpaper insulation descends slowly while the surface flashover inception voltage descends sharply. The discharge process can be divided into three periods orderly according to the discharge signals during tracking failure. The discharge signals in each period have some relationship with each other and the recurrence plot (RP) method is used to analyze characteristics of the discharge signals. The surface carbonization process can be also divided into three periods the same as the discharge process. The carbonization on the oil-pressboard surface is slow under partial discharge while it's fast under surface flashover. Because suspending bubbles make surface flashover much easier, so they make the tracking failure of the oil-impregnated pressboard much easier too, although the carbonization in the insulation oil is more difficult than that in the air. This paper is helpful to understand the process of tracking failure of oil-impregnated pressboard in insulation oil with the effect of suspending bubbles, which will be beneficial for the insulation protection in oil-immersed transformer.
机译:油浸式变压器中的水分会变成小气泡,在高温下会悬浮在绝缘油中。为了研究悬浮气泡对油纸绝缘中含油压纸板跟踪失灵的影响,建立了基于针板电极的模型。该模型用于研究滴加的蒸馏水产生的悬浮气泡数量对放电电压的影响,在浸渍油的纸板表面上跟踪故障过程中放电信号如何受到悬浮气泡影响的变化以及跟踪失败期间浸油纸板的表面碳化过程。结果表明,当悬浮气泡数随滴加的蒸馏水的增加而增加时,油纸绝缘层的局部放电起始电压缓慢下降,而表面闪络起始​​电压急剧下降。根据跟踪失败时的放电信号,放电过程可分为三个周期。每个周期中的放电信号之间都有一定的关系,并且采用递归图(RP)方法分析放电信号的特性。表面碳化过程也可以分为与放电过程相同的三个时期。在局部放电下,压油板表面的碳化很慢,而在表面闪络下则很快。因为悬浮气泡使表面闪络变得容易得多,所以尽管绝缘油中的碳化比在空气中的碳化更困难,但它们也使油浸式纸板的跟踪失效也变得更加容易。本文有助于了解绝缘油中含油压纸板的故障跟踪过程,其中有气泡的悬浮作用,这对油浸式变压器的绝缘保护很有帮助。

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