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Temperature-dependent surface charge and discharge behaviour of converter transformer oil–paper insulation under DC voltage

机译:直流电压下变流器变压器油纸绝缘与温度有关的表面充放电行为

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摘要

Ambient temperature has significant influence on properties of oil-paper insulation, which makes surface discharge process complex. This paper aims at revealing the influence mechanism of ambient temperature on surface charge and discharge behaviours under DC voltage. The oil-paper with thickness of 0.08 mm was used and the ambient temperature varies from 20 to 80 degrees C in this paper. The results of surface potential decay (SPD) experiments show that the initial surface potential declines and the process of SPD is accelerated with increasing temperature because of higher carrier mobility. Additionally, both shallow and deep trap energy level become deeper, the shallow trap density is enlarged while the deep trap density is shrunken at higher temperature. The surface discharge tests were performed and Weibull results indicate that it is prone to occurring surface discharge at higher ambient temperature. The possibility of surface discharge under negative voltage is larger than that under positive voltage because of polarity effect. It is concluded that more carriers escape from deep traps to participate in the procedure of surface discharge at higher temperature, which declines the surface discharge voltage.
机译:环境温度对油纸绝缘性能有重要影响,这使表面放电过程变得复杂。本文旨在揭示环境温度对直流电压下表面充放电行为的影响机理。使用的油纸厚度为0.08毫米,环境温度在20到80摄氏度之间变化。表面电势衰减(SPD)实验的结果表明,由于载流子迁移率较高,初始表面电势下降并且SPD的过程随着温度的升高而加速。另外,浅陷阱和深陷阱的能级都变深,浅陷阱的密度增大,而深陷阱的密度在较高温度下缩小。进行了表面放电测试,Weibull结果表明,在较高的环境温度下,很容易发生表面放电。由于极性效应,负电压下表面放电的可能性大于正电压下表面放电的可能性。结论是,更多的载流子从深陷阱中逸出,参与高温下的表面放电过程,从而降低了表面放电电压。

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