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Experimental study on the relationship between partial discharge and gas decomposition products in SF6 insulated electrical equipments

机译:SF6绝缘电气设备局部放电与气体分解产物关系的实验研究

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SF6 decomposition serves as an effective means for online fault detection and diagnosis of SF6 insulated equipments. The relationship between SF6 decomposition products and partial discharge (PD) in SF6 insulated equipments remains a significant theoretical and practical issue to be addressed. Based on the simulations of protrusion discharge, floating discharge and surface discharge in SF6 insulated equipments, the present experiment studied the impacts of differentiated PD patterns, PD severities and SF6 pressures on the concentrations of SF6 decomposition products as well as the change in concentrations over time. The experimental results indicate that three kinds PD pattern discharges produce SOF2+S02 and HF, the concentration of the SOF2+S02 being always higher than HF. Generation of both gases increase with voltage application time; The concentrations of SOF2+S02 and HF differ from differentiated PD discharge strength, and increase as discharge strength ascends; A negative relationship exists between SF6 gas pressure and the generation speed of SOF2+S02 and HF. It is concluded that SF6 decomposition products, SOF2+S02 and HF in particular, could be used as a means for on-line PD faults detection and diagnosis.
机译:SF6分解是对SF6绝缘设备进行在线故障检测和诊断的有效手段。 SF6绝缘设备中SF6分解产物与局部放电(PD)之间的关系仍然是一个重要的理论和实践问题。在模拟SF6绝缘设备的突出放电,浮动放电和表面放电的基础上,本实验研究了不同的PD模式,PD强度和SF6压力对SF6分解产物浓度以及浓度随时间的变化的影响。 。实验结果表明,三种PD模式放电会产生SOF2 + SO2和HF,SOF2 + SO2的浓度始终高于HF。两种气体的产生都随着电压施加时间的增加而增加。 SOF2 + SO2和HF的浓度与PD放电强度有所不同,并且随着放电强度的升高而增加; SF6气体压力与SOF2 + SO2和HF的生成速度之间存在负相关关系。结论是,SF6分解产物,特别是SOF2 + SO2和HF,可以用作在线PD故障检测和诊断的手段。

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