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Partial discharge recognition through an analysis of SF6 decomposition products part 1: decomposition characteristics of SF6 under four different partial discharges

机译:通过分析SF6分解产物来识别局部放电第1部分:四种不同局部放电下SF6的分解特性

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摘要

Partial discharge (PD) is usually aroused before the failure of gas insulated switchgear (GIS) caused by defects, which results in the decomposition of the SF6 used as insulating gas. Analyzing SF6 decomposition products can aid in PD detection. Before recognizing PD types by analyzing SF6 decomposition products, the decomposition characteristics of SF6 under different types of PD should be investigated first. In this paper, a gas chamber and four typical types of artificial defects were designed to simulate the SF6 decomposition phenomenon under PD in GIS. A gas chromatography system was established to detect SF6 decomposition products. By selecting the chromatographic column, SF6 decomposition products were successfully separated and their concentrations were measured. Numerous SF6 decomposition experiments under four kinds of PD generated by four kinds of artificial defects were carried out and the SF6 decomposition products produced by each experiment were detected. The decomposition characteristics of SF6 under the four defects were different in terms of decomposition amount, generation rate, and concentration ratio, among others. It is feasible to recognize the type of PD by analyzing SF6 decomposition products.
机译:通常会在由缺陷引起的气体绝缘开关设备(GIS)发生故障之前引起局部放电(PD),这会导致用作绝缘气体的SF6分解。分析SF6分解产物可有助于PD检测。在通过分析SF6分解产物识别PD类型之前,应首先研究SF6在不同PD类型下的分解特性。本文设计了一个气室和四种典型类型的人工缺陷来模拟GIS中PD下的SF6分解现象。建立了气相色谱系统以检测SF6分解产物。通过选择色谱柱,成功分离了SF6分解产物并测量了其浓度。在由四种人造缺陷产生的四种PD下进行了许多SF6分解实验,并检测了每个实验产生的SF6分解产物。 SF6在四种缺陷下的分解特性在分解量,生成速率和浓度比等方面均不同。通过分析SF6分解产物来识别PD的类型是可行的。

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