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Influence of Residual Fluoro-Organic Gas Compounds on the Electric Performance of SF_6-Free Gas Insulated Systems in Consecutive Test Series

机译:残余氟 - 有机气体化合物对连续试验系列SF_6无气体绝缘系统电性能的影响

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From the technical point of view, SF_6 is an optimum gaseous insulation and switching medium and is, therefore, preferably used in medium- and high-voltage gas insulated systems. Nevertheless, a political demand has emerged for alternative solutions with improved environmental friendly properties, since SF_6 is listed in the Kyoto Protocol (1997) as greenhouse gas, of which emissions need to be reduced. To figure out the best gas candidates for this purpose, the dielectric breakdown strengths of different potential gas mixtures are under investigation. During these dielectric breakdown studies with alternative fluorinated gas mixtures, an influence on the dielectric breakdown strength in subsequent test series in the same gas vessel was observed, despite evacuating the vessel. This influence is potentially caused by the attachment of fluoro-organic gas molecules to the surface of the test vessel and their release over time in subsequent investigations. To estimate and quantify this influence, AC breakdown test series were performed with fluoro-organic compounds (mixed with carrier gas) and natural-origin gases in consecutive test series in the same test vessel. Parameters such as the exposure time and type of the fluoro-organic gas were investigated as well as the influence of evacuation duration and gas flushing. Furthermore, additional typical material samples from gas-insulated systems were placed in the test gas vessel to provide additional attachment surfaces for the fluoro-organic gas molecules. The influence of the different material samples was taken into account individually. The results are presented and discussed with regard to the independence of measurements, and a recommendation on how to avoid interactions is given.
机译:从技术的角度来看,SF_6是最佳气态绝缘和切换介质,因此,优选用于中型和高压气体绝缘系统。尽管如此,对于具有改善的环境友好性质的替代解决方案,已经出现了政治需求,因为SF_6在京都议定书(1997)中作为温室气体,需要减少排放。为此目的弄清楚最好的气体候选者,正在调查不同潜在气体混合物的介电击穿强度。在这些具有替代氟化气体混合物的这些介电击穿研究期间,尽管疏散了容器,但观察到在同一气体容器中的后续试验系列中对介电击穿强度的影响。这种影响可能是由氟 - 有机气体分子在试验容器的表面上附着而引起的,然后在随后的研究中随时间释放。为了估计和量化这种影响,在同一试验容器中的连续试验系列中的氟 - 有机化合物(混合载气)和天然原因气体进行AC击穿试验系列。研究了氟 - 有机气体的曝光时间和类型的参数以及抽空持续时间和气体冲洗的影响。此外,将来自气体绝缘系统的附加典型材料样品置于试验气体容器中,以为氟 - 有机气体分子提供附加附接表面。单独考虑不同材料样品的影响。在测量的独立性方面提出和讨论了结果,并提出了关于如何避免相互作用的建议。

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