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Characteristic Gas and Production Law of Natural Ester Insulating Oil under Electro-thermal Faults

机译:电热断层下天然酯绝缘油的特征气与生产规律

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The natural ester has a widespread future at the application prospects in high voltage power system whose safe operation are effected by the fault diagnosis technology. At present, the characteristic gas and gas production law of natural ester at different electrical and thermal faults are not clear yet. In this paper, an experimental platform was built to simulate the electro-thermal faults under different voltage and temperature conditions. The characteristic gas and gas production laws under the above fault conditions were tested and analyzed. The results show that the characteristic gases of natural ester oil under different electro thermal faults are carbon dioxide, carbon monoxide, hydrogen, ethylene, ethane, acetylene and methane. The three gases of carbon dioxide, carbon monoxide and hydrogen have the most gas production. The production of carbon dioxide, carbon monoxide, hydrogen, ethane and acetylene varied more obvious under partial discharge faults at different temperatures. The production of carbon dioxide, carbon monoxide, hydrogen, ethane and methane varied more obvious under spark discharge faults at different temperatures. The production of carbon dioxide, carbon monoxide, hydrogen, ethane, acetylene and methane varied more obvious under high energy faults at different temperatures. Therefore, six types of characteristic gases, such as carbon dioxide, carbon monoxide, hydrogen, ethane, acetylene and methane, and their gas production rules can be used to judge the types of electro thermal faults. The above research can provide characteristic gas data for the natural ester oil fault diagnosis method based on dissolved gas analysis.
机译:天然酯在其故障诊断技术影响其安全运行的高压电力系统中具有广阔的应用前景。目前,天然酯在不同电气和热故障下的特征产气和产气规律尚不明确。在本文中,建立了一个实验平台来模拟在不同电压和温度条件下的电热故障。对上述故障条件下的特征性天然气和天然气生产规律进行了测试和分析。结果表明,天然酯油在不同电热故障下的特征气体为二氧化碳,一氧化碳,氢气,乙烯,乙烷,乙炔和甲烷。二氧化碳,一氧化碳和氢气这三种气体产生的气体最多。在不同温度下的局部放电故障下,二氧化碳,一氧化碳,氢气,乙烷和乙炔的产量变化更为明显。在不同温度下的火花放电故障下,二氧化碳,一氧化碳,氢气,乙烷和甲烷的产生变化更为明显。在不同温度下的高能断层下,二氧化碳,一氧化碳,氢气,乙烷,乙炔和甲烷的产量变化更为明显。因此,可以使用六种类型的特征性气体(例如二氧化碳,一氧化碳,氢气,乙烷,乙炔和甲烷)及其气体产生规则来判断电热故障的类型。以上研究可为基于溶解气分析的天然酯油故障诊断方法提供特征气数据。

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