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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Diagnosis on increase in electrostatic charging tendency of mineral insulating oil for power transformers due to aging
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Diagnosis on increase in electrostatic charging tendency of mineral insulating oil for power transformers due to aging

机译:诊断老化导致的电力变压器矿物绝缘油静电荷增加趋势的诊断

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摘要

Diagnosis on electrostatic charging tendency (ECT) of mineral insulating oil for power transformers has been performed. Increase in the ECT is derived from sulfonium ions, which are generated by sulfoxide compounds and hydrogen ions. Strong correlation between the ECT and the sulfoxide concentration is obtained in a series of thermal aging tests with oxygen and/or copper catalyst. The volume resistivity of oil is used as an alternative indicator for the concentration of hydrogen ion because hydrogen ions increase the electrical conductivity of oil and the sensitivity of conventional property such as total acid value is too low to evaluate the aging deterioration of closed-type transformers. Analysis of oils extracted from 98 actual transformers, whose operating years are between 3 and 46 years, are performed. High ECT values more than 200 pC/ml are detected in some oils and their volume resistivity values are less than 4 x 1014 <9;cm. Degree of the correlation between the ECT and the sulfoxide concentration is low compared to the result of the thermal aging tests. A diagnostic map with four areas classified using a pair of indicators of volume resistivity and sulfoxide concentration is useful to predict prospective increases in the ECT. Appropriate transformer operation and maintenance including air exposure avoidance of their mineral insulating oils is one of the effective solutions to prevent the ECT from increasing.
机译:已经对用于电力变压器的矿物绝缘油的静电充电趋势(ECT)进行了诊断。 ECT的增加源自sulf离子,sulf离子由亚砜化合物和氢离子产生。在使用氧气和/或铜催化剂进行的一系列热老化测试中,获得了ECT和亚砜浓度之间的强相关性。油的体积电阻率可用作氢离子浓度的替代指标,因为氢离子会增加油的电导率,并且常规特性(例如总酸值)的敏感性太低,无法评估封闭式变压器的老化性能。对从98年实际变压器中提取的油进行了分析,这些变压器的运行年限在3至46年之间。在某些油中检测到的ECT值高于200 pC / ml,其体积电阻率值小于4 x 1014 <9; cm。与热老化试验的结果相比,ECT和亚砜浓度之间的相关度低。使用一对体积电阻率和亚砜浓度指标对四个区域进行分类的诊断图可用于预测ECT的预期增加。适当的变压器运行和维护,包括避免空气中暴露于矿物绝缘油中,是防止ECT增大的有效解决方案之一。

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