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Investigation on Lightning Impulse Breakdown and Dissolved Gas Characteristics of the Novel Three-element Mixed Insulation Oil

机译:新型三元混合绝缘油的雷电冲击击穿及溶解气特性研究

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As a kind of potential alternative of traditional mineral insulation oil, mixed oil gives rise to numerous researches on its physicochemical and insulation properties. On this background, a novel three-element mixed insulation oil was developed successfully by our team. Its key parameters meet the requirements of IEC 60296:2012. In order to promote the application of the novel three-element mixed insulation oil in transformers, the research on its insulation characteristics had been carried out under severe non-uniform electric field. In this study, the breakdown voltages and propagation velocities of the novel three-element mixed insulation oil under standard lightning impulse voltage were measured by the rising-voltage method, and the oil gap distance was adjusted from 5mm to 25mm. The dissolved gas characteristics after breakdown fault of the novel three-element mixed insulation oil were also studied at gap distance of 10 mm by gas chromatography. Compared the lightning impulse breakdown voltages of the novel three-element mixed insulation oil with that of mineral oil, the former exhibits much lower breakdown voltages under negative polarity than the latter, and slightly higher under positive polarity. The novel three-element mixed insulation oil also has lower propagation velocities than mineral oil at gap distances from 5 mm to 25 mm. Besides, H2 and C2H2 are the main gaseous products after lightning breakdown fault of the novel three-element mixed insulation oil. With the increase of breakdown times, the contents of H2and C2H2 are obviously increased, which can be used as the characteristic gases of lightning impulse breakdown fault for the novel three-element mixed insulation oil.
机译:作为传统矿物绝缘油的一种潜在替代品,混合油在其物理化学和绝缘性能方面引起了众多研究。在这种背景下,我们的团队成功开发了一种新型的三元素混合绝缘油。其关键参数符合IEC 60296:2012的要求。为了促进新型三元混合绝缘油在变压器中的应用,已经在严重的非均匀电场下对其绝缘特性进行了研究。本研究采用上升电压法测量了新型三元混合绝缘油在标准雷电冲击电压下的击穿电压和传播速度,并将油隙距离从5mm调整为25mm。还通过气相色谱法研究了新型三元混合绝缘油在10 mm间隙距离下发生故障后的溶解气体特性。将新型三元混合绝缘油与矿物油的雷电击穿电压进行比较,前者在负极性下的击穿电压要比后者低得多,而在正极性下的击穿电压要高得多。在间隙距离为5 mm至25 mm时,新型三元素混合绝缘油的传播速度也比矿物油低。此外,H 2 和C 2 H 2 是新型三元混合绝缘油雷击故障后的主要气体产物。随着击穿时间的增加,H的含量 2 和C 2 H 2 明显增加,可作为新型三元混合绝缘油的雷电冲击击穿故障的特征气体。

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