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DC flashover performance of an inclined insulator string under heavy icing conditions

机译:结冰条件下倾斜绝缘子串的直流闪络性能

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In this study, the DC flashover performance of an inclined insulator string of four insulator units fully bridged with ice was investigated. Moreover, a DC arc model to predict the critical flashover voltage for the inclined insulator string was elaborated. For the laboratory experiments, glaze ice was deposited artificially in a uniquely designed cold room at CIGELE laboratories using a pneumatic spray nozzle system. This type of ice is known as the most dangerous one as it is associated to the highest probability of flashover of an ice-covered insulator. The conductivity of applied water was adjusted to 60 and 100 μS/cm by adding sodium chloride (NaCl) to deionized water feeding the nozzles. The flashover performance of test insulator string was measured under a melting regime, as prescribed in IEEE Std. 1783. This procedure simulates conditions generally observed for insulator flashovers on natural sites. Based on the experimental results obtained, it was found that the maximum withstand voltage of an inclined insulator string at a swing angle of 30° is about 20-40% higher than that of the same insulator string in a vertical position under the same experimental conditions. Moreover, there was good concordance between the experimental results and the ones calculated from the model developed in this study.
机译:在这项研究中,研究了四个完全用冰桥接的绝缘子单元的倾斜绝缘子串的直流闪络性能。此外,详细阐述了用于预测倾斜绝缘子串临界击穿电压的直流电弧模型。对于实验室实验,使用气动喷嘴系统将釉冰人工沉积在CIGELE实验室独特设计的冷藏室中。这种类型的冰被称为最危险的冰,因为它与覆冰绝缘子的飞弧可能性最高有关。通过向送入喷嘴的去离子水中添加氯化钠(NaCl),将施加的水的电导率调整为60和100μS/ cm。按照IEEE Std.3的规定,在熔化条件下测量了测试绝缘子串的闪络性能。 1783.此程序模拟了自然地点绝缘子闪络通常观察到的条件。根据获得的实验结果,发现在相同的实验条件下,倾斜绝缘子串在30°摆角下的最大耐压比在垂直位置的相同绝缘子串的最大耐压高约20-40%。 。而且,实验结果与根据本研究开发的模型计算出的结果之间具有良好的一致性。

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