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Flashover performance of UHVEHV post insulators under icing conditions

机译:UHV和EHV后绝缘子在结冰条件下的闪络性能

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The results of a laboratory study on the electrical performance of 1000kV and 500kV post insulators as well as 500kV bushing covered with wet-grown ice were presented in this paper. The tests were performed in a large-scale artificial climate chamber at UHVAC test base of State Grid Corporation of China (SGCC). The ice formed artificially by super cooled water droplets accreted on the energized insulators under an air temperature of -10°C. The 50% flashover voltages and the leakage current were obtained by tests on polluted insulators during ice melting regime. The influence of salt deposit density (SDD) and the average diameter of the insulators to the flashover performance were discussed. The results show that the 50% flashover voltage is decreased with the increasing of SDD, which follows the law of negative power exponent. And a larger diameter of insulator corresponds to a larger icing area when the icing condition is the same, which result a smaller resistance on the surface of the insulator. Therefore, in a fixed SDD, the 50% flashover voltage also decreased with the increasing of the average diameter, but the leakage current before flashover is larger, which can be explained by ohms law.
机译:本文提出了对1000kV和500kV岗位绝缘子的电气性能的实验室研究结果以及用湿冰覆盖的500kV衬套。在中国(SGCC)的UHVAC测试基地的大规模人造气候室中进行了测试。通过在-10℃的空气温度下在通电绝缘体上施加的超冷却水滴形成的冰。通过在冰熔化状态下测试污染绝缘体的测试获得了50%的闪络电压和漏电流。讨论了盐沉积密度(SDD)和绝缘体对闪络性能的平均直径的影响。结果表明,随着SDD的增加,50%的闪络电压降低,这遵循负极功率指数的规律。当糖合条件相同时,绝缘体的较大直径对应于较大的糖合面积,这导致绝缘体的表面上的较小电阻。因此,在固定的SDD中,50%的闪络电压随着平均直径的增加而降低,但闪络前的漏电流较大,这可以通过欧姆法解释。

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