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DC pollution flashover performance of HVDC composite insulator under different non-uniform pollution conditions

机译:不同非均匀污染条件下HVDC复合绝缘子的直流污染闪络性能

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The non-uniform air flow field and electrical field distributing around insulators cause uneven deposition of pollution particles on different positions and parts of the insulator surfaces. Pollution-induced flashover is a serious threat to the safe operation of the power system, and non-uniform pollution distribution has great influence on flashover voltage of insulators. Towards this, in this study, the solid layer method was used to simulate different non-uniform pollution conditions. Then, DC pollution flashover tests of composite insulators were carried out and the flashover performances were analyzed. The results indicated that the increase of K uw (from 1 to 15) decreased U-50 by 27-32%. While the increase of K-T/B (from 1 to 10) increased U-50 by 35%, and the increase of K-H/M (from 1 to 4) increased U-50 by 25%. Where K-L/W, K-T/B and K-H/M are the SDD (salt deposit density) ratio of windward to leeward side, top to bottom surface and high voltage to middle group respectively. Besides, higher proportion of leeward side area will reduce U-50. U-50 and SDD are still in agreement with the negative power function relationship, non-uniform pollution conditions have great effect on a (constant of power function), but less impact on n (characteristic index of power function). Finally, equations for calculating different non-uniform pollution flashover voltages were established and validated, also the relative errors are acceptable. The results are very important for guiding insulation design and anti-pollution works of operating transmission lines.
机译:围绕绝缘体分布的不均匀气流场和电场导致污染颗粒上的不均匀沉积在绝缘体表面的不同位置和部分。污染诱导的闪络是对电力系统安全运行的严重威胁,而非均匀的污染分布对绝缘子的闪络电压产生了很大的影响。对此,在本研究中,使用固体层方法模拟不同的非均匀污染条件。然后,进行了复合绝缘体的直流污染闪络试验,分析了闪络性能。结果表明,k uW(从1至15)的增加降低了U-50%27-32%。虽然K-T / B的增加(1至10)增加U-50×55%,而K-H / M(从1-4)的增加增加U-50×50%。其中k-l / w,k-t / b和k-h / m是SDD(盐沉积密度)与迎风侧的SDD(盐沉积密度)比,顶部到底部表面和高电压分别对中间组。此外,Leeward侧区域的更高比例将减少U-50。 U-50和SDD仍然与负功率功能关系仍然一致,非均匀污染条件对(功率函数常数)具有很大的影响,但对N的影响较小(功率函数的特征指数)。最后,建立和验证了用于计算不同非均匀污染闪络电压的方程,也是可接受的相对误差。结果对于操作传输线的指导绝缘设计和防污工程非常重要。

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