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The effect of stranded conductor geometry on DC corona in the coaxial cylindrical electrode arrangement in air

机译:空气中同轴圆柱电极排列中绞合导体几何形状对直流电晕的影响

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The effect of stranded conductor geometry on the salient characteristics of DC corona, namely corona inception voltage, corona conductance and the associated power losses is experimentally investigated in the coaxial cylindrical electrode arrangement in air. The number of strands of the conductor has a greater impact on the characteristics of positive than negative corona. Under conditions of high absolute humidity, corona conductance, thus also losses depending on conductor geometry can be higher for positive than negative corona. Breakdown, only slightly affected by stranded conductor geometry, is greatly facilitated by the space charge associated with multiple coronas occurring along the energised conductor. An empirical expression for the estimation of the irregularity factor of overhead transmission line conductors is proposed, accounting well for the effects of stranded conductor radius, stranding ratio and relative air density.
机译:在空气中同轴圆柱电极布置中,实验研究了绞合导体几何形状对直流电晕的显着特性的影响,即电晕起始电压,电晕电导和相关的功率损耗。导体的股数对正电晕特性的影响大于负电晕特性。在高绝对湿度条件下,正电晕的电导率比负电晕的电导率高,因此取决于导体几何形状的损耗也可能更高。沿着通电的导体发生的多个电晕所产生的空间电荷极大地促进了击穿,该击穿仅受绞合导体的几何形状的影响很小。提出了一种估算架空输电线路导体不规则因素的经验表达式,充分考虑了绞合导体半径,绞合率和相对空气密度的影响。

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