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Influence of Bundle Conductors in UHV Transmission Lines

机译:束状导体对特高压输电线路的影响

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This paper aims to study the surface gradient potential (SGP) of overhead line conductors in ultra-high voltage (UHV) transmission lines. The SGP is crucial for the performance due to the corona effect. The purpose is to assess the calculation of the gradient of bundle conductors and the main factors that influence this calculation. It is accomplished a critical analysis of the main analytical and numerical existing methods. In addition to that, it is presented a study of special conductors concerning the application of both new materials and innovative wire stranding. The successive images numerical method is applied to the study and verified the accuracy for transmission lines with multiple bundle conductors. The methodology is evaluated by considering numerical simulations on a 1000 kV AC transmission line. The partial results indicate that gradient distribution is sensitive to bundle spacing and different bundle arrangements. The latter being the most influential. In view of these results, it is recommended to use numerical methods based on finite elements to better evaluate the surface gradient. This adequate method enables simulations of multiphysics problems regarding different geometries.
机译:本文旨在研究超高压(UHV)输电线路中架空线导体的表面梯度电势(SGP)。由于电晕效应,SGP对于性能至关重要。目的是评估束导体的梯度的计算以及影响该计算的主要因素。它完成了对主要分析方法和现有数值方法的严格分析。除此之外,还介绍了有关特殊导体的研究,涉及新材料和创新绞线的应用。应用连续图像数值方法进行研究,验证了多束导体传输线的准确性。通过考虑在1000 kV交流输电线路上的数值模拟来评估该方法。部分结果表明,梯度分布对束间距和不同束布置敏感。后者是最有影响力的。鉴于这些结果,建议使用基于有限元的数值方法来更好地评估表面梯度。这种适当的方法可以模拟涉及不同几何形状的多物理场问题。

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