扩大定律在高压直流电缆线路中的应用

M. Marzinotto, G. Mazzanti
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引用次数: 7

摘要

本文通过评价增大律中出现的主要量所起的作用,对作者先前提出的高压直流电缆增大律的创新理论方法进行了更详细的研究。首先,本文结合直流应用中典型挤压化合物的相关数量,研究了从试验扩展到电力直流电缆中,威布尔形状参数和导体温度对电缆击穿电压随电缆长度降低的影响,从而证明了威布尔形状参数不仅起主要作用,绝缘的体积电阻率也起主要作用,因此不同的化合物也起主要作用。其次,通过蒙特卡罗方法分析了高压直流电缆放大公式中出现的繁琐函数HDC的行为,并提出了HDC的近似表达式,用于绝缘协调和设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A deeper insight into the application of the enlargement law to HVDC cable lines
In this paper the innovative theoretical approach to the enlargement law for HVDC cables previously developed by the authors is investigated in more detail, by evaluating the role played by the main quantities that appear in the enlargement law. Firstly, the paper studies the effect of the Weibull shape parameter and of conductor temperature on the reduction of breakdown voltage with cable length in the enlargement from test to power HVDC cables by considering quantities related to typical extruded compounds for DC applications, thereby demonstrating a major role played not only by Weibull shape parameter, but also by volume electrical resistivity of the insulation, hence by the different compounds. Secondly, the behaviour of the cumbersome function HDC appearing in the enlargement formula for HVDC cables is analyzed via the Monte Carlo method and approximate expressions for HDC are proposed that are useful for insulation coordination and design.
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