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Highly Stable Upwind FEM for Solving Ionized Field of HVDC Transmission Line

机译:求解直流输电线路电离场的高稳定迎风有限元

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The ionized field produced by corona discharge from a high-voltage direct current (HVDC) transmission line has a great influence on the electromagnetic environment. In this paper, a highly stable iterative algorithm based on an upwind finite-element method is introduced to analyze the ionized field of HVDC transmission line in the presence of the wind. The Kaptzov's assumption is introduced on the conductor surface as a boundary condition. In the iterative procedure presented by Takuma, the controlling method is added to guarantee the convergence of the iteration, which has been tested to be effective. The impact of the wind on the ground-level electric-field intensity and ion current density of a bipolar HVDC transmission line is analyzed, and we find the wind has a significant influence on the ionized field which has to be considered in the engineering design.
机译:由高压直流(HVDC)传输线的电晕放电产生的电离场对电磁环境有很大影响。本文介绍了一种基于逆风有限元法的高度稳定的迭代算法,用于分析有风情况下的高压直流输电线路的电离场。 Kaptzov的假设作为边界条件引入导体表面。在Takuma提出的迭代过程中,添加了控制方法以确保迭代的收敛性,这已被证明是有效的。分析了风对双极高压直流输电线路的地面电场强度和离子电流密度的影响,我们发现风对电离场具有重大影响,这在工程设计中必须加以考虑。

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