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Numerical analysis of ionized fields associated with HVDC transmission lines including effect of wind.

机译:与高压直流输电线路相关的电离场的数值分析,包括风的影响。

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摘要

Corona discharges on the conductor surface of a HVDC transmission line generate ion flow in the interelectrode space, and therefore cause power losses as well as environmental concerns. To evaluate these effects, one has to solve the ion flow field (or ionized field). However, the solution of this problem is very difficult due to its nonlinearity and the effect of wind. Although this problem has been tackled by a number of researchers over the past several decades, a review of the existing literature indicates that problems associated with strong wind or bundled lines are still not solved satisfactorily.; This thesis presents two new numerical algorithms, the FEM based optimization algorithm and the upwind FVM (node-centered FVM and triangular FVM) based relaxation algorithm, for solving unipolar ionized fields including the effect of wind. The validity and efficiency of the presented algorithms is favorably demonstrated on a coaxial cylindrical configuration and on a unipolar line model in the presence of wind. Stable and fast convergence is observed for the former algorithm under moderate wind conditions, while excellent iterative behavior is exhibited by the latter with wind velocities in the range from 0 to 45 m/s or even higher.; The FVM based relaxation algorithm is also extended to analyze the bipolar ionized field. A simplified model is suggested so that the bipolar ionized field in the absence of wind may be treated as the combination of two unipolar ionized fields for computing the field quantities at ground level.; The ionized field due to bundled unipolar DC lines is investigated in detail by using the FVM based relaxation algorithm. The geometries considered are typical of practical DC lines and the effect of wind is included. The validity of the equivalent single conductor approach is verified.
机译:HVDC传输线的导体表面上的电晕放电会在电极间空间中产生离子流,因此会导致功率损耗以及环境问题。为了评估这些效果,必须解决离子流场(或电离场)。但是,由于其非线性和风的影响,解决这个问题非常困难。尽管在过去的几十年中,许多研究者已经解决了这个问题,但是对现有文献的回顾表明,与强风或捆扎线有关的问题仍不能令人满意地解决。本文提出了两种新的数值算法:基于有限元的优化算法和基于迎风FVM(以节点为中心的FVM和三角形FVM)的松弛算法,用于求解包括风效应在内的单极电离场。在有风的情况下,在同轴圆柱配置和单极线模型上可以很好地证明所提出算法的有效性和效率。在中等风速条件下,前者算法观察到稳定且快速的收敛,而后者在0至45 m / s甚至更高的风速下表现出出色的迭代行为。基于FVM的松弛算法也被扩展为分析双极电离场。建议使用简化的模型,以便将无风的双极电离场视为两个单极电离场的组合,以计算地平面上的场量。通过使用基于FVM的弛豫算法,详细研究了由于捆绑的单极DC线引起的电离场。所考虑的几何形状是实际直流线路的典型特征,其中包括风的影响。验证了等效单导体方法的有效性。

著录项

  • 作者

    Li, Xin.;

  • 作者单位

    University of Manitoba (Canada).;

  • 授予单位 University of Manitoba (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:48:32

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