With rapid growth of power demand, transmission capacity is also in urgent need of upgrading. In some cases, converting existing AC transmission lines to DC lines can Improve the transmission capacity and reduce the c...With rapid growth of power demand, transmission capacity is also in urgent need of upgrading. In some cases, converting existing AC transmission lines to DC lines can Improve the transmission capacity and reduce the construction investment. In this paper, the upstream finite element method was expanded to calculate the total electric field of same tower multi-circuit DC lines converted from double-circuit AC lines, and the validity of the algorithm was confirmed by experiments. Taking a DC line converted from a typical same tower 500 kV double-circuit AC transmission line as an example, the surface electric field and the ground total electric field in different pole conductor arrangement schemes were calculated and analyzed, and the critical height of pole conductors for DC lines in residential and non-residential area were determined. Then, the corridor width of DC and AC lines at critical height in residential and non-residential areas before and after AC-DC line transformation were compared. The results indicate that for DC lines converted from common 500 kV double-circuit AC lines, the ground total electric field can meet the requirements of corresponding standard with appropriate pole conductor arrangement schemes.展开更多
准东—华东±1 100 k V特高压直流线路为世界第一条±1 100 k V直流线路,确定合理的对地距离对线路具有重大意义。本文研究的"双极导线—大地"的计算模型边界条件简单、几何外形规则,借鉴数学物理方程求解思路,采用MA...准东—华东±1 100 k V特高压直流线路为世界第一条±1 100 k V直流线路,确定合理的对地距离对线路具有重大意义。本文研究的"双极导线—大地"的计算模型边界条件简单、几何外形规则,借鉴数学物理方程求解思路,采用MATLAB编制有限差分法计算程序,分析了气候及海拔对地面合成场强影响,确定导线对地距离的决定因素,提出了不同地区的对地距离取值,为工程设计提供参考。展开更多
文摘With rapid growth of power demand, transmission capacity is also in urgent need of upgrading. In some cases, converting existing AC transmission lines to DC lines can Improve the transmission capacity and reduce the construction investment. In this paper, the upstream finite element method was expanded to calculate the total electric field of same tower multi-circuit DC lines converted from double-circuit AC lines, and the validity of the algorithm was confirmed by experiments. Taking a DC line converted from a typical same tower 500 kV double-circuit AC transmission line as an example, the surface electric field and the ground total electric field in different pole conductor arrangement schemes were calculated and analyzed, and the critical height of pole conductors for DC lines in residential and non-residential area were determined. Then, the corridor width of DC and AC lines at critical height in residential and non-residential areas before and after AC-DC line transformation were compared. The results indicate that for DC lines converted from common 500 kV double-circuit AC lines, the ground total electric field can meet the requirements of corresponding standard with appropriate pole conductor arrangement schemes.
文摘准东—华东±1 100 k V特高压直流线路为世界第一条±1 100 k V直流线路,确定合理的对地距离对线路具有重大意义。本文研究的"双极导线—大地"的计算模型边界条件简单、几何外形规则,借鉴数学物理方程求解思路,采用MATLAB编制有限差分法计算程序,分析了气候及海拔对地面合成场强影响,确定导线对地距离的决定因素,提出了不同地区的对地距离取值,为工程设计提供参考。