Title :
The Ionized Fields and the Ion Current on a Human Model Under
800-kV HVDC Transmission Lines
Author :
Li, Xuebao ; Cui, Xiang ; Zhen, Yongzan ; Lu, Tiebing ; Luo, Zhaonan ; Fang, Chao ; Zhou, Xiangxian
Author_Institution :
State Key Lab. of Alternate Electr. Power Syst. with Renewable Energy Sources, North China Electr. Power Univ., Beijing, China
Abstract :
The ultra-high-voltage direct-current (UHVDC) system has many advantages in long-distance power transmission. This paper is aimed at analyzing the distributions of the ionized fields and the ion current on the human model under ±800-kV UHVDC transmission lines; therefore, a numerical method which combines the 3-D charge simulation method and Deutsch´s assumption is used. And the validity of the presented method is demonstrated through a test in the laboratory. For ±800-kV UHVDC transmission lines, the ionized fields and the ion current on the human model are calculated, and numerical results show that the ionized fields and the ion current density on the top of the human model increase evidently when the human model stands under ±800-kV UHVDC transmission lines. And the total ion current flowing on the human model is far lower than the permitted limit.
Keywords :
HVDC power transmission; current density; electric fields; ion density; power transmission lines; 3D charge simulation method; Deutsch assumption; HVDC transmission lines; human model; ion current density; ionized fields; ultra-high-voltage direct current system; voltage -800 kV to 800 kV; Current density; Mathematical model; Numerical models; Power transmission lines; Solid modeling; Transmission line measurements; UHF measurements; 3-D numerical methods; Human model; ion current; ionized fields; ultra-high-voltage direct-current (UHVDC) transmission lines;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2012.2198836