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The corona space charge distribution of Changji-Guquan ±1100kV UHVDC transmission line within the Thundercloud Electric Field

机译:龙吉 - 古南±1100kV UHVDC传输线的电晕空间电荷分布在雷电电场内

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For a long time in the lightning protection design of DC lines, the effect of corona space charge has not been considered. The DC operation voltage of Changji-Guquan project is up to ±1100kV, and the impact of corona space charge may be significant. In this paper, the corona space charge distribution characteristics of this line within thundercloud electric field are studied. A mathematical model for this case is established and to improve the calculation accuracy of electric field and reduce the time and memory cost, a hybrid method of simulation charge method, finite element method (FEM) and the boundary electric field constraint equation is used to solve the Poisson equation. The upstream FEM is used to solve the continuity equations. Using the model and calculation method, the influences of the protection angle and terrain on the space charge distribution are studied. The results show that the protection angle has little effect on the surface charge density of the polar conductors, but a great one on that of ground wire and so does the slope angle. The surface charge density of the negative pole conductor increases as the increase of the slope angle and it is by about 3.8 times when slope angle is 40 degrees.
机译:在DC线路的雷电设计中长时间,尚未考虑电晕空间电荷的效果。常规古南项目的直流运行电压高达±1100kV,电晕空间电荷的影响可能是显着的。本文研究了雷管电场内该线的电晕空间电荷分布特性。为这种情况的数学模型建立并提高了电场的计算精度,并降低了时间和记忆成本,模拟电荷方法的混合方法,有限元方法(FEM)和边界电场约束方程来解决泊松方程。上游有限元用于解决连续性方程。使用模型和计算方法,研究了保护角和地形对空间电荷分布的影响。结果表明,保护角对极性导体的表面电荷密度几乎没有影响,但是倾斜角的地线上的一个很大程度上。由于斜角的增加,负极导体的表面电荷密度随着斜角的增加而增加,斜角是40度的约3.8倍。

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