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基于土地电离特性的无边界接地系统有限元模型分析(英文)
引用本文:陈林,李劲林,杨庆,司马文霞,孙才新.基于土地电离特性的无边界接地系统有限元模型分析(英文)[J].高电压技术,2012,38(8):2104-2111.
作者姓名:陈林  李劲林  杨庆  司马文霞  孙才新
作者单位:State Key Laboratory of Power Transmission Equipment &System Security and New Technology,Chongqing University
基金项目:supported by National Basic Research Program of China(973 Program)(2009CB724504)
摘    要:The aim of this paper is to calculate accurately the grounding performance of an unbounded grounding system under high-magnitude fault current.In this work,a finite element model is presented to compute the characteristic parameters of the grounding system in frequency domain.The ionization phenomenon in the soil surrounding the grounding electrode is taken into account by setting the resistivity of every soil element while the resistivity of each element is varying with the electric field intensity;not a priori hypothesis on the geometrical shape of the ionized region around the electrodes has to be enforced.Open boundaries of the grounding system are represented by introducing a spatial transformation formulation,which translates the semi-infinite space into the finite space without shortening the domain as in the traditional approach.The suggested modeling is validated by comparison of the calculated results,which are laid out for grounding rod and grounding grid,with experimental and simulation results found in literature.

关 键 词:finite  element  modeling  frequency  domain  method  substation  grounding  systems  soil  ionization  characteristics  spatial  transformation  earth  surface  potential  distribution

Finite Element Modeling of Unbounded Grounding System Considering Soil Ionization Characteristic
CHEN Lin,LI Jingli,YANG Qing,SIMA Wenxia,SUN Caixin.Finite Element Modeling of Unbounded Grounding System Considering Soil Ionization Characteristic[J].High Voltage Engineering,2012,38(8):2104-2111.
Authors:CHEN Lin  LI Jingli  YANG Qing  SIMA Wenxia  SUN Caixin
Affiliation:State Key Laboratory of Power Transmission Equipment& System Security and New Technology, Chongqing University, Chongqing 400030, China
Abstract:
Keywords:finite element modeling  frequency domain method  substation grounding systems  soil ionization characteristics  spatial transformation  earth surface potential distribution
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