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3维复合分层土壤模型下竖直分层土壤对地表电位影响

李文峰 杨洪耕 徐方维

四川大学学报:工程科学版2012,Vol.44Issue(5):161-167,7.
四川大学学报:工程科学版2012,Vol.44Issue(5):161-167,7.

3维复合分层土壤模型下竖直分层土壤对地表电位影响

Effect of Vertical Soil Layer on Earth Surface Potential Under Three-dimensional Combined-layer Soil Model

李文峰 1杨洪耕 1徐方维1

作者信息

  • 1. 四川大学电气信息学院,四川成都610065
  • 折叠

摘要

Abstract

One of the challenges that hasn't been solved effectively in the study of direct current(DC) bias is how to establish the proper soil model to calculate the earth surface potential(ESP) accurately in large scales.In order to solve this problem,a soil model named as three-dimensional combined-layer soil model(TDCM) in which the layered soil might have any number of layers was introduced.Complex image method was applied for the derivation of the Green's function of this model,and the general analytical solution was derived when the source point was in any soil layer.Based on the model,the effect of the parameters of vertical medium layer,including resistivity,thickness,depth,and location,on the ESP was investigated when a high-voltage direct-current(HVDC) system used earth as its current return path.Besides,the results were compared with that of horizontally multilayer soil model(HMSM) and two-dimensional heterogeneous structure soil model(HSSM).It was found that the different soil parameters have different effect on the ESP distribution,so the complexity of vertical soil layers should be considered in calculating the ESP.Moreover,the actual soil is able to be modeled by TDCM more accurately than HMSM and HSSM,and the ESP is able to be calculated more accurately based on the proposed model.The model and the results are useful for selection of substations near the HVDC ground electrode.

关键词

3维复合分层土壤模型/格林函数/地表电位/直流偏磁

Key words

three-dimensional combined-layer soil model/Green's function/earth surface potential/direct current bias

分类

信息技术与安全科学

引用本文复制引用

李文峰,杨洪耕,徐方维..3维复合分层土壤模型下竖直分层土壤对地表电位影响[J].四川大学学报:工程科学版,2012,44(5):161-167,7.

基金项目

国家自然科学基金资助项目 ()

四川大学学报:工程科学版

OA北大核心CSCDCSTPCD

2096-3246

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