电网技术
電網技術
전망기술
POWER SYSTEM TECHNOLOGY
2013年
6期
1536-1541
,共6页
万保权%干喆渊%何旺龄%裴春明%张建功
萬保權%榦喆淵%何旺齡%裴春明%張建功
만보권%간철연%하왕령%배춘명%장건공
电磁环境%电力电缆%工频磁场
電磁環境%電力電纜%工頻磁場
전자배경%전력전람%공빈자장
electromagnetic environment%power cable%power frequency magnetic field
近年来电力电缆线路在城市输配电网中占有的比例越来越高,人们对电力电缆的电磁环境问题也逐渐开始关注.在参照架空输电线路电磁环境特性及其影响因子的基础上,结合电力电缆本身的特点,对其主要电磁环境影响因子(工频磁场)进行了模型建立和算法研究,并对3种典型分布的电力电缆工频磁场强度做了仿真分析,结果表明三相线路三角形排列能够较大程度地减小地面磁场强度.最后测试2条实际电力电缆线路的工频电磁场,其工频电场强度基本为背景值,符合理论分析;所测工频磁感应强度水平也在现行国家标准规定的磁场曝露限值要求以内.
近年來電力電纜線路在城市輸配電網中佔有的比例越來越高,人們對電力電纜的電磁環境問題也逐漸開始關註.在參照架空輸電線路電磁環境特性及其影響因子的基礎上,結閤電力電纜本身的特點,對其主要電磁環境影響因子(工頻磁場)進行瞭模型建立和算法研究,併對3種典型分佈的電力電纜工頻磁場彊度做瞭倣真分析,結果錶明三相線路三角形排列能夠較大程度地減小地麵磁場彊度.最後測試2條實際電力電纜線路的工頻電磁場,其工頻電場彊度基本為揹景值,符閤理論分析;所測工頻磁感應彊度水平也在現行國傢標準規定的磁場曝露限值要求以內.
근년래전력전람선로재성시수배전망중점유적비례월래월고,인문대전력전람적전자배경문제야축점개시관주.재삼조가공수전선로전자배경특성급기영향인자적기출상,결합전력전람본신적특점,대기주요전자배경영향인자(공빈자장)진행료모형건립화산법연구,병대3충전형분포적전력전람공빈자장강도주료방진분석,결과표명삼상선로삼각형배렬능구교대정도지감소지면자장강도.최후측시2조실제전력전람선로적공빈전자장,기공빈전장강도기본위배경치,부합이론분석;소측공빈자감응강도수평야재현행국가표준규정적자장폭로한치요구이내.
In recent years the power cable lines occupy much higher proportion of transmission lines in urban power transmission and distribution system, and people begins paying attention to electromagnetic environmental problem caused by power cables. On the basis of referring to the electromagnetic environmental characteristics and impact factors of overhead transmission lines and considering the features of power cable itself, the modeling of main electromagnetic environmental impact factors on power frequency magnetic field and corresponding algorithm are researched, and simulative analysis on typical distribution of three kinds of power frequency magnetic fields caused by power cable is performed. Simulation results show that the triangular arrangement of three-phase power cable can reduce magnetic field intensity at ground surface to a great extent. Finally the power frequency electromagnetic fields caused by two power cable lines are tested and the measured power frequency electromagnetic field intensities, which basically conform to the value of theoretical analysis, are negligible; the measured power frequency magnetic induction density levels are lower than the magnetic field exposure limits specified in current national standards.