电网技术
電網技術
전망기술
POWER SYSTEM TECHNOLOGY
2012年
3期
28-33
,共6页
万亦如%陈稼苗%周浩%张彤%苏菲%沈志恒%陆海清
萬亦如%陳稼苗%週浩%張彤%囌菲%瀋誌恆%陸海清
만역여%진가묘%주호%장동%소비%침지항%륙해청
特高压直流输电%z型塔%耐雷性能%绕击%反击%电磁环境
特高壓直流輸電%z型塔%耐雷性能%繞擊%反擊%電磁環境
특고압직류수전%z형탑%내뢰성능%요격%반격%전자배경
UHVDC power transmission%Z-type tower%lighming withstand performance%shielding failure%back flashover%electromagnetic environment
我国特高压直流输电工程途经大量山地,雷电活动频繁,而常规T型塔在山区的绕击跳闸率较高,为此针对溪洛渡一浙西特高压直流输电山区线路设计了一种新型杆塔fz型塔)。针对Z型塔,对比T型塔,采用改进电气几何模型与ATP.EMTP软件,计算分析了反击、绕击耐雷性能及其影响因素,同时采用CDEGS软件结合公式法对z型塔的电磁环境做了评估。结果表明:Z型塔的反击耐雷水平很高,绕击耐雷性能明显优于T型塔,因此Z型塔的整体防雷性能明显优于T型塔。在呼称高最小时z型塔各项电磁环境参数均达标,且均优于T型塔。可见Z型塔更适合在山区使用。
我國特高壓直流輸電工程途經大量山地,雷電活動頻繁,而常規T型塔在山區的繞擊跳閘率較高,為此針對溪洛渡一浙西特高壓直流輸電山區線路設計瞭一種新型桿塔fz型塔)。針對Z型塔,對比T型塔,採用改進電氣幾何模型與ATP.EMTP軟件,計算分析瞭反擊、繞擊耐雷性能及其影響因素,同時採用CDEGS軟件結閤公式法對z型塔的電磁環境做瞭評估。結果錶明:Z型塔的反擊耐雷水平很高,繞擊耐雷性能明顯優于T型塔,因此Z型塔的整體防雷性能明顯優于T型塔。在呼稱高最小時z型塔各項電磁環境參數均達標,且均優于T型塔。可見Z型塔更適閤在山區使用。
아국특고압직류수전공정도경대량산지,뇌전활동빈번,이상규T형탑재산구적요격도갑솔교고,위차침대계락도일절서특고압직류수전산구선로설계료일충신형간탑fz형탑)。침대Z형탑,대비T형탑,채용개진전기궤하모형여ATP.EMTP연건,계산분석료반격、요격내뢰성능급기영향인소,동시채용CDEGS연건결합공식법대z형탑적전자배경주료평고。결과표명:Z형탑적반격내뢰수평흔고,요격내뢰성능명현우우T형탑,인차Z형탑적정체방뢰성능명현우우T형탑。재호칭고최소시z형탑각항전자배경삼수균체표,차균우우T형탑。가견Z형탑경괄합재산구사용。
UHVDC transmission lines in China have to pass through a lot of mountainous regions where lightning strokes frequently occur, thus the shielding failure outage rate of UHVDC transmission line adopting conventional T-type towers and passing through mountainous region is high. For this reason, a new type of tower possessing a new type of tower head, namely the Z-type tower, is designed for the part of UHVDC transmission line from Xiluodu to Zhexi, which passes through mountainous regions. The lightning withstand performances of back flashover and shielding failure of T-type tower and Z-type tower as well as their impacting factors are researched by the simulation in which the calculation model of shielding failure is established by electrical geometry model (EGM) and the calculation model of back flashover is established by ATP-EMTP, meanwhile combining CDEGS software with formula method the electromagnetic environment of Z-type tower is assessed. Research results show that the Z-type tower's lightning withstand performances of back flashover is high, therefore the overall lightning withstand performance of Z-type tower is evidently better than that of T-type tower. Under the lowest nominal height of tower, the electromagnetic environment parameters of Z-type tower can reach national environmental standards and are better than those ofT-type tower. Thus it can be seen that the Z-type tower is more suitable to be applied in mountainous regions than T-type tower.