斷路器合閘電阻熱容量及額定參數(shù)計算分析
黃然,趙現(xiàn)平,雷圓圓,張恭源
云南電力試驗研究院(集團(tuán))有限公司電力研究院,云南 昆明 650217
摘 要:合閘電阻熱容量、阻值和接入時間是反映其可靠性的最直接參量。以實(shí)際參數(shù)的500kV輸電系統(tǒng)為計算對象,考慮多種系統(tǒng)工況,對斷路器合閘操作時合閘電阻獲得結(jié)構(gòu)熱進(jìn)行計算分析,給出500kV斷路器合閘電阻熱容量的合理范圍,并對電阻值和接入時間對操作過電壓的影響作定性定量分析。
關(guān)鍵詞:合閘電阻;熱容量;接入時間;操作過電壓;空載合閘
中圖分類號:TM561 文獻(xiàn)標(biāo)識碼:A 文章編號:1007-3175(2013)08-0022-03
Calculation Analysis on Thermal Capacity and Rated Parameters of Circuit-Breaker Closing Resistors
HUANG Ran, ZHAO Xian-ping, LEI Yuan-yuan, ZHANG Gong-yuan
Electric Power Research Institute, Yunnan Electric Power Test & Research Institute Group Co., Ltd, Kunming 650217, China
Abstract: Thermal capacity, resistance value and current-carrying time are the most direct parameters to reflect the reliability of circuit-breaker closing resistors. Based on 500 kV AC transmission system simulation model with actual parameters, closing resistor thermal capacity under different operation conditions was calculated and reasonable value range of 500 kV AC transmission system was put forward. At last the quantitative analysis was made to the impacts of resistance value and current-carrying time on switching overvoltage.
Key words: closing resistor; thermal capacity; current-carrying time; switching overvoltage; no-load closing
參考文獻(xiàn)
[1] DL/T405—1996 進(jìn)口252(245)~550kV交流高壓斷路器和隔離開關(guān)技術(shù)規(guī)范[S].
[2] GB/Z24838—2009 1100kV高壓交流斷路器技術(shù)規(guī)范[S].
[3] 徐鵬,林寶玉,劉瑋,張鑫,雷豐瑞.基于ATP-EMTP對500kV輸電線路取消合閘電阻的仿真研究[J].電瓷避雷器,2011(6):70-75.
[4] 王劍,朱蕓.500kV輸電線路斷路器合閘電阻配置原則[J].電力系統(tǒng)自動化,2008,32(19):100-103.
[5] 計榮榮,易強(qiáng),蘇菲,孫可,陳稼苗,周浩.超/特高壓交流輸電線路斷路器合閘電阻的適用性研究[J].電網(wǎng)技術(shù),2011,35(1):18-25.
[6] 浦仕遵,姜虹云,趙現(xiàn)平.500kV斷路器合閘電阻檢查方法[J].云南電力技術(shù),2011,39(6):98-99.