电网技术
電網技術
전망기술
POWER SYSTEM TECHNOLOGY
2014年
5期
1328-1333
,共6页
断路器爆炸%阀冷系统%换相失败%再启动%闭锁
斷路器爆炸%閥冷繫統%換相失敗%再啟動%閉鎖
단로기폭작%벌랭계통%환상실패%재계동%폐쇄
circuit breaker explosion%valve cooling system%commutation failure%restart%block
对南方电网系统一起500 kV断路器爆炸引起电网系统连锁反应的事故进行分析,指出500 kV 砚都站发生的断路器爆炸造成高肇、天广、楚穗3回直流换相失败,并造成广州换流站极2阀冷系统停运,肇庆换流站与500 kV砚都站电气距离非常近,受到故障的影响最大,高肇直流电压发生剧烈波动,出现大量谐波分量,直接导致双极直流线路低电压保护27 du/dt动作,高肇直流双极再启动成功后,由于肇庆换流站阀冷系统问题导致极2闭锁,同时对其存在的风险进行深入剖析,最后提出有效的整改措施,防止类似事件的再次发生。
對南方電網繫統一起500 kV斷路器爆炸引起電網繫統連鎖反應的事故進行分析,指齣500 kV 硯都站髮生的斷路器爆炸造成高肇、天廣、楚穗3迴直流換相失敗,併造成廣州換流站極2閥冷繫統停運,肇慶換流站與500 kV硯都站電氣距離非常近,受到故障的影響最大,高肇直流電壓髮生劇烈波動,齣現大量諧波分量,直接導緻雙極直流線路低電壓保護27 du/dt動作,高肇直流雙極再啟動成功後,由于肇慶換流站閥冷繫統問題導緻極2閉鎖,同時對其存在的風險進行深入剖析,最後提齣有效的整改措施,防止類似事件的再次髮生。
대남방전망계통일기500 kV단로기폭작인기전망계통련쇄반응적사고진행분석,지출500 kV 연도참발생적단로기폭작조성고조、천엄、초수3회직류환상실패,병조성엄주환류참겁2벌랭계통정운,조경환류참여500 kV연도참전기거리비상근,수도고장적영향최대,고조직류전압발생극렬파동,출현대량해파분량,직접도치쌍겁직류선로저전압보호27 du/dt동작,고조직류쌍겁재계동성공후,유우조경환류참벌랭계통문제도치겁2폐쇄,동시대기존재적풍험진행심입부석,최후제출유효적정개조시,방지유사사건적재차발생。
The cascading failure in China South Power Grid caused by an explosion accident of 500 kV circuit breaker is analyzed, and it is pointed out that the explosion accident of 500 kV circuit breaker occurred in Yandu substation simultaneously led to the commutation failures of three EHV/UHV DC transmission lines, i.e., the ±500 kV DC transmission line from Gaopo to Zhaoqing, the ±500 kV HVDC transmission line from Tianshengqiao to Guangzhou and the ±800 kV DC transmission line from Chuxiong to Suidong, and further the accident led to the forced outage of valve cooling system for Pole II of Guangzhou converter station. Because Zhaoqing converter station is electrically close to 500 kV Yandu substation, thus Zhaoqing converter station is subjected to the most severe affection, and the DC voltage of ±500 kV DC transmission line from Gaopo to Zhaoqing drastically fluctuated and a lot of harmonic components appeared and directly made the bipolar DC line under-voltage protection (27du/dt) acted. After the success bipolar re-starting of ±500 kV DC transmission line from Gaopo to Zhaoqing, the still existed forced outage of valve cooling system for pole II led to the pole II re-blocked. The author analyzes the spread of the accident as well as the related hidden danger, and proposes effective rectification measures to prevent the reoccurrence of similar cascading failures.