电力系统自动化
電力繫統自動化
전력계통자동화
AUTOMATION OF ELECTRIC POWER SYSTEMS
2010年
4期
29-33
,共5页
苏学灵%纪昌明%黄小锋%贾东旭%郭希海
囌學靈%紀昌明%黃小鋒%賈東旭%郭希海
소학령%기창명%황소봉%가동욱%곽희해
抽水蓄能电站%水库调度%优化调度%梯级水电站
抽水蓄能電站%水庫調度%優化調度%梯級水電站
추수축능전참%수고조도%우화조도%제급수전참
pumped-storage power station%reservoir operation%optimizing operation%cascade reservoirs
在充分考虑东北电网调峰需求和抽水蓄能机组运行工况的前提下,优化白山混合式抽水蓄能电站水库调度,提高白山水库的运行水位,获得最大化的"水头"增发电量,实现梯级电站年发电量或年调峰效益的最大化.结果表明白山混合式抽水蓄能电站抽水发电转换效率发电量最大模型比调峰效益最大模型高,2种模型的抽水发电转换效率分别为90.65%~95.50%和87.94%~92.58%,都比纯抽水蓄能电站的发电转换效率高,体现了混合式抽水蓄能电站的优势.抽水蓄能机组运行对下游仅具有日调节性能的红石水电站影响不大,但加剧了下游具有不完全多年调节性能的丰满水库的径流年内分配的不均匀,使得梯级运行效率为75.93%~82.62%.结果表明梯级水电站群中建设混合式抽水蓄能电站,其效率及对其他电站的影响与梯级电站的布置如龙头水库的位置和开发方式等因素有关.
在充分攷慮東北電網調峰需求和抽水蓄能機組運行工況的前提下,優化白山混閤式抽水蓄能電站水庫調度,提高白山水庫的運行水位,穫得最大化的"水頭"增髮電量,實現梯級電站年髮電量或年調峰效益的最大化.結果錶明白山混閤式抽水蓄能電站抽水髮電轉換效率髮電量最大模型比調峰效益最大模型高,2種模型的抽水髮電轉換效率分彆為90.65%~95.50%和87.94%~92.58%,都比純抽水蓄能電站的髮電轉換效率高,體現瞭混閤式抽水蓄能電站的優勢.抽水蓄能機組運行對下遊僅具有日調節性能的紅石水電站影響不大,但加劇瞭下遊具有不完全多年調節性能的豐滿水庫的徑流年內分配的不均勻,使得梯級運行效率為75.93%~82.62%.結果錶明梯級水電站群中建設混閤式抽水蓄能電站,其效率及對其他電站的影響與梯級電站的佈置如龍頭水庫的位置和開髮方式等因素有關.
재충분고필동북전망조봉수구화추수축능궤조운행공황적전제하,우화백산혼합식추수축능전참수고조도,제고백산수고적운행수위,획득최대화적"수두"증발전량,실현제급전참년발전량혹년조봉효익적최대화.결과표명백산혼합식추수축능전참추수발전전환효솔발전량최대모형비조봉효익최대모형고,2충모형적추수발전전환효솔분별위90.65%~95.50%화87.94%~92.58%,도비순추수축능전참적발전전환효솔고,체현료혼합식추수축능전참적우세.추수축능궤조운행대하유부구유일조절성능적홍석수전참영향불대,단가극료하유구유불완전다년조절성능적봉만수고적경류년내분배적불균균,사득제급운행효솔위75.93%~82.62%.결과표명제급수전참군중건설혼합식추수축능전참,기효솔급대기타전참적영향여제급전참적포치여룡두수고적위치화개발방식등인소유관.
On the premise of taking full account of the Northeast power grids peak regulating demand and the operation of the pumped-storage units, effort is made to optimize Baishan Reservoir dispatching, improve the water level for the Baishan Reservoir to obtain maximal additional generation by the "head", and realize maximal annual power generation or annual load regulation benefits of the cascade power station. The results show that, for the Baishan Hybrid Storage Station, the conversion efficiency of the maximal power generation model is higher than that of the maximal peak load regulation benefit model, the conversion efficiency of the two models being 90.65%~95.50% and 87.94%~92.58%, respectively, both higher than the efficiency of the simplex pumped-storage power station which shows the advantages of the hybrid pumped-storage power station. Although the work of pumped-storage units has little influence on Hongshi Reservoir with just daily regulating capacity, it aggravates the uneven distribution of runoff of Fengman Station with yearly regulation capacity so that the cascade conversion efficiency is only 75.93%~82.62%. This shows that the efficiency of the hybrid pumped-storage power station in cascade reservoirs and the impact on other hydropower stations are related to the layout and development type.