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考虑分级振动区的水电站厂内经济运行研究北大核心CSCD
引用本文:刘瑞,王义民,畅建霞,马长宏,顾琦,巴贵,马大海,旦增晋美.考虑分级振动区的水电站厂内经济运行研究北大核心CSCD[J].水力发电学报,2022,41(2):63-71.
作者姓名:刘瑞  王义民  畅建霞  马长宏  顾琦  巴贵  马大海  旦增晋美
作者单位:西安理工大学 省部共建西北旱区生态水利国家重点实验室,西安 710048;华能西藏雅鲁藏布江水电开发投资有限公司,成都 610200;国网西藏电力有限公司,拉萨 850000
基金项目:国家自然科学基金(U1965202);国家自然科学基金(52009101)。
摘    要:水轮发电机机组振动区是影响水电站厂内安全运行与经济运行的核心所在。本次研究采用机组分级振动区思想,根据机组承担不同负荷时的振动程度,划分机组振动区为禁止运行区、不建议运行区和稳定运行区,在此基础上,建立了考虑机组分级振动区的水电站厂内经济运行模型,并采用粒子群优化算法进行求解。以藏木水电站为例,厂内经济运行结果表明:以电定水模式下,综合考虑机组分级振动区影响比仅考虑机组禁止运行区影响时,全厂耗水量增加0.69%,但机组运行更为稳定,振动程度更小。考虑机组分级振动区的厂内经济运行模型更为契合水电站经济运行以安全运行为前提的实际思想。

关 键 词:厂内经济运行  分级振动区  机组稳定性  负荷分配

In-plant economical operation of hydropower stations considering graded hydro-unit vibration zones
LIU Rui,WANG Yimin,CHANG Jianxia,MA Changhong,GU Qi,BA Gui,MA Dahai,DANZENG Jinmei.In-plant economical operation of hydropower stations considering graded hydro-unit vibration zones[J].Journal of Hydroelectric Engineering,2022,41(2):63-71.
Authors:LIU Rui  WANG Yimin  CHANG Jianxia  MA Changhong  GU Qi  BA Gui  MA Dahai  DANZENG Jinmei
Abstract:Distinguishing hydro-unit vibration zones is the core that affects safe and economical operation of a hydropower plant. This study focuses on the difference in hydro-unit vibration intensity under different loads and adopts an idea of graded vibration zones, i.e. dividing the vibration zone into an operation-forbidden zone, an unrecommended zone, and a stable zone. Then, we construct an in-plant economical operation model of hydropower stations taking these graded zones into account, and solve it using a particle swarm algorithm. Application to the Zangmu hydropower station shows that in comparison to a single operation-forbidden zone, this new method predicts an increase as low as 0.69% in the water consumption by the plant operated in the allocated output mode, while keeping unit operation more stable with lower vibration. Thus, adoption of graded vibration zones improves model applicability to the real conditions of a hydropower station and helps find operation schemes that are more economical.
Keywords:in-plant economical operation  graded vibration zones  unit stability  load distribution  
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