湖南电力 ›› 2024, Vol. 44 ›› Issue (1): 140-144.doi: 10.3969/j.issn.1008-0198.2024.01.020

• 故障与分析 • 上一篇    

1 000 MW超超临界机组冷端系统运行优化

梅海龙, 曾海波, 段旺权, 李铭, 杜炳强   

  1. 国能长源汉川发电有限公司,湖北 汉川 431614
  • 收稿日期:2023-09-13 修回日期:2023-10-09 出版日期:2024-02-25 发布日期:2024-03-11
  • 通信作者: 梅海龙(1971),男,湖北武汉人,高级技师,主要从事火电节能及智能控制技术研究。

Optimization of Cold End System Operation for 1 000 MW Ultra Supercritical Unit

MEI Hailong, ZENG Haibo, DUAN Wangquan, LI Ming, DU Bingqiang   

  1. Guoneng Changyuan Hanchuan Power Generation Co., Ltd., Hanchuan 431614, China
  • Received:2023-09-13 Revised:2023-10-09 Online:2024-02-25 Published:2024-03-11

摘要: 为平衡冷端系统对火电机组发电功率及厂用电率的影响,提高机组的经济性,提出一种基于实时调控的循环水泵运行优化方法,分析循环冷却水流量对凝汽器压力的影响,并通过现场试验得到了循环水泵在不同运行方式下的功耗变化及机组在950 MW、750 MW、500 MW负荷下的微增功率曲线。通过主动改变变频泵频率,实时监测凝汽器压力变化,结合循环水泵功耗变化和机组微增功率曲线,计算机组净出力变化,通过对循环水泵运行优化试验,寻找变频泵的最佳运行频率。试验结果表明,通过该方法能够得到机组在不同运行负荷下变频泵的最佳运行频率,所提方法能够有效提高机组的经济性。

关键词: 冷端系统, 循环水泵, 运行优化

Abstract: In order to balance the influence of the cold end system on the generating power and plant consumption rate of the thermal power unit and improve the economy of the unit, a circulating pump operation optimization method based on real-time regulation is proposed. The influence of circulating cooling water flow on condenser pressure is analyzed, and the power consumption change of circulating water pump under different operation modes and the slight power increase curve of unit under 950MW, 750MW and 500MW load are obtained through field test. By actively changing the frequency of variable frequency pump, the change of condenser pressure is monitored in real-time.Combined with the change of circulating pump power consumption and the unit's slightly increased power curve to calculate the unit's net output change, the best operating frequency of variable frequency pump is found through the circulating pump operation optimization test of the unit. The test results show that the method can obtain the optimal operating frequency of the variable frequency pump under different operating loads of the unit. It shows that the proposed method can effectively improve the economy of the unit.

Key words: cold end system, circulating water pump, run optimization

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