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水力发电学报 ›› 2023, Vol. 42 ›› Issue (12): 61-69.doi: 10.11660/slfdxb.20231206

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混流式水轮机转轮适应性改造方法及效果分析

  

  • 出版日期:2023-12-25 发布日期:2023-12-25

Method and effect analysis of runner adaptive renovation for Francis turbines

  • Online:2023-12-25 Published:2023-12-25

摘要: 对混流式水轮机转轮进行适应性改造,能改善机组对电站水文条件的匹配性,提高机组运行效率,增加机组出力,提升机组运行稳定性及安全性。本文以白莲河水电站3号机为具体应用案例,介绍了以提升机组效率及运行稳定性为主要目标的转轮优化方法,通过CFD计算对优化方案的能量特性及内部流场情况进行了数值分析预测,并通过现场试验对机组改造后的能量特性及运行稳定性进行了分析。能量特性方面,当机组出力在7 ~ 14.5 MW之间,改造后水轮机效率较改造前提升5% ~ 8.84%,运行稳定性方面,机组在低部分负荷工况下,蜗壳进口和尾水锥管压力脉动幅值较改造前大幅降低,数值计算与现场测试均验证了优化方案的有效性。

关键词: 混流式水轮机, 适应性改造, 数值计算, 现场测试, 机组稳定性

Abstract: Adaptive renovation have been done to a Francis turbine to enhance the matching of the unit to the hydrological conditions of the power station, improve the hydraulic efficiency, increase the unit power output, and promote the stability and safety of the unit. Taking No.3 unit of Bailianhe Hydropower Plant as the research object, a new optimization design method aiming at improving the efficiency and operating stability for Francis turbine runners is applied in this paper. For this unit, 3D CFD simulations of its whole flow passage are conducted to predict its hydraulic performance and internal flow characteristics. The hydraulic characteristics and the operation stability of the runner after adaptive renovation has been analyzed by field test. As for hydraulic characteristics, experimental results showed a efficiency rise of 5.0% to 8.8% for the optimized runner which operated in the power outputting range of 7.0 to 14.5 MW. As for the operation stability, at the partial load condition, pressure pulsations at the spiral case inlet and the draft tube inlet are reduced significantly after the optimization of the runner. Results from both the numerical simulation and the experimental study proved the effectiveness of our new optimization design method of the Francis turbine runner.

Key words: Francis turbine, adaptive renovation, numerical simulation, field tests, operating stability

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