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水力发电学报 ›› 2024, Vol. 43 ›› Issue (5): 35-42.doi: 10.11660/slfdxb.20240504

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1000 MW水轮机转轮径向安装偏差对流动特征的影响

  

  • 出版日期:2024-05-25 发布日期:2024-05-25

Influence of radial installation deviation on flow characteristics of 1000 MW hydro turbine runner

  • Online:2024-05-25 Published:2024-05-25

摘要: 本文以百万千瓦混流机组为研究对象,使用ANSYS软件进行三维全流道稳态数值分析。探究在额定工况下,当转轮出现Y轴负方向0.1 mm、0.3 mm、0.5 mm、1.5 mm、2.5 mm的径向安装偏差时,间隙分布不均匀对于百万千瓦大型水轮机组内部流动特征的影响。研究发现,在一定偏差数值内,随着间隙的减小,该区域压力逐渐上升,但超过该数值以后,流体无法流入则变为了低压区。另外,上冠腔和下环腔均出现了相同数量的旋涡演变周期,但旋涡的发生位置不同,上冠腔旋涡较剧烈,且数量与叶片数呈非整数倍关系。最后阐明了下环腔内壁面受到的旋涡流动冲击程度要大于上冠腔内壁面。因此,本研究可以应用于其他大中型混流式水轮机的设计与安装,对于提高水轮机运行质量、降低运行成本和提高水电站效益具有重要意义。

关键词: 百万千瓦转轮, 混流式机组, 径向安装偏差, 流动特征, 计算流体力学

Abstract: Focused on a 1000 MW huge-capacity hydraulic turbine unit, this paper conducted three-dimensional steady internal flow numerical simulation using commercial code ANSYS. The impact of uneven clearance distribution on its internal flow characteristics of the turbine under the design operating point was investigated, considering radial installation deviations of 0.1 mm, 0.3 mm, 0.5 mm, 1.5 mm, and 2.5 mm on the negative y-direction. The results revealed that within a certain range of deviation, the pressure in the corresponding region gradually rises with the decrease in clearance. However, once the deviation exceeded a certain threshold, water was unable to flow in, thus resulting in the formation of a low-pressure area. Furthermore, both the upper crown chamber and the bottom ring chamber exhibited an equal number of vortex evolving cycles with different vortex intensity, and the vortex was more intense in the upper crown chamber; The number of vortices is not an integer multiple of the blade number. Finally, we clarify that the vortex flow impact was greater on the inner wall of the bottom ring chamber than that of the upper crown chamber. This study is applicable to the design and installation of other large or medium size Francis turbines for improving their operational quality, reducing operating costs, and enhancing the overall efficiency of hydropower plants.

Key words: 1000 MW runner, Francis turbine unit, radial installation deviation, flow characteristics, CFD

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