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水力发电学报 ›› 2025, Vol. 44 ›› Issue (7): 121-130.doi: 10.11660/slfdxb.20250710

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考虑转轮间隙流的水泵水轮机S区流态演化研究

  

  • 出版日期:2025-07-25 发布日期:2025-07-25

Study on flow evolution in S zone of pump-turbine considering runner tip-gap flow

  • Online:2025-07-25 Published:2025-07-25

摘要: S区特性是影响高参数水泵水轮机安全稳定运行的主要因素,解决S区的根本途径还是水力设计,因此对考虑水力间隙的超高水头水泵水轮机S区特性研究至关重要。本文以额定水头589 m的原型水泵水轮机为研究对象,基于三维流动数值模拟方法,采用RNG k-ε湍流模型,进行定常模拟研究。通过对主流道和间隙流道内的压力分布、流场流态及旋涡分布等研究分析,偏离设计工况后,主流道无叶区和间隙流道的压力梯度急剧增加,在反水泵工况下达到最大值,无叶区内形成周向分布的高压挡水环,与周围形成巨大压差,造成机组运行不稳定、振动和噪音等问题,是引起S区特性的重要原因。研究可为超高水头抽水蓄能机组的水力设计提供一定参考。

关键词: 超高水头抽水蓄能机组, 转轮水力间隙, 长短叶片, S特性区, 旋涡分布

Abstract: The S-shaped characteristics of high-parameter pump-turbines are the main factor of its stable operation, and the fundamental way to deal with the S-region lie in hydraulic design. For an ultra-high head pump-turbine, a crucial step to do this is a deeper study of the S-region characteristics through considering its tip-gap flows. This paper presents numerical simulations of the 3-D steady flows in a prototype pump-turbine in China, using a RNG k-ε turbulence model. The pressure distributions, flow regimes and structures, and vortex distributions in the main channel and tip gaps are analyzed, and it is deviated from design operation, the pressure gradient keeps increasing sharply in both the vaneless section and tip-gap passages, until its maximum value occurs under reverse pump operation. A circumferentially distributed ring forms in the vaneless section is found, which retains a high pressure and a huge pressure difference from its surroundings, thereby causing unstable operation, vibration and noise. This is an important cause of the S-shaped characteristics, and deepens our understanding of ultra-high head pumped storage units for better hydraulic designs.

Key words: ultra-high head pump-turbine, hydraulic clearance of impeller, long and short blades, S-characteristic region, vortex distribution

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