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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Flow Similarity in the Rotor-Stator Interaction Affected Region in Prototype and Model Francis Pump-Turbines in Generating Mode
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Flow Similarity in the Rotor-Stator Interaction Affected Region in Prototype and Model Francis Pump-Turbines in Generating Mode

机译:原型和模型弗朗西斯泵水轮机在生成模式下的转子-定子相互作用影响区域中的流动相似性

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摘要

Similarities of the flow in the rotor-stator interaction (RSI) affected region (stay vanes, guide vanes, and runner domain) in prototype and model Francis pump-turbines are analyzed using numerical simulations with special attention on the influence of Reynolds number. The ratios of characteristic length and velocity between the prototype and the model are 10.97 and 2.54; thus, the Reynolds numbers differ by about 28 times. Detailed flow analysis argues for higher partial load condition, Q = 0.8Q(d), and severe partial load condition, Q = 0.45Q(d). The flows in the distributor (spiral casing, stay vanes, and guide vanes domain) are well-behaved for both conditions with no separation, presenting high level of similarity in both space and time domain. The flows in the runners are well-behaved at higher partial load, Q = 0.8Q(d), and present good flow similarity and weak Reynolds number effects between the model and the prototype. At severe partial load, Q = 0.45Q(d), flow separation develops on the blade pressure sides and partially blocks the runner passages, showing prominent flow discrepancy and stronger Reynolds number effects between the two turbines. For the prototype flow of high Reynolds number, viscous effects have a minor role and less momentum is lost in the boundary layer. Therefore, the flow deceleration is less severe and the emergence of separation is restrained, presenting spatially delayed separation and a less disorganized flow pattern in the prototype. Validated by the model tests and on-site measurements, pressure fluctuations recorded in the vaneless space show that the relative fluctuation amplitudes in the model are slightly higher than those in the prototype. Resorting to dimensionless analytical equations and simulation results, the deviation in pressure fluctuations is found out to be influenced by Reynolds number effects. The research provides an improved understanding of Reynolds number effects on the flow discrepancy and pressure fluctuation difference in the RSI-affected region, which will facilitate better estimations of performance from scale model to prototype.
机译:使用数值模拟分析了原型和模型Francis泵涡轮中的转子-定子相互作用(RSI)受影响区域(滞留叶片,导向叶片和流道域)中的流动相似性,并特别关注了雷诺数的影响。原型与模型的特征长度和速度之比为10.97和2.54;因此,雷诺数相差约28倍。详细的流量分析表明,存在较高的部分负荷条件Q = 0.8Q(d),而存在严重的局部负荷条件Q = 0.45Q(d)。两种情况下分配器(螺旋套管,固定叶片和导向叶片域)中的流动行为良好,没有分隔,在时域和时域都表现出高度的相似性。流道中的流动在较高的部分载荷Q = 0.8Q(d)时表现良好,并且在模型和原型之间表现出良好的流动相似性和弱的雷诺数效应。在严重的部分负载下,Q = 0.45Q(d),在叶片压力侧形成分流并部分阻塞转轮通道,显示出两个涡轮之间的显着流动差异和更强的雷诺数效应。对于高雷诺数的原型流,粘性效应的作用较小,边界层的动量损失较少。因此,流动减速不那么严重,并且抑制了分离的出现,从而在原型中呈现出空间延迟的分离和较少混乱的流动模式。通过模型测试和现场测量验证,无叶片空间中记录的压力波动表明,模型中的相对波动幅度略高于原型中的相对波动幅度。借助于无量纲的分析方程式和模拟结果,发现压力波动的偏差受到雷诺数效应的影响。该研究提供了对雷诺数对RSI影响区域中流量差异和压力波动差异的影响的更好理解,这将有助于更好地评估从比例模型到原型的性能。

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