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Analysis of the Cavitating Draft Tube Vortex in a Francis Turbine Using Particle Image Velocimetry Measurements in Two-Phase Flow

机译:利用两相流中的颗粒图像测速技术分析混流式水轮机中的空化尾气管涡流

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摘要

Partial flow rate operation of hydroturbines with constant pitch blades causes complex unstable cavitating flow in the diffuser cone. A particle image velocimetry (PIV) system allows investigating the flow velocity field in the case of a developing cavitation vortex, the so-called vortex rope, at the outlet of a Francis turbine runner. The synchronization of the PIV flow survey with the rope precession allows applying the ensemble averaging by phase technique to extract both the periodic velocity components and the rope shape. The influence of the turbine setting level on the volume of the cavity rope and its centerline is investigated, providing a physical knowledge about the hydrodynamic complex phenomena involved in the development of the cavitation rope in Francis turbine operating regimes.
机译:具有恒定螺距叶片的水轮机的部分流量运行会导致扩压器圆锥中复杂的不稳定空化流。粒子图像测速(PIV)系统允许在弗朗西斯涡轮转子的出口处出现空化涡流(所谓的涡流绳)的情况下研究流速场。 PIV流量测量与绳索进动的同步允许通过相位技术进行整体平均,以提取周期速度分量和绳索形状。研究了涡轮机设定水平对型腔绳索及其中心线的体积的影响,从而提供了有关弗朗西斯涡轮机运行状态下空化绳索发展中涉及的流体动力学复杂现象的物理知识。

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