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The physical origin of severe low-frequency pressure fluctuations in giant Francis turbines

机译:巨型弗朗西斯涡轮机中严重的低频压力波动的物理原因

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摘要

The physical origin of severe low-frequency pressure fluctuation frequently observed in Francis hydraulic turbines under off-design conditions, which greatly damages the structural stability of turbines and even power stations, is analyzed based on the hydrodynamic stability theory and our Reynolds-averaged Navier-Stokes equation simulation (RANS) of the flow in the entire passage of a Francis turbine. We find that spontaneous unsteady vortex ropes, which induce severe pressure fluctuations, are formed due to the absolute instability of the swirling flow at the conical inlet of the turbine's draft tube.
机译:根据水动力稳定性理论和我们的雷诺平均Navier-分析了弗朗西斯水轮机在非设计条件下经常观察到的严重低频压力波动的物理起因,这严重损害了水轮机乃至发电站的结构稳定性。弗朗西斯涡轮机整个通道内的斯托克斯方程模拟(RANS)。我们发现,由于涡轮引流管圆锥形进口处的涡旋流绝对不稳定,形成了引起剧烈压力波动的自发不稳定涡流绳。

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