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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Experimental and Numerical Studies for a High Head Francis Turbine at Several Operating Points
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Experimental and Numerical Studies for a High Head Francis Turbine at Several Operating Points

机译:高水头混流式水轮机几个工作点的实验和数值研究

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Experimental and numerical studies on a high head model Francis turbine were carried out over the entire range of turbine operation. A complete Hill diagram was constructed and pressure-time measurements were performed at several operating conditions over the entire range of power generation by installing pressure sensors in the rotating and stationary domains of the turbine. Unsteady numerical simulations were performed at five operating conditions using two turbulent models, shear stress transport (SST) k-ω and standard k-ε and two advection schemes, high resolution and second order upwind. There was a very small difference (0.85%) between the experimental and numerical hydraulic efficiencies at the best efficiency point (BEP); the maximum difference (14%) between the experimental and numerical efficiencies was found at lower discharge turbine operation. Investigation of both the numerical and experimental pressure-time signals showed that the complex interaction between the rotor and stator caused an output torque oscillation over a particular power generation range. The pressure oscillations that developed due to guide vanes and runner blades interaction propagate up to the trailing edge of the blades. Fourier analysis of the signals revealed the presence of a vortex rope in the draft tube during turbine operation away from the BEP.
机译:对高水头模型的弗朗西斯水轮机进行了实验和数值研究,涵盖了整个水轮机运行范围。通过在涡轮机的旋转域和静止域中安装压力传感器,可以构建完整的希尔图,并在整个发电范围内的几种运行条件下进行压力时间测量。使用两个湍流模型,剪切应力传输(SST)k-ω和标准k-ε以及两个对流方案,高分辨率和二阶迎风在五个工况下进行了非稳态数值模拟。在最佳效率点(BEP)时,水力效率与数值效率之间的差异很小(0.85%)。实验效率和数值效率之间的最大差异(14%)是在较低的排气涡轮机运行情况下发现的。对数值和实验压力时间信号的研究表明,转子和定子之间的复杂相互作用导致了特定发电范围内的输出转矩振荡。由于导向叶片和流道叶片相互作用而产生的压力振荡会传播到叶片的后缘。信号的傅立叶分析显示,在涡轮运行过程中,远离BEP的情况下,导流管中存在涡流绳。

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