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Compressible Simulation of Rotor-Stator Interaction in Pump-Turbines

机译:水轮机转子-定子相互作用的可压缩模拟。

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This work investigates the influence of water compressibility on pressure pulsations induced by rotor-stator interaction (RSI) in hydraulic machinery, using the commercial CFD solver ANSYS-CFX. A pipe flow example with harmonic velocity excitation at the inlet plane is simulated using different grid densities and time step sizes. Results are compared with a validated code for hydraulic networks (SIMSEN). Subsequently, the solution procedure is applied to a simplified 2.5-dimensional pump-turbine configuration in prototype with different speeds of sound as well as in model scale with an adapted speed of sound. Pressure fluctuations are compared with numerical and experimental data based on prototype scale. The good agreement indicates that the scaling of acoustic effects with an adapted speed of sound works well. With respect to pressure fluctuation amplitudes along the centerline of runner channels, incompressible solutions exhibit a linear decrease while compressible solutions exhibit sinusoidal distributions with maximum values at half the channel length, coinciding with analytical solutions of one-dimensional acoustics. Furthermore, in compressible simulation the amplification of pressure fluctuations is observed from the inlet of stay vane channels to the spiral case wall. Finally, the procedure is applied to a three-dimensional pump configuration in model scale with adapted speed of sound. Normalized Pressure fluctuations are compared with results from prototype measurements. Compared to incompressible computations, compressible simulations provide similar pressure fluctuations in vaneless space, but pressure fluctuations in spiral case and penstock may be much higher.
机译:这项工作使用商用CFD求解器ANSYS-CFX研究了水可压缩性对液压机械中转子-定子相互作用(RSI)引起的压力脉动的影响。使用不同的网格密度和时间步长模拟了在入口平面处具有谐波速度激励的管道流示例。将结果与经过验证的液压网络代码(SIMSEN)进行比较。随后,将求解过程应用于具有不同声速的原型中的简化2.5维水泵水轮机配置以及具有适应的声速的模型比例。将压力波动与基于原型比例的数值和实验数据进行比较。良好的协议表明,以适应的音速缩放声学效果效果很好。关于沿着流道通道中心线的压力波动幅度,不可压缩溶液呈现线性下降,而可压缩溶液呈现正弦分布,最大值在通道长度的一半处,与一维声学解析解一致。此外,在可压缩模拟中,从固定叶片通道的入口到螺旋壳体壁的压力波动放大了。最后,将该程序应用于具有合适声速的模型规模的三维泵配置。将标准化压力波动与原型测量结果进行比较。与不可压缩的计算相比,可压缩的模拟在无叶片空间中提供了相似的压力波动,但是在螺旋壳体和压力管道中的压力波动可能更高。

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