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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Large Eddy Simulation of the Rotating Stall in a Pump-Turbine Operated in Pumping Mode at a Part-Load Condition
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Large Eddy Simulation of the Rotating Stall in a Pump-Turbine Operated in Pumping Mode at a Part-Load Condition

机译:在部分负载条件下在抽水模式下运行的水轮机中旋转失速的大涡模拟

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The investigation of the rotating stall phenomenon appearing in the HYDRODYNA pump-turbine reduced scale model is carried out by performing a large-scale large eddy simulation (LES) computation using a mesh featuring approximately 85 x 10(6) elements. The internal flow is computed for the pump-turbine operated at 76% of the best efficiency point (BEP) in pumping mode, for which previous experimental research evidenced four rotating stall cells. To achieve an adequate resolution near the wall, the Reynolds number is decreased by a factor of 25 than that of the experiment, by assuming that the flow of our interest is not strongly affected by the Reynolds number. The computations are performed on the supercomputer PRIMEHPC FX10 of the University of Tokyo using the overset finite-element open source code FrontFlow/blue with the dynamic Smagorinsky turbulence model. It is shown that the rotating stall phenomenon is accurately simulated using the LES approach. The results show an excellent agreement with available experimental data from the reduced scale model tested at the EPFL Laboratory for hydraulic machines. The number of stall cells as well as the propagation speed agree well with the experiment. Detailed investigations on the computed flow fields have clarified the propagation mechanism of the stall cells.
机译:对HYDRODYNA水泵水轮机缩小模型中出现的旋转失速现象的研究是通过使用具有约85 x 10(6)个元素的网格执行大规模的大涡模拟(LES)计算来进行的。对于在抽水模式下以最佳效率点(BEP)的76%运行的水泵水轮机,计算了内部流量,为此先前的实验研究证明了四个旋转失速单元。为了在壁附近获得足够的分辨率,假设我们感兴趣的流量不受雷诺数的强烈影响,则雷诺数要比实验值减少25倍。计算是在东京大学的超级计算机PRIMEHPC FX10上使用带有动态Smagorinsky湍流模型的有限有限开源代码FrontFlow / blue进行的。结果表明,使用LES方法可以精确地模拟旋转失速现象。结果表明,该数据与在EPFL实验室针对液压机测试的缩小比例模型中的可用实验数据非常吻合。失速细胞的数量以及传播速度与实验吻合得很好。对计算流场的详细研究已经阐明了失速单元的传播机理。

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