首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference;AJK2011 >HYDRODYNAMICS OF A PUMP-TURBINE AT OFF-DESIGN OPERATING CONDITIONS: NUMERICAL SIMULATION
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HYDRODYNAMICS OF A PUMP-TURBINE AT OFF-DESIGN OPERATING CONDITIONS: NUMERICAL SIMULATION

机译:水轮机在非设计运行条件下的水动力特性:数值模拟

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Flow numerical simulations in a low specific speed radial pump-turbine scale model are performed to investigate off-design operating conditions in generating mode. The Best Efficiency Point (BEP) and the runaway operating conditions at 10° guide vanes opening are addressed. The computational domain includes the full reduced scale model water passage from the spiral casing inlet to the draft tube outlet. The numerical simulation is performed using the Ansys CFX code, solving the incompressible unsteady Reynolds-Averaged Navier-Stokes equations. Wall pressure measurements in the stator are used to validate the numerical results. Then, detailed analysis is focused on the onset of the flow instabilities when the machine is brought from BEP to runaway. In these severe operating conditions, one single stall cell is found to rotate with the impeller at subsynchronous speed in the vaneless gap between the impeller and the guide vanes. It is found to be the effect of flow separation developed at the inlet of several consecutive impeller channels which lead to their blockage.
机译:在低比转速径向泵-涡轮比例模型中进行流量数值模拟,以研究发电模式下的非设计运行条件。解决了最佳效率点(BEP)和10°导流叶片打开时的失控工作条件。计算域包括从螺旋套管入口到引流管出口的完全缩小比例的模型水通道。使用Ansys CFX代码执行数值模拟,求解不可压缩的非定常雷诺平均Navier-Stokes方程。定子中的壁压测量值用于验证数值结果。然后,将详细的分析集中在将机器从BEP带入失控状态时出现的流动不稳定性。在这些严酷的工作条件下,发现一个单个的失速单元与叶轮在叶轮和导向叶片之间的无叶片间隙中以亚同步速度旋转。发现是在几个连续的叶轮通道的入口处形成流动分离的效果,导致其阻塞。

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