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Numerical study on the internal flow field of a reversible turbine during continuous guide vane closing

机译:连续导流叶片闭合过程中可逆涡轮内部流场的数值研究

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摘要

The unsteady flow field in a reversible pump-turbine is investigated during the continuous load rejection using a 3D computational fluid dynamic analysis. Numerical calculations are carried out using the detached eddy simulation (DES) turbulence model and a new approach involving automatic mesh motion. In this way, the instability of the flow field is analyzed by continuously changing the guide vane openings from the best efficiency point (BEP). Unsteady flow characteristics are described by post-processing signals for several monitoring points including mass flow, torque, head and pressure in the frequency and time-frequency domains. The formation of vortices of different scales is observed from the origin to further enlargement and stabilization; the effect of the rotating structures on the flow passage is analyzed, and the influence of unsteady flow development on the performance of the turbine is investigated. Finally, the evolution during the period of load rejection is characterized in order to determine the hydrodynamic conditions causing the vibrations in the machine.
机译:使用3D计算流体动力学分析,在连续载荷抑制过程中研究了可逆式水泵水轮机中的非恒定流场。使用独立涡流仿真(DES)湍流模型和涉及自动网格运动的新方法进行了数值计算。通过这种方式,通过从最佳效率点(BEP)连续更改导叶开口来分析流场的不稳定性。通过对几个监测点进行后处理信号来描述非定常流动特性,这些监测点包括频域和时频域中的质量流量,转矩,扬程和压力。从起源到进一步扩大和稳定,观察到不同尺度的涡旋的形成;分析了旋转结构对流道的影响,研究了非定常流动对涡轮性能的影响。最后,表征负荷消除期间的演变,以便确定引起机器振动的流体动力学条件。

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