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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Numerical Simulationof the Transient Flowin a Pump-Turbine Duringthe Load Rejection ProcessWith Special Emphasison the Cavitation Effect
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Numerical Simulationof the Transient Flowin a Pump-Turbine Duringthe Load Rejection ProcessWith Special Emphasison the Cavitation Effect

机译:瞬态流动泵涡轮机的数值模拟在负载抑制过程中的特殊强调空化效应

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At present, pumped-storage power technology is the only available and effective way for the load balancing and energy storage in the grid network scale. During the frequent switch back and forth conditions, there are severe pressure pulsation and cavitation in pump-turbines. However, their generation mechanism has not been determined yet. This work contributes to the numerical simulation of the transient behaviors in a prototype pump-turbine during the load rejection process with special emphasis on cavitation effect. In this study, the two-dimensional dynamic remesh and variable speed slide mesh methodologies were employed to perform the simulation of the transient single-phase flow and cavitation flow in a pump-turbine. The simulation results of single-phase flow and cavitation flow were both consistent with the experimental data except in local regions based on the experimental validation of prototype tests. However, the numerical results considering cavitation effects have a better behavior than those of single-phase flow in the predictions of pressure pulsation and rotational speed. Then, the cavitation flow simulation results were analyzed deeply, especially in pressure pulsation and cavitation flow field. Analysis revealed that three typical complex frequency components of pressure were captured in the cavitation flow, which significantly affect the axial hydraulic thrust on the runner. And it is validated that they are primarily induced by the cavity collapse near the trailing edges of the runner blades in reverse pump mode and the interaction between cavitation and vortex rope in draft-tube in turbine mode.
机译:目前,泵送存储电力技术是网格网络规模负载平衡和能量存储的唯一可用和有效的方法。在频繁的开关来回条件下,泵涡轮机中存在严重的压力脉动和空化。但是,他们的发电机制尚未确定。该工作有助于在负载抑制过程中的原型泵涡轮机中的瞬态行为的数值模拟,具有特别强调空化效果。在该研究中,采用二维动态回忆和可变速度滑动网格方法来执行泵涡轮机中的瞬态单相流量和空化流的模拟。除了基于原型测试的实验验证之外,单相流量和空化流动的仿真结果与除局部区域之外的实验数据一致。然而,考虑空化效果的数值结果具有比在压力脉动和转速的预测中的单相流动的更好的行为。然后,深深地分析空化流动模拟结果,特别是在压力脉动和空化流场中。分析显示,在空化流动中捕获了三个典型的复合频率分量,这显着影响了转轮上的轴向液压推力。并且它被验证,它们主要由逆转泵模式的转轮叶片的后缘附近的腔塌陷引起,以及涡轮机模式下牵伸管中的空化和涡旋绳索之间的相互作用。

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