Mitigation of Flow-Induced Pressure Fluctuations in a Francis Turbine Using Water Injection

Muhannad Altimemy, Bashar Attiya, Cosan Daskiran, I-Han Liu, A. Oztekin
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Abstract

Computational fluid dynamics simulations are conducted to characterize the spatial and temporal characteristics of the turbulent flow fields inside Francis turbine operating at the design and partial load regimes. High-fidelity large eddy simulations turbulence model is applied to investigate the flow-induced vibrations in the draft tube of the unit. The water injection at 4% rate from the runner cone is implemented to control the flow-induced pressure fluctuations. The simulations are conducted at the turbine design point and two partial load operations with and without water injection. It has been demonstrated that the water injection has a profound influence in the turbulent flow structure and the pressure field inside the draft tube at the partial load operating conditions. To evaluate the effectiveness of the water injection techniques in mitigating flow-induced fluctuations, the probes at various locations along the wall of the draft tube are used to monitor the pressure signals. It appears to be a reduction in the level of pressure fluctuations by the water injection at both partial load operating regimes. However, we could not draw a firm conclusion about the level of mitigation of flow-induced vibrations. Simulations should be carried out for much longer flow time. Water injection hardly influenced the unit power generation. Hence water injection can be employed effectively without a major liability on the power generation.
利用注水技术缓解混流式水轮机流动压力波动
对混流式水轮机在设计和部分负荷工况下的湍流流场进行了计算流体动力学模拟。采用高保真大涡模拟紊流模型对机组尾水管内的流激振动进行了研究。为了控制流动引起的压力波动,从转轮锥以4%的速度注水。在水轮机设计点和注水和不注水两种部分负荷工况下进行了模拟。研究表明,在部分负荷工况下,注水对尾水管的湍流结构和压力场有深远的影响。为了评估注水技术在缓解流动波动方面的有效性,在尾水管沿壁的不同位置使用探针来监测压力信号。在两个部分负荷运行状态下,注水似乎降低了压力波动水平。然而,我们不能得出一个关于流动引起的振动的缓解程度的确切结论。模拟应该进行更长的流时间。注水对机组发电影响不大。因此,注水可以有效地利用,而不会对发电产生重大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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