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Study of the simultaneous effects of secondary flow and sediment erosion in Francis turbines

机译:混流式水轮机中二次流与泥沙侵蚀的同时效应研究

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Sediment erosion of the hydropower turbine components is one of the key challenges due to the constituent of hard particles in the rivers of Himalayas and Andes. In the case of Francis turbines, previous studies show that the erosion is mostly observed around stay vanes, guide vanes and runner blades. Depending upon the type of flow phenomena in particular regions and operating conditions, the sediment particles having certain geometric and material properties create distinct erosion patterns on those regions. The flow phenomena in Francis turbines are highly unsteady, especially around guide vanes and runner. The unsteadiness arises in the form of leakage through clearance gap, horseshoe vortex, rotor-stator-interaction and turbulences supported by high velocity and acceleration. The erosion on the other hand deteriorates the surface morphology, aggravating the flow. Based on a thorough literature survey, this paper explains the simultaneous nature of the two effects, which in combined, contributes to more losses, vibrations, fatigue problems and failure of the turbine. It also discusses some of the research endeavors to minimize the combined effect by controlling either the erosion or the secondary flow in the turbine. This review paper emphasizes the need of understanding the relationship between the two phenomena and techniques of how the combined effect can be predicted as well as minimized. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于喜马拉雅山和安第斯山脉河流中的硬颗粒成分,水力发电涡轮机部件的泥沙侵蚀是主要挑战之一。对于弗朗西斯涡轮机,以前的研究表明,腐蚀主要发生在固定叶片,导向叶片和转轮叶片周围。根据特定区域中流动现象的类型和操作条件,具有某些几何和材料特性的沉积物颗粒会在这些区域上产生不同的侵蚀模式。弗朗西斯涡轮机的流动现象非常不稳定,尤其是在导流叶片和转轮周围。不稳定的形式是通过间隙,马蹄涡,转子与定子的相互作用以及湍流(由高速和加速支撑)引起的泄漏。另一方面,腐蚀使表面形态恶化,加剧了流动。在全面的文献调查的基础上,本文解释了两种作用的同时发生的性质,两者合在一起会导致更多的损失,振动,疲劳问题和涡轮机故障。它还讨论了一些研究工作,旨在通过控制涡轮机的腐蚀或二次流来最大程度地降低综合影响。这篇综述论文强调需要了解两种现象之间的关系以及如何预测和最小化组合效应的技术。 (C)2016 Elsevier Ltd.保留所有权利。

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