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Correlation of the Sediment Properties and Erosion in Francis Hydro Turbine Runner

机译:弗朗西斯水轮机转轮泥沙特性与冲刷的相关性

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Sediment erosion is the main problem for the hydropower situated in South Asia and South America. Due to sediment erosion, hydropower in those areas cannot operate in their full potential. Sediment erosion is a significant problem in turbomachinery and associated with degradation of turbine performance. The sediment erosion removes the turbine material from its surface. It can cause fracture of the turbine, which leads to an economic loss. In this paper, the sediment properties and its influence on erosion have discussed. Sediment properties like shape, size, and concentration have a direct influence on erosion. The numerical analysis was conducted to visualize the erosion in Francis hydro turbine. The most vulnerable area for the sediment erosion in Francis hydro turbine has predicted. The precise prediction of the sediment erosion in the turbine is the difficult task due to the synergetic effect of sediment parameters (shape, size, concentration, hardness, velocity). The accurate and precise indication of the sediment erosion required both experimental and computational analysis. In this study, solid-fluid computational analysis has done to identify the susceptible area on runner blade and influence of sediment parameters on erosion.
机译:沉积物侵蚀是位于南亚和南美的水力发电的主要问题。由于沉积物侵蚀,这些地区的水力发电无法充分发挥潜力。沉积物侵蚀是涡轮机中的一个重要问题,与涡轮机性能下降有关。沉积物侵蚀将涡轮机材料从其表面清除。这可能会导致涡轮机破裂,从而导致经济损失。本文讨论了沉积物的性质及其对侵蚀的影响。沉积物的形状,大小和浓度等特性对侵蚀有直接影响。进行了数值分析以可视化弗朗西斯水轮机的腐蚀。据预测,弗朗西斯水轮机最容易遭受泥沙侵蚀的地区。由于沉积物参数(形状,大小,浓度,硬度,速度)的协同作用,要精确预测涡轮机中的沉积物侵蚀是一项艰巨的任务。沉积物侵蚀的准确和精确指示需要进行实验和计算分析。在这项研究中,进行了固流计算分析,以确定转轮叶片上的敏感区域以及泥沙参数对侵蚀的影响。

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