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ANALYSIS OF INNER FLOW INSIDE FRANCIS TURBINE RUNNER BASED ON DISSIPATION FUNCTION

机译:基于耗散函数的弗朗西斯汽轮机赛道内部流量分析

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Energy loss inside a Francis turbine runner is analyzed with dissipation function in this paper. The dissipation rate of a Newtonian flow with constant shear viscous has three constituents from dilation, vorticity, and surface strain, which is derived from kinetic energy equation presented in this paper. A commercial N-S equation solver has been employed for 3D turbulent flow simulation with a model Francis turbine, and three different operating conditions are chosen for comparison, which are part load, rated load, and excessive load. The results from simulation have been compared with model experiments to validate their preciseness and reliability. The distribution of dissipation constituents on runner blade surface have been extracted from the above simulation results. The distinction of these constituents can be used to identify flow structures inside runner. The flow energy loss is determined by dissipation function, thus it can affect the hydraulic efficiency of turbine runner. From the above results, it can be seen that what causes the energy loss, which is the dominant factor, and where it has the highest value. Thus this analysis based on dissipation function can be used for flow diagnosis inside the blade channel, and tell us which part of the blade should be improved to reduce the energy loss.
机译:在本文中分析了弗朗西斯汽轮机流道内的能量损失。具有恒定剪切粘性的牛顿流量的耗散速率具有来自扩张,涡流和表面菌株的三种成分,其来自本文中呈现的动能方程。商业N-S等式求解器已经采用具有型号涡轮机的3D湍流仿真,选择三种不同的操作条件进行比较,这是部分负载,额定负载和过度负载。模拟结果与模​​型实验进行了比较,以验证其精确性和可靠性。从上述仿真结果中提取了转轮叶片表面上的耗散成分的分布。这些成分的区别可用于识别车轮内的流动结构。通过耗散功能确定流动能量损失,因此它可以影响涡轮流道的液压效率。从上述结果,可以看出,导致能量损失,这是主要因素,以及它具有最高价值的原因。因此,基于耗散函数的这种分析可用于刀片通道内的流动诊断,并告诉我们应该改善哪一部分刀片以降低能量损失。

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