Effect of constant and variable radii fillet on secondary flow field of transonic turbine stage's Nozzle Guide Vane

K. Ananthakrishnan, M. Govardhan
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引用次数: 3

Abstract

In this present work, efforts are made to understand the effect of constant and variable radii fillet on secondary flow losses in Nozzle Guide Vane of the transonic turbine stage. Constant and variable radii fillets near vane-endwall juncture are designed using shape parameters like leading edge radius and minimum angle. Results are discussed using topological features of the flow field, Mach and density contours. Separation lines associated with inlet boundary layer and passage vortex, saddle point and attachment nodes are resolved. Variable radii fillet outperforms the constant radii fillet by reducing the height of three dimensional flow regime affected by secondary flow. It removes the separation bubble near the trailing edge. Increment in leading edge radius increases the movement of these flows towards midspan while the effect of minimum angle is found to be insignificant.
定半径和变半径圆角对跨声速涡轮级导叶二次流场的影响
本文研究了定径角和变径角对跨声速涡轮级导叶二次流损失的影响。采用前缘半径和最小角等形状参数,设计了叶端壁结合部的定半径圆角和变半径圆角。利用流场的拓扑特征、马赫和密度轮廓对结果进行了讨论。求解了入口边界层与通道涡、鞍点、附着节点的分离线。变半径圆角通过降低受二次流影响的三维流型高度而优于定半径圆角。它消除了后缘附近的分离气泡。前缘半径的增加增加了这些流动向跨中移动,而最小角的影响不显著。
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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