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Secondary Flow Loss Reduction in a Turbine Cascade with a Linearly Varied Height Streamwise Endwall Fence

机译:具有线性变化高度流动的端壁围栏的涡轮机级联的二次流量损失

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摘要

The present study attempts to reduce secondary flow losses by application of streamwise endwall fence. After comprehensive analysis on selection of objective function for secondary flow loss reduction, coefficient of secondary kinetic energy (CSKE) is selected as the objective function in this study. A fence whose height varies linearly from the leading edge to the trailing edge and located in the middle of the flow passage produces least CSKE and is the optimum fence. The reduction in CSKE by the optimum fence is 27% compared to the baseline case. The geometry of the fence is new and is reported for the first time. Idea of this fence comes from the fact that the size of the passage vortex (which is the prime component of secondary flow) increases as it travels downstream, hence the height of fence should vary as the objective of fence is to block the passage vortex from crossing the passage and impinging on suction surface of the blade. Optimum fence reduced overturning and underturning of flow by more than 50% compared to the baseline case. Magnitude and spanwise penetration of the passage vortex were reduced considerably compared to the baseline case.
机译:本研究试图通过应用流动的端壁围栏来减少二次流失损失。在综合分析对二次流量损失减少的客观函数的综合分析之后,选择次级动能(CSKE)系数作为本研究的目标函数。高度从前沿线性变化到后缘并且位于流动通道的中间的栅栏产生最小Cske并且是最佳栅栏。与基线案例相比,最佳围栏的CSKE的减少为27%。围栏的几何形状是新的,第一次报道。这个围栏的想法来自:由于在下游行驶时,通道涡流的尺寸(其是二次流动的主要成分)增加,因此围栏的高度应随着栅栏的目标而变化,这是阻止通道涡流穿过通道并撞击刀片的吸入表面。与基线案例相比,最佳围栏减少了超过50%的流量。与基线案例相比,通道涡流的幅度和跨度渗透率显着降低。

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