Effects of Double-Side Labyrinth Seals on Aerodynamic Performance in a Transonic Shrouded Turbine Stage.

Journal of Engineering for Gas Turbines and Power Pub Date : 2020-02-01 Epub Date: 2020-01-13 DOI:10.1115/1.4045182
Weihang Li, Shaowen Chen, Hongyan Liu, Zhihua Zhou, Songtao Wang
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引用次数: 2

Abstract

Labyrinth seals on both rotor casing and blade tip as an effective method to control the leakage flowrate of the shroud and improve aerodynamic performances in a transonic turbine stage are investigated in this study. Compared to the case without the labyrinth seal structure, the cases with three different types of sealing teeth have been shown to reduce significantly the tip leakage flow by computational simulations. The double-side sealing teeth case reduces the leakage flowrate m leakage / m passage from 3.4% to 1.3% and increases the efficiency by 1.4%, which is the maximum efficiency improvement of all cases. The sealing structures increase the loss inside the shroud while reducing the momentum mixing between shroud leakage flow and mainstream. Therefore, the circumferential distribution of leakage velocity is changed, as well as the distribution of high-loss zones at turbine outlet. Furthermore, the leakage-vortex loss, which is associated with the blockage effect of sealing structure to the tip leakage flow, gains more improvement than the passage-vortex at the rotor outlet section in double-side seal case. In addition, it has also been found that with a larger gap at tip, the double-side seal has better effects of reducing the leakage flow and improving the aerodynamic performance in the transonic turbine stage.

双面迷宫式密封对跨声速带冠涡轮级气动性能的影响。
在跨声速涡轮级中,采用叶顶和机匣的迷宫密封作为控制叶冠泄漏流量和改善气动性能的有效方法进行了研究。与不采用迷宫密封结构的情况相比,采用三种不同类型的密封齿的情况显著降低了叶尖泄漏流量。双侧密封齿箱将m泄漏/ m通道的泄漏流量从3.4%降低到1.3%,效率提高1.4%,是所有案例中效率提升最大的。密封结构增加了叶冠内部的损失,同时减少了叶冠泄漏流与主流之间的动量混合。因此,改变了泄漏速度的周向分布,也改变了涡轮出口高损失区的分布。此外,与密封结构对叶尖泄漏流的阻塞作用有关的泄漏涡损失比双面密封情况下转子出口截面的通道涡损失得到了更大的改善。此外,还发现当叶顶间隙较大时,双面密封在跨声速涡轮级具有更好的减少泄漏流动和改善气动性能的效果。
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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