Comparison of Film Cooling Performance for Different Purge Slot Configurations in a Cylindrical and State-of-the-Art Nozzle Guide Vane

Christian Landfester, G. Müller, Robert Krewinkel, C. Domnick, M. Böhle
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Abstract

This comparative study is concerned with the advances in nozzle guide vane (NGV) design developments and their influence on the film cooling performance by injecting coolant through the purge slot. An experimental study compares the film cooling effectiveness as well as the aerodynamic effects for different purge slot configurations on both a flat and an axisymmetrically contoured endwall of a NGV. While the flat endwall cascade was equipped with four cylindrical vanes, the contoured endwall cascade consisted of four modern NGVs which represent state-of-the-art high-pressure turbine design standards. Geometric variations, e.g. the purge slot width and injection angle, as well as different blowing ratios (BR) at an engine-like density ratio (DR = 1.6) were realized to investigate the real-life effect of thermal expansion, design modifications and the interaction between secondary flow and coolant. The mainstream flow parameters were set to meet real engine conditions with regard to Reynolds and Mach numbers. The Pressure Sensitive Paint (PSP) technique was used to determine the adiabatic film cooling effectiveness. Five-hole probe measurements (DR = 1.0) were performed to measure the flow field with its characteristic vortex structures as well as the loss distribution in the vane wake region. For a more profound insight into the origin and development of the secondary flows, oil dye visualizations were carried out on both endwalls. The measurement results will be discussed based on a side-by-side comparison of the distribution of film cooling effectiveness on the endwall, its area-averaged values as well as the two-dimensional distribution of total pressure losses and the secondary flow field. The results of this study show that the advances in NGV design development have had a significantly positive influence on the distribution of the coolant. This has to be attributed to lesser disturbance of the coolant propagation by secondary flow for the optimized NGV design, since the design features are intended to suppress the formation of secondary flow. In contrast to the results of the cylindrical profile, sufficient cooling can be already provided with a perpendicular injection in the case of the modern NGV. It is therefore advisable to take these effects into account when designing the film cooling system of a modern high-pressure turbine.
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圆柱型和新型喷嘴导叶不同吹扫槽结构的气膜冷却性能比较
本文比较研究了喷嘴导叶(NGV)设计的进展及其通过吹扫槽注入冷却剂对气膜冷却性能的影响。通过实验研究,比较了在平面型和轴对称型端壁上不同吹扫槽构型的气膜冷却效果和气动效应。平面端壁叶栅配备了四个圆柱形叶片,而轮廓端壁叶栅由四个现代ngv组成,代表了最先进的高压涡轮设计标准。在类似发动机的密度比(DR = 1.6)下,实现了吹扫槽宽度和喷射角等几何变化,以及不同的吹气比(BR),以研究热膨胀、设计修改以及二次流与冷却剂相互作用的实际影响。在雷诺数和马赫数方面设置主流流动参数以满足发动机的实际条件。采用压敏涂料(PSP)技术测定了绝热膜的冷却效果。采用五孔探头测量(DR = 1.0)测量具有其特征涡结构的流场以及叶片尾迹区域的损失分布。为了更深入地了解二次流的起源和发展,在两端壁上进行了油染料可视化。测量结果将基于端壁上的气膜冷却效率分布、其面积平均值以及总压损失和二次流场的二维分布的并行比较进行讨论。研究结果表明,NGV设计发展的进步对冷却剂的分布产生了显著的积极影响。这是由于优化后的NGV设计减少了二次流对冷却剂传播的干扰,因为设计特征旨在抑制二次流的形成。与圆柱形轮廓的结果相反,在现代NGV的情况下,垂直喷射已经可以提供足够的冷却。因此,在设计现代高压涡轮气膜冷却系统时,应考虑到这些影响。
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