Experimental Investigation of Film Cooling Performance on Blade Endwall With Diffusion Slot Holes and Stator-Rotor Purge Flow

Zhiqiang Yu, Jianjun Liu, Chen Li, B. An, Guangyao Xu
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Abstract

This paper focuses on the influences of the discrete hole shape and layout on the blade endwall film cooling effectiveness. The effect of upstream purge slot injection on the film cooling performance of the discrete hole was also investigated. The diffusion slot hole was first applied to the blade endwall. As a comparison, the cooling performance of the fan-shaped hole was also measured. Totally, six discrete-hole cooling configurations (2 hole shapes × 3 layouts) were investigated. Experiments were performed in a seven-blade linear cascade with the exit Reynolds number of 2.64 × 105. The average blowing ratios (BR) of the discrete holes changed from 0.5 to 2.5, and the coolant mass flow ratio of the purge slot (MFR) was fixed at MFR = 1.5%. The distributions of the cooling effectiveness on the blade endwall were measured by the pressure sensitive paint technique. Results indicate that the diffusion slot hole significantly increases the film cooling effectiveness on the blade endwall compared to the fan-shaped hole, especially at high blowing ratio. The maximum relative increment of the cooling effectiveness is over 40%. The layout with the discrete holes arranged lining up with the tangent direction of the blade profile offset curves exhibits a comparable film cooling effectiveness with the layout with the discrete holes arranged according to the cross-flow direction. The film cooling effectiveness on the pressure surface corner is remarkably enhanced by deflecting the hole orientation angle towards the pressure surface. The combination of purge slot and diffusion slot holes supplies a full coverage film cooling for the entire blade endwall at MFR = 1.5% and BR = 2.5. In addition, the slot injection leads to a non-negligible influence on the cooling performance of the discrete holes near the separation line.
带有扩散槽孔和定转子吹扫流的叶片端壁气膜冷却性能实验研究
本文主要研究了离散孔的形状和布置对叶片端壁气膜冷却效果的影响。研究了上游吹扫槽喷射对离散孔气膜冷却性能的影响。扩散槽孔首先应用于叶片端壁。作为对比,还测量了扇形孔的冷却性能。总共研究了6种离散孔冷却结构(2孔形状× 3孔布局)。实验在出口雷诺数为2.64 × 105的七叶线性叶栅中进行。离散孔的平均吹气比(BR)为0.5 ~ 2.5,吹扫槽的冷却剂质量流量比(MFR)固定为MFR = 1.5%。采用压敏喷涂技术测量了叶片端壁冷却效果的分布。结果表明,与扇形孔相比,扩散槽孔显著提高了叶片端壁的气膜冷却效率,特别是在高吹气比时。冷却效率的最大相对增量在40%以上。沿叶型偏置曲线切线方向排列的离散孔布置与沿横流方向排列的离散孔布置具有相当的气膜冷却效果。使孔取向角向压力面方向偏转,可显著提高膜层在压力面转角处的冷却效果。在MFR = 1.5%, BR = 2.5的条件下,吹扫槽和扩散槽孔组合为整个叶片端壁提供了全覆盖的气膜冷却。此外,狭缝注入对分离线附近的离散孔的冷却性能也有不可忽略的影响。
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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