Experimental and Numerical Study on the Effects of the Relative Position of Film Hole and Orientation Ribs on the Film Cooling With Ribbed Cross-Flow Coolant Channel

Bing-ran Li, Cun-liang Liu, Lin Ye, Hui-ren Zhu, Fan Zhang
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Abstract

To investigate the application of ribbed cross-flow coolant channels with film hole effusion and the effects of the internal cooling configuration on film cooling, experimental and numerical studies are conducted on the effect of the relative position of the film holes and different orientation ribs on the film cooling performance. Three cases of the relative position of the film holes and different orientation ribs (post-rib, centered, and pre-rib) in two ribbed cross-flow channels (135° and 45° orientation ribs) are investigated. The film cooling performances are measured under three blowing ratios by the transient liquid crystal measurement technique. A RANS simulation with the realizable k-ε turbulence model and enhanced wall treatment is performed. The results show that the cooling effectiveness and the downstream heat transfer coefficient for the 135° rib are basically the same in the three position cases, and the differences between the local effectiveness average values for the three are no more than 0.04. The differences between the heat transfer coefficients are no more than 0.1. The “pre-rib” and “centered” cases are studied for the 45° rib, and the position of the structures has little effect on the film cooling performance. In the different position cases, the outlet velocity distribution of the film holes, the jet pattern and the discharge coefficient are consistent with the variation in the cross flow. The related research previously published by the authors showed that the inclination of the ribs with respect to the holes affects the film cooling performance. This study reveals that the relative positions of the ribs and holes have little effect on the film cooling performance. This paper expands and improves the study of the effect of the internal cooling configuration on film cooling and makes a significant contribution to the design and industrial application of the internal cooling channel of a turbine blade.
膜孔与定向肋相对位置对带肋横流冷却通道气膜冷却影响的实验与数值研究
为了研究带膜孔射流的肋交叉流冷却剂通道的应用以及内部冷却结构对膜冷却的影响,对膜孔相对位置和不同方向肋对膜冷却性能的影响进行了实验和数值研究。研究了两种肋形交叉流道(135°和45°方向肋)中膜孔与不同方向肋(后肋、中肋和预肋)的相对位置。采用瞬态液晶测量技术测量了三种吹气比下的气膜冷却性能。采用可实现的k-ε湍流模型和强化壁面处理进行了RANS仿真。结果表明:三种位置下135°肋的冷却效率和下游换热系数基本相同,三种位置下局部效率平均值的差异不大于0.04;换热系数之差不大于0.1。研究了45°肋的“预肋”和“居中”两种结构形式,结构位置对气膜冷却性能影响不大。在不同位置情况下,膜孔的出口速度分布、射流模式和流量系数与横流的变化一致。作者先前发表的相关研究表明,肋相对于孔的倾斜度影响气膜冷却性能。研究表明肋和孔的相对位置对气膜冷却性能影响不大。本文扩展和完善了内冷却结构对气膜冷却影响的研究,对涡轮叶片内冷却通道的设计和工业应用有重要贡献。
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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