首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Influence of secondary hole injection angle on enhancement of film cooling effectiveness with horn-shaped or cylindrical primary holes
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Influence of secondary hole injection angle on enhancement of film cooling effectiveness with horn-shaped or cylindrical primary holes

机译:二次孔注射角度对喇叭形或圆柱形主孔提高薄膜冷却效能的影响

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摘要

Film cooling with primary and secondary hole injection is numerically investigated. Effects of primary hole shape and secondary hole injection angle are documented. Each primary hole, either cylindrical or laterally diffused, has two secondary, cylindrical holes located symmetrically about it. Adding secondary holes improves cooling performance. Five cases of different secondary hole injection configuration are analyzed. With a cylindrical primary hole, increasing secondary hole inclination angle provides better cooling; outwardly inclining the secondary holes shows continued improvement. With horn-shaped primary holes, smaller secondary hole inclination angles provide higher cooling at lower blowing ratios; larger secondary hole inclination angles provide higher cooling at higher blowing ratios, and compound-angle secondary hole injection shows no improvement over parallel hole injection.
机译:用初级和二次空穴注入薄膜冷却进行数值研究。 初级孔形状和次孔注射角的影响被记录在下。 每个初级孔,圆柱形或横向扩散,具有两个次级,圆柱形孔对称地位于其上。 添加次孔可提高冷却性能。 分析了五种不同的二次空穴注入配置。 通过圆柱形主孔,增加次孔倾斜角度提供更好的冷却; 向外倾向于二次孔表明持续改善。 利用喇叭形的初级孔,较小的次孔倾斜角在较低的吹气比下提供更高的冷却; 较大的次孔倾斜角在更高的吹风比下提供更高的冷却,并且复合角二次空穴注入显示不通过平行空穴注入的改善。

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