Experimental investigation of rotation number effect on film cooling over a convex surface
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摘要: 采用圆弧模型,测量了旋转状态下凸表面气膜冷却效率 η ad和换热系数 h f的分布规律,重点研究旋转数 Rt=ωD/u∞ 对气膜冷却的影响.叶片表面温度采用先进的液晶测温技术进行测量.结果表明:①在旋转离心力和哥氏力的共同作用下,气膜轨迹向高半径方向发生了明显的偏移,并且转速越高偏移角度越大;②旋转使得气膜冷却效率降低,换热系数上升;③在旋转状态下,气膜发生了分离再附壁的现象.Abstract: Experimental study was conducted to investigate the influence of rotation number ( Rt=ωD/u ∞) on the film cooling performance over a convex surface. Measurements of film cooling effectiveness η ad and heat transfer coefficient h f were presented for single film hole. Thermochromic liquid crystal (TLC) was used to obtain the temperature distributions on the curved surface. The results show that ① an obviously deflection occurs under the rotating condition;② with the increase of rotation number, the film cooling effectiveness decrease while the heat transfer coefficient increase;③ a reattachment phenomenon can be observed in the rotating condition.
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Key words:
- film cooling /
- curved surface /
- rotating /
- experiment
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