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Film cooling from two rows of holes with opposite orientation anglges: injectant behavior and adiabatic film cooling effectiveness

机译:从两排具有相反方向角度的孔进行薄膜冷却:喷射行为和绝热薄膜冷却效果

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The present paper is aiming at describing the injectant behaviors from two rows of film cooling holes with opposite orientation angles. Boundary layer temperature distributions were measured in the streamwise normal plane to illustrate the interaction between the injectant from the holes in the upstream row and from the downstream row. Detailed adiabatic film cooling effectiveness dis tributions were also measured using thermochromic liquid crystal to investigate how well the injectant covers the film cooled surface Four film cooling hole arrangements were considered including inline and staggered ones. And three blowing ratios of 0.5, 1.0 and 2.0 were studied. At the blowing ratio of 0.5, the injectant is centered near film cooled surface irrespective of hole configuration to show high film cooling effectiveness. When the blowing ratio exceeds unity the injectant tends to lift off from the wall due to the increase of the wall normal momentum. With the inline configuration, not like other configurations, the injectant is still well at tached to the wall with the help of the downwash flow formed at the hole exit.
机译:本文旨在描述来自两排方向相反的薄膜冷却孔的喷射行为。在流法线平面上测量了边界层温度分布,以说明来自上游排孔和下游排孔的注入剂之间的相互作用。还使用热致变色液晶测量了绝热膜冷却效率的详细分布,以研究注入剂覆盖膜冷却表面的程度如何。考虑了四个膜冷却孔布置,包括直列和交错布置。并研究了三种吹风比0.5、1.0和2.0。在0.5的吹塑比下,不管孔的构造如何,喷射剂都在靠近膜冷却表面的中心,以显示出高的膜冷却效率。当吹风比超过1时,由于壁法向动量的增加,喷射剂倾向于从壁上升起。与其他配置不同,采用直列配置时,借助于在孔出口处形成的向下冲洗流,喷射器仍然可以很好地固定在壁上。

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