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Film Cooling of Cylindrical Hole With a Downstream Short Crescent-Shaped Block

机译:下游短月牙形块圆柱孔的薄膜冷却

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This paper presents a method to improve the film-cooling effectiveness of cylindrical holes. A short crescent-shaped block is placed at the downstream of a cylindrical cooling hole. The block shape is defined by a number of geometric parameters including block height, length and width, etc. The single row hole on a flat plate with inclination angle of 30 deg, pitch ratio of 3, and length-diameter ratio of 6.25 was chosen as the baseline test case. Film-cooling effectiveness for the cylindrical hole with or without the downstream short crescent-shaped block was measured by using the pressure sensitive paint (PSP)' technique. The density ratio of coolant (argon) to mainstream air is 1.38. The blowing ratios vary from 0.5 to 1.25. The results showed that the lateral averaged cooling effectiveness is increased remarkably when the downstream block is present. The downstream short block allows the main body of the coolant jet to pass over the block top and to form a new down-wash vortex pair, which increases the coolant spread in the lateral direction. The effects of each geometrical parameter of the block on the film-cooling effectiveness were studied in detail.
机译:本文提出了一种提高圆柱孔薄膜冷却效率的方法。在圆柱形冷却孔的下游放置一个短的新月形块。块的形状由许多几何参数定义,包括块的高度,长度和宽度等。选择了平板上倾斜角度为30度,螺距比为3,长径比为6.25的单行孔。作为基准测试用例。通过使用压敏涂料(PSP)技术测量带有或不带有下游短月牙形块的圆柱孔的薄膜冷却效率。冷却剂(氩气)与主流空气的密度比为1.38。吹塑比在0.5至1.25之间变化。结果表明,当存在下游区时,横向平均冷却效率显着提高。下游短缸体使冷却剂射流的主体越过缸体顶部并形成新的向下冲洗涡流对,从而增加了冷却剂在横向方向上的扩散。详细研究了块的每个几何参数对薄膜冷却效果的影响。

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