首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Improvement in Film Cooling Effectiveness Using Single and Double Rows of Holes With Adverse Compound Angle Orientations
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Improvement in Film Cooling Effectiveness Using Single and Double Rows of Holes With Adverse Compound Angle Orientations

机译:使用具有不良复合角度取向的单行和双排孔的膜冷却效果的改善

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摘要

Three-dimensional Reynolds-averaged Navier-Stokes equations with shear stress transport turbulence model are used to analyze the film cooling effectiveness on a flat plate having single row of film hole involving cylindrical hole (CH) and laidback hole (LBH). The CH and LBH are inclined at 35 deg to the surface with a compound angle (beta) orientation ranging from favorable to adverse inclination (i.e., beta=0-180 deg) and examined at high and low blowing ratios (M = 1 .25 and 0.60). CH with an adverse compound angle of 135 deg gives the highest area-averaged film cooling effectiveness in comparison with LBH configuration. Also, CH beta=135 deg film hole shows a higher lateral coolant spread. Later, double jet film cooling (DJFC) concept is studied for this CH. In all the cases, the first hole compound angle is fixed as 135 deg, and the second hole angle is varied from 135 deg to 315 deg. At high blowing ratio, the dual jet cylindrical hole (DJCH) with beta=135 deg, 315 deg gives a higher area-averaged film cooling effectiveness by around 66.50% compared to baseline CH beta=0 deg. On comparing all CH, LBH, and DJCH cases, the highest area-averaged film cooling effectiveness is obtained by CH configuration with beta= 135 deg. Hence, the CH with its adverse compound angle (beta= 135 deg) orientation could be an appropriate film cooling configuration for gas turbine blade cooling.
机译:具有剪切应力输送湍流模型的三维雷诺平均纳维尔 - 斯托克斯方程用于分析具有涉及圆柱孔(CH)和悠闲孔(LBH)的单行薄膜孔的平板上的膜冷却效果。 CH和LBH以35°的表面倾斜,具有化合物角度(β)取向,从有利于不利倾斜(即,β= 0-180℃)并以高吹气比(M = 1.25)检查和0.60)。与LBH结构相比,CH具有135°的不利复合角度为最高的区域平均薄膜冷却效能提供了最高的区域平均薄膜冷却效果。而且,CHβ= 135°孔孔显示出更高的侧向冷却剂涂抹。后来,研究了双喷射膜冷却(DJFC)概念。在所有情况下,第一孔复合角度固定为135°,第二孔角度从135°变化到315°。在高吹吹量中,与基线CHβ= 0°相比,双喷射圆柱孔(DJCH)具有β= 135℃,315°的面积平均薄膜冷却效果约为66.50%。在比较所有CH,LBH和DJCH病例上,通过CH构型用β= 135度获得最高区域平均膜冷却效果。因此,具有不利复合角度(β= 135℃)取向的CH可以是用于燃气涡轮叶片冷却的适当薄膜冷却结构。

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