首页> 外文会议>ASME international mechanical engineering congress and exposition >EFFECT OF BREAKOUT ANGLE ON TRIPOD INJECTION HOLE GEOMETRIES ON FLAT PLATE FILM COOLING
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EFFECT OF BREAKOUT ANGLE ON TRIPOD INJECTION HOLE GEOMETRIES ON FLAT PLATE FILM COOLING

机译:裂口角度对平板镀膜冷却的三脚架注射孔几何形状的影响

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In this study, effect of breakout angle of side holes from the main hole in a tripod hole design on film cooling performance is evaluated on a flat plate surface with steady-state IR (infrared thermography) technique. The designs are compared a cylindrical hole design inclined at 30° from the surface with pitch-to-diameter ratio of 3.0 and a shaped hole design, which is identical to the cylindrical hole design with the addition of adding a 10° flare and laydown to the exit on the mainstream surface. The two tripod hole designs are one where the two side holes, also of the same diameter, branch from the root at a 15° angle while maintaining the same 30° inclination as the cylindrical and shaped designs witha pitch-to-diameter ratio between the main holes for this design is 6.0. The other tripod hole design is a modified tripod hole design that increases the branch angle to 30°, which has the added effect of increasing the pitch-to-diameter ratio between the main holes to 7.5. Two secondary fluids - air and carbon-dioxide - were used to study the effects of coolant-to-mainstream density ratio (DR= 0.95 and 1.45) on film cooling effectiveness. Several blowing ratios in the range 0.5 -4.0 were investigated independently at the two density ratios. Results show that the tripod hole design provides similar film cooling effectiveness as the shaped hole case with overall reduced coolant usage. Increasing the breakout angle from 15° to 30° reduces overall cooling effectiveness but increases jet-to-jet interactions.
机译:在这项研究中,利用稳态IR(红外热成像)技术在平板表面上评估了三脚架孔设计中侧孔从主孔的破裂角度对薄膜冷却性能的影响。比较了这些设计的圆柱孔设计(相对于表面倾斜30°,螺距与直径之比为3.0)和异型孔设计,该形状与圆柱孔设计相同,但增加了10°的扩口和下垂。主流表面上的出口。两种三脚架孔设计是这样的,其中两个同样直径相同的侧孔以15°的角度从根部分支出来,同时保持与圆柱状和异形设计相同的30°倾斜度,且两者之间的螺距与直径之比为此设计的主要孔为6.0。另一种三脚架孔设计是一种改进的三脚架孔设计,将分支角度增加到30°,具有将主孔之间的螺距与直径之比增加到7.5的附加效果。两种二次流体-空气和二氧化碳-用于研究冷却剂与主流密度比(DR = 0.95和1.45)对薄膜冷却效果的影响。在两个密度比下,分别研究了0.5 -4.0范围内的几种发泡比。结果表明,三脚架孔设计可提供与异型孔盒类似的薄膜冷却效果,并且总体上减少了冷却液用量。突围角度从15°增加到30°会降低整体冷却效率,但会增加射流之间的相互作用。

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