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Effect of Blowing Ratio on Film Cooling Effectiveness of Cylindrical and Shaped Holes

机译:吹塑比对圆柱孔和异形孔冷却效果的影响

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Film cooling is vital to allow for high temperatures and pressures at inlet of gas turbines to cope with the continuous demand of power and efficiency. To optimize distribution of film-cooling effectiveness, improvements have been made to the shape of the cooling hole. Effects such as orientation angles, length-to-diameter ratio, hole spacing-to-diameter ratio, blowing ratio, density ratio and temperature ratio have been studied, influencing heat transfer coefficients and film cooling effectiveness. The present literature studies the effect of blowing ratio on local and spatially-averaged cooling effectiveness for two geometries, namely classical cylindrical holes and shaped (laidback fan-shaped) holes at lateral and forward diffusion angles of 10° each. Blowing ratio was varied over the values 0.5, 1 and 2 and it was concluded that it negatively affects the effectiveness of cylindrical hole effectiveness, but enhances that of shaped holes. This is due to lift-off phenomenon that occurs at zero diffusion angles, and hence reduces the effectiveness with increase of blowing ratio.
机译:薄膜冷却对于在燃气轮机入口处允许高温和高压以应对功率和效率的持续需求至关重要。为了优化膜冷却效率的分布,已经对冷却孔的形状进行了改进。研究了取向角,长径比,孔距直径比,吹塑比,密度比和温度比等对传热系数和薄膜冷却效率的影响。本文献研究了鼓风比对两个几何形状的局部和空间平均冷却效率的影响,这两个几何形状分别是传统的圆柱孔和侧向和向前扩散角均为10°的成形(后置扇形)孔。吹塑比在值0.5、1和2上变化,可以得出结论,它对圆柱孔的有效性产生负面影响,但对异形孔的效果却有所增强。这是由于在零扩散角处发生的剥离现象,因此随着吹塑比的增加而降低了有效性。

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