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Experimental study on film cooling and heat transfer characteristics of a twisted vane with staggered counter-inclined film-hole and laid-back-shaped-hole

机译:交错抗倾斜薄膜孔和铺设背形孔扭叶片薄膜冷却和传热特性的实验研究

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The present study first proposes the counter-inclined film-hole with the staggered arrangement applied on the vane leading edge. The film cooling effectiveness (η) distribution of a twisted vane with the new cooling scheme of the leading edge and laid-back-shaped-holes is measured by the pressure Sensitive Paint (PSP) technique in a fan-shaped wind tunnel. The transient Thermochromic Liquid Crystal (TLC) technique is used to measure the heat transfer coefficient (h). The effects of density ratios and mass flow ratios (blowing ratios) are studied. The experiments are carried out at four mass flow ratios 12%, 9%, 8%, and 7.5% and three density ratios 1.0, 1.5, and 2.0. The pressure in the mid-span of the vane is measured to understand the η and h distributions. The results indicate that the increase rate of the span-wise averaged η upstream of the pressure surface is more prominent with the density ratio increasing from 1.0 to 1.5, and the maximum is about 86.9%; whereas increasing the density ratio from 1.5 to 2.0 significantly improves the span-wise averaged η of the suction surface. Increasing mass flow rates of the trailing and leading cavities has positive effects on the η of the whole vane surface except for the leading edge near the end wall at the density ratio 1.5; whereas it only increases the η on the pressure surface at the density ratio 1. Increasing the mass flow ratio of the leading cavity from 7% to 10% increases the h ratio of the whole cane, and it enlarges the high h ratio of leading edge the mid-chord regions at the suction side. The span-wise averaged heat flux ratio in the region between film hole rows at the density ratio 1.5 is lower than that at the density ratio 1.
机译:本研究首先提出了具有交错布置的反倾斜膜孔,其施加在叶片前缘。通过扇形风洞中的压敏涂料(PSP)技术测量具有前缘和铺设孔的新冷却方案的薄膜冷却效果(η)分布。瞬态热致变色液晶(TLC)技术用于测量传热系数(H)。研究了密度比率和质量流量比(吹出比率)的影响。该实验以四种质量流量比12%,9%,8%和7.5%和三密度比1.0,1.5和2.0进行。测量叶片中间跨度中的压力以了解η和H分布。结果表明,压力表面上游的跨度平均η的增加率与1.0至1.5增加的密度比增加,最大约为86.9%;虽然将密度比从1.5〜2.0增加,显着改善了吸入表面的跨度平均η。除了在密度比为1.5的端壁附近的前缘外,落后和前腔的增加质量流量对整个叶片表面的η具有正效应;然而,它只将η以密度比增加了压力表面1.增加了前腔的质量流量比7%至10%增加了整个拐杖的H比,并且它扩大了前缘的高H比率吸入侧的中弦区。在密度比为1.5的膜孔行之间的区域中的跨度平均热通量比率低于密度比1的区域。

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