首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >EFFECTS OF SHAPE AND ARRANGEMENT OF DIMPLES ON FILM COOLING PERFORMANCE OVER CUTBACK SURFACE AT AIRFOIL TRAILING EDGE
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EFFECTS OF SHAPE AND ARRANGEMENT OF DIMPLES ON FILM COOLING PERFORMANCE OVER CUTBACK SURFACE AT AIRFOIL TRAILING EDGE

机译:凹坑形状和布置对翼型封坑表面封堵表面薄膜冷却性能的影响

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Trailing edge of a gas turbine blade is under very high thermal load because both sides are exposed to hot mainstream. The cooling film ejected from slots has to protect the cutback surface from the hot mainstream, and remove the heat from the surface. In this study, the film Cooling performance of cutback surfaces with two types of dimples, spherical and teardrop-shaped dimples, were experimentally investigated with a transient infrared thermography method. Also, to examine the effects of arrangements, two different arrangements of the teardrop-shaped dimples, which are parallel and inclined to mainstream, were investigated. The dimples were arranged in two rows on the cutback surfaces. The Reynolds number of mainstream defined by the mean velocity and hydraulic diameter was 20,000, and profiles of local heat transfer coefficient and film cooling effectiveness on the cutback surface were measured for blowing ratios of 0.5-2.0. With the parallel teardrop-shaped dimples, reduction of the heat transfer in the upstream portion was less than that of the spherical dimples, and the heat transfer at downstream rims was higher. In the case of the inclined teardrop-shaped dimples, heat transfer enhancement at the downstream rims was higher than that of parallel one, and overall heat transfer coefficient was also higher. The film cooling effectiveness of all cases are almost equal values, namely, the dimpled surfaces could enhance heat transfer without reduction of the film cooling effectiveness; consequently significant cooling performance improvement was obtained for the teardrop-shaped dimple cases, especially with the introduction of inclined arrangement.
机译:燃气轮机叶片的后缘承受非常高的热载荷,因为两侧都暴露在热门主流。从槽中喷射的冷却膜必须从热主流保护倒塌表面,并从表面上除去热量。在该研究中,用瞬态红外热成像法实验研究了具有两种类型的凹槽,球形和泪珠形凹槽的倒钩表面的薄膜冷却性能。而且,为了检查布置的影响,研究了两种不同的泪珠状凹槽的布置,它们平行并倾向于主流。凹坑布置在封堵表面上的两排。由平均速度和液压直径定义的雷诺数的主流次数为20,000,测量局部传热系数和薄膜冷却效果的型吹送比率为0.5-2.0。利用平行的泪珠形凹坑,上游部分中的传热的减小小于球形凹坑的传热,并且下游轮辋的热传递更高。在倾斜的泪珠形凹坑的情况下,下游边缘的热传递增强高于平行的传热增强,并且总传热系数也更高。所有情况的薄膜冷却效果几乎是等值,即凹陷表面可以增强传热而不降低薄膜冷却效果;因此,为泪滴形凹坑病例获得了显着的冷却性能改善,特别是在引入倾斜排列。

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