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首页> 外文期刊>International Journal of Thermal Sciences >Effect of internal coolant crossflow on the film cooling performance of converging slot hole
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Effect of internal coolant crossflow on the film cooling performance of converging slot hole

机译:内部冷却剂横流对趋槽孔薄膜冷却性能的影响

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摘要

The effect of crossflow Reynolds number on the film cooling characteristics was investigated on low speed flat-plate facility. The film cooling performance was measured by transient liquid-crystal technique and the flow feature was obtained by numerical simulation. Two film hole cases, converging slot hole case and cylindrical hole case, were carried out at two crossflow Reynolds numbers, Re-c = 50,000 and 100,000 and three blowing ratios, M = 0.5, 1.0 and 2.0. For cylindrical hole, high Reynolds number deteriorates the film cooling effectiveness at blowing ratio of 0.5. However, better film coverages are observed at M = 1.0 and 2.0. At each blowing ratio, high crossflow Reynolds number produces higher heat transfer for cylindrical hole case. The converging slot hole case presents better film coverage in whole region. The film cooling effectiveness and heat transfer are not sensitive to the crossflow at each blowing ratio. Discharge coefficients of two holes are increased as increasing of blowing ratio, while the high crossflow Reynolds number deteriorates the discharge of flow. The numerical results indicate that the different performance of film cooling between two kinds of holes at crossflow condition is mainly attributed to the different development of in-tube vortex.
机译:在低速平板设施上研究了横流雷诺数对薄膜冷却特性的影响。通过瞬态液晶技术测量膜冷却性能,通过数值模拟获得流动特征。两个薄膜空穴箱,会聚槽孔壳和圆柱形孔壳,在两个横向雷诺数,RE-C = 50,000和100,000和三个吹气比,m = 0.5,1.0和2.0。对于圆柱孔,高雷诺数在吹吹效率为0.5时劣化膜冷却效果。但是,在M = 1.0和2.0时观察到更好的胶片覆盖范围。在每个吹风比下,高交叉流雷诺数为圆柱形孔壳产生较高的传热。融合槽孔外壳在整个区域中呈现更好的胶片覆盖。薄膜冷却效果和传热对每个吹气比的横流不敏感。增加两个孔的放电系数随着吹出比的增加而增加,而高横向雷诺数劣化流动的放电。数值结果表明,在十字流条件下两种孔之间的薄膜冷却的不同性能主要归因于管涡的不同发育。

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