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首页> 外文期刊>International Journal of Heat and Mass Transfer >Experimental optimization of a fan-shaped film cooling hole with 30 degrees-injection angle and 6-hole length-to-diameter ratio
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Experimental optimization of a fan-shaped film cooling hole with 30 degrees-injection angle and 6-hole length-to-diameter ratio

机译:喷射角为30度且长径比为6的扇形薄膜冷却孔的实验优化

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摘要

In this study, the effect of the shape parameters of fan-shaped holes on film cooling effectiveness was experimentally investigated and the optimum values of each shape parameter to maximize the overall averaged film cooling effectiveness were presented. Among the shape parameters of a fan-shape hole, the injection angle and the hole length to diameter ratio (L/D) were fixed as 30 degrees and 6, respectively, and the three shape parameters, the forward expansion angle, the lateral expansion angle, and the metering length ratio, were selected as variables. The design points of each parameter were selected using the Box-Behnken design method, and the optimized values of each parameter were obtained using RSM (Response Surface Methodology). The film cooling effectiveness was measured using the PSP (pressure sensitive paint) technique. The experiment was conducted under the condition of two density ratios (1.0 and 2.0) and four blowing ratios (1.0, 1.5, 2.0, and 2.5). Results showed that the film cooling effectiveness was generally higher for the higher density ratio condition, but the effect of the blowing ratio was not consistent. The main effect analysis showed that film cooling effectiveness increased as the forward and the lateral expansion angles increased, and the metering length became shorter. However, optimization results showed that the optimized hole had a smaller forward expansion angle due to the interaction effect between each shape parameter. The film cooling effectiveness of the optimized hole was higher than that of the reference hole by 52.4% near the gas turbine operating condition. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,实验研究了扇形孔的形状参数对薄膜冷却效果的影响,并提出了每个形状参数的最佳值,以最大化整体平均薄膜冷却效果。在扇形孔的形状参数中,注入角和孔长径比(L / D)分别固定为30度和6,三个形状参数,即正向膨胀角,横向膨胀选择角度和计量长度比作为变量。使用Box-Behnken设计方法选择每个参数的设计点,并使用RSM(响应表面方法)获得每个参数的优化值。使用PSP(压敏涂料)技术测量薄膜的冷却效果。实验是在两个密度比(1.0和2.0)和四个吹风比(1.0、1.5、2.0和2.5)的条件下进行的。结果表明,在较高的密度比条件下,薄膜的冷却效率通常较高,但吹塑比的效果不一致。主效应分析表明,薄膜的冷却效率随着向前和横向膨胀角的增加而增加,并且计量长度变短。然而,优化结果表明,由于每个形状参数之间的相互作用,优化后的孔具有较小的前向膨胀角。在燃气轮机运行条件下,优化孔的薄膜冷却效率比参考孔高52.4%。 (C)2019 Elsevier Ltd.保留所有权利。

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