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Optimization of the configuration of the laidback fan-shaped film cooling hole with a lateral expansion angle of 10 degrees

机译:横向膨胀角为10度的智乐扇形薄膜冷却孔的配置优化

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摘要

Film cooling techniques have been widely applied to gas turbine engines to protect the components from hot combustion gas. In this study, the shape of the laidback fan-shaped hole with a lateral expansion angle of 10 degrees was optimized through the Reynolds Averaged Navier-Stokes (RANS) analysis. Results by numerical analysis were validated with the corresponding experimental results obtained by the pressure sensitive paint technique (PSP). For optimal hole shape derivation, the design points were selected through the Latin Hypercube Sampling (LHS) method for three design variables: injection angle, metering length, and forward expansion angle. The overall averaged effectiveness was used as the objective function. Results showed that the overall film cooling effectiveness of the optimal holes derived by the response surface method and the Kriging method were higher than that of the reference hole by 4.5% and 7.5%, respectively. Generally, holes with a higher area ratio (AR) showed higher overall film cooling effectiveness. However, the interaction between each shape parameter should be considered to derive the optimal hole shape.
机译:薄膜冷却技术已广泛应用于燃气涡轮发动机,以保护组件免受热燃烧气体。在该研究中,通过雷诺平均Navier-Stokes(RAN)分析,优化了具有10度的横向膨胀角度为10度的横向膨胀角的斜扇形孔的形状。通过压敏涂料技术(PSP)获得的相应实验结果验证了通过数值分析的结果。为最佳孔形状推导,通过拉丁超立体采样(LHS)方法选择设计点,用于三个设计变量:注射角,计量长度和前向扩展角度。总体平均效果被用作目标函数。结果表明,响应面法衍生的最佳孔的整体膜冷却效能分别高于参考孔的最佳孔的效果分别高4.5%和7.5%。通常,具有较高面积比(AR)的孔显示出更高的总膜冷却效果。然而,应考虑每个形状参数之间的相互作用来导出最佳孔形状。

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