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Investigations of improved cooling effectiveness for ramp film cooling with compound angle film cooling jets

机译:随着复合角膜冷却喷射的坡道薄膜冷却改善冷却效能的研究

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Purpose This paper aims to investigate the film cooling effectiveness (FCE) and mixing flow characteristics of the flat surface ramp model integrated with a compound angled film cooling jet. Design/methodology/approach Three-dimensional numerical simulation is performed on a flat surface ramp model with Reynolds Averaged Navier-Stokes approach using a finite volume solver. The tested model has a fixed ramp angle of 24 degrees and a ramp width of two times the diameter of the film cooling hole. The coolant air is injected at 30 degrees along the freestream direction. Three different film hole compound angles oriented to freestream direction at 0 degrees, 90 degrees and 180 degrees were investigated for their performance on-ramp film cooling. The tested blowing ratios (BRs) are in the range of 0.9-2.0. Findings The film hole oriented at a compound angle of 180 degrees has improved the area-averaged FCE on the ramp test surface by 86.74% at a mid-BR of 1.4% and 318.75% at higher BRs of 2.0. The 180 degrees film hole compound angle has also produced higher local and spanwise averaged FCE on the ramp test surface. Originality/value According to the authors' knowledge, this study is the first of its kind to investigate the ramp film cooling with a compound angle film cooling hole. The improved ramp model with a 180 degrees film hole compound angle can be effectively applied for the end-wall surfaces of gas turbine film cooling.
机译:目的本文旨在研究与复合成角度薄膜冷却射流集成的平坦表面斜坡模型的薄膜冷却效果(FCE)和混合流动特性。设计/方法/方法使用有限音量求解器对雷诺平均Navier-Stokes方法进行了三维数值模拟。测试模型具有24度的固定斜坡角度,薄膜冷却孔的直径的斜坡宽度为24度。冷却剂空气沿着自由流方向以30度注入。针对0度,90度和180度的自由流方向取向的三个不同的薄膜空穴复合角度,以进行斜坡薄膜冷却。测试的吹气比(BRS)在0.9-2.0的范围内。发现在180度的复合角度以180度的薄膜孔在斜坡试验表面上以1.4%和318.75%在2.0的速度下改善了斜坡测试表面上的面积平均的FCE。 180度薄膜孔复合角也在斜坡测试表面上产生较高的局部和跨度平均的FCE。原创性/价值根据作者的知识,本研究是首先要使用复合角膜冷却孔来研究坡道薄膜冷却。可以有效地施加具有180度薄膜空穴复合角的改进的斜坡模型,用于燃气涡轮膜冷却的端壁表面。

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