首页> 外文会议>ASME international mechanical engineering congress and exposition >INJECTION ANGLE INFLUENCE OF SECONDARY HOLES ON THE ENHANCEMENT OF FILM COOLING EFFECTIVENESS WITH HORN-SHAPED OR CYLINDRICAL PRIMARY HOLES
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INJECTION ANGLE INFLUENCE OF SECONDARY HOLES ON THE ENHANCEMENT OF FILM COOLING EFFECTIVENESS WITH HORN-SHAPED OR CYLINDRICAL PRIMARY HOLES

机译:二次孔的注射角度对增强角形或圆柱状初级孔的膜冷却效果的影响

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Secondary holes to a main film cooling hole are used to improve film cooling performance by creating anti-kidney vortices. The effects of injection angle of the secondary holes on both film cooling effectiveness and surrounding thermal and flow fields are investigated in this numerical study. Two kinds of primary hole shapes are adopted. One is a cylindrical hole, the other is a horn-shaped hole which is designed from a cylindrical hole by expanding the hole in the transverse direction to double the hole size at the exit. Two smaller cylindrical holes, the secondary holes, are located symmetrically about the centerline and downstream of the primary hole. Three compound injection angles (a=30°, 45° and 60°, p=30°) of the secondary holes are analyzed while the injection angle of the primary hole is kept at 45°. Cases with various blowing ratios are computed. It is shown from the simulation that cooling effectiveness of secondary holes with a horn-shaped primary hole is better than that with a cylindrical primary hole, especially at high blowing ratios. With a cylindrical primary hole, increasing inclination angle of the secondary holes provides better cooling effectiveness because the anti-kidney vortices created by shallow secondary holes cannot counteract the kidney vortex pairs adequately, enhancing mixing of main flow and coolant. For secondary holes with a horn-shaped primary hole, large secondary hole inclination angles provide better cooling performance at low blowing ratios; but, at high blowing ratios, secondary holes with small inclination angles are more effective, as the film coverage becomes wider in the downstream area.
机译:主膜冷却孔的辅助孔用于通过产生反肾脏涡流来提高膜冷却性能。在此数值研究中,研究了次级孔的注入角对薄膜冷却效率以及周围的热流场的影响。采用两种主要的孔形状。一个是圆柱孔,另一个是喇叭形孔,它是通过从圆柱孔沿横向扩展孔以使出口处的孔尺寸加倍而设计的。两个较小的圆柱孔,即次要孔,围绕中心线对称且位于主要孔的下游。在将主孔的喷射角保持在45°的同时,分析了副孔的三个复合喷射角(a = 30°,45°和60°,p = 30°)。计算具有各种吹风比的情况。从仿真中可以看出,带有喇叭形初级孔的次级孔的冷却效果要比具有圆柱形初级孔的次级孔的冷却效果更好,特别是在高吹塑比的情况下。对于圆柱形的主孔,增加副孔的倾斜角度可提供更好的冷却效果,因为由浅副孔形成的反肾脏旋涡无法充分抵消肾脏涡对,从而增强了主流和冷却液的混合。对于带有角形初级孔的次级孔,较大的次级孔倾角可在低鼓风比下提供更好的冷却性能。但是,在高吹塑比的情况下,倾斜角较小的二次孔更有效,因为下游区域的薄膜覆盖范围变宽。

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