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Investigations into film cooling and unsteady flow characteristics in a blade trailing-edge cutback region

机译:在刀片后边缘削减区域中的薄膜冷却和非定常流动特性的研究

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摘要

Unsteady flow characteristic and film cooling effect in the blade trailing edge cutback region are numerically investigated using DES (detached eddy simulation) method at three blowing ratios, four lip thickness ratios and three rib geometries. With the experimental data, reliability and accuracy of the numerical methods are validated. The results indicate that, compared with RANS (Reynolds-averaged Navier-Stokes) equations solutions, the DES method has a superior accuracy in predicting the film cooling effectiveness on trailing-edge cutback. The lip thickness has a pronounced effect on shedding vortex scale downstream the slot. As the lip thickness ratio decreases, the film cooling effect on trailing edge cutback is improved. Compared with the line ribs, the arrangement of pin fin ribs enhances the uniformity of coolant coverage on trailing edge cutback along lateral direction. However, with different types of rib, the film cooling effectiveness on the trailing edge cutback is mainly determined by the stable cooling flow structures and mixing effect between mainstream and coolant. The development of vortex system downstream the slot is significantly affected by the blowing ratio, which in turn influences the film cooling effect on trailing edge cutback.
机译:在三个吹风比,四个唇厚度比和三个肋形几何形状中使用DES(分离的涡流模拟)方法进行数值研究叶片后边缘切割区域中的不稳定流动特性和膜冷却效果。通过实验数据,验证了数值方法的可靠性和准确性。结果表明,与RAN(雷诺平均Navier-Stokes)方程溶液相比,DES方法具有卓越的精度,可以预测封端削减的薄膜冷却效果。唇厚对槽下游的脱落涡流尺度具有明显的影响。随着唇厚比降低,改善了对后缘削减的薄膜冷却效果。与线肋相比,销鳍肋的布置增强了沿横向方向的后缘削减上的冷却剂覆盖的均匀性。然而,利用不同类型的肋条,后缘削减的薄膜冷却效果主要由稳定的冷却流动结构和主流和冷却剂之间的混合效果决定。下游的涡流系统的发展在槽中受到吹吹比的显着影响,这反过来影响薄膜冷却效应对后缘削减。

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