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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Numerical predictions of flow and heat transfer of film cooling with an internal channel roughened by crescent ribs
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Numerical predictions of flow and heat transfer of film cooling with an internal channel roughened by crescent ribs

机译:用新月肋粗糙化的薄膜冷却流量和传热的数值预测

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This study explores the effects of crescent ribs mounted in an internal cooling channel on the external adiabatic film cooling performance to evaluate the advantage of crescent ribs in gas turbine blade cooling. Three ribs including a transverse rib, a crescent rib concave to the stream-wise direction, and a crescent rib convex to the stream-wise direction are considered. For a fixed mainstream flow Reynolds number, two cross-flow Reynolds numbers and two blowing ratios are taken into account. The results show that the case with a crescent rib concave to the stream-wise direction provides higher film cooling effectiveness both at the lower cross-flow Reynolds number and at the higher cross-flow Reynolds number with higher blowing ratio while the case with a crescent rib convex to the stream-wise direction performs worst at any condition. It is found that the longitudinal vortices produced by crescent ribs concave to the stream-wise direction can promote the cooling air entering the film hole while that induced by the other crescent ribs are nonbeneficial for the cooling air entering the hole. The results indicated that a lower spiral intensity leads to counter-rotating vortices with lower intensity and thus results in better cooling effectiveness. However, it makes a narrow coverage of the target surface by the coolant, which leads to disadvantages upon the cooling performance. The relative merits among the cases at different cross-flow Reynolds numbers and blowing ratios are investigated based on the dominating mechanism.
机译:本研究探讨了在外绝缘膜冷却性能上安装在内部冷却通道中的新月形肋的影响,以评估燃气涡轮叶片冷却中的新月形肋的优点。考虑了三个肋,包括横向肋,新月形肋凹入流向流方向,并且是流向流方向的新月形肋凸形。对于固定的主流流动雷诺数,考虑两个横流雷诺数和两个吹扫比率。结果表明,在流动方向上凹入弯曲肋的情况,在下横流雷诺数和较高的横流雷诺数,在具有更高的吹气比的情况下,在具有新月的情况下的较高的横流雷诺数提供更高的膜冷却效果。罗纹凸到流方向的方向在任何条件下执行最差。结果发现,由圆环肋凹入流方向的纵向涡流可以促进进入薄膜孔的冷却空气,而另一个新月形肋的诱导是不符合进入孔的冷却空气。结果表明,较低的螺旋强度导致具有较低强度的反向旋转涡流,从而导致更好的冷却效果。然而,它通过冷却剂使目标表面的窄覆盖率窄,这导致冷却性能时的缺点。根据主导机制研究了不同横流雷诺数和发泡比例的情况下的相对优点。

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