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Conjugate Heat Transfer and Film Cooling of a Multi-Stage Cooling Scheme

机译:多阶段冷却方案的共轭传热和膜冷却

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Cooling techniques play a key role in improving efficiency and power output of modern gas turbines. The conjugate technique of film and impingement cooling schemes is considered in this study. The Multi-Stage Cooling Scheme (MSCS) involves coolant passing from inside to outside turbine blade through two stages. The first stage; the coolant passes through first hole to internal gap where the impinging jet cools the external layer of the blade. Finally, the coolant passes through the internal gap to the second hole which has specific designed geometry for external film cooling. The effect of design parameters, such as, offset distance between two-stage holes, gap height, and inclination angle of the first hole, on upstream conjugate heat transfer rale and downstream film cooling effectiveness performance are investigated computationally. An Inconel 617 alloy with variable properties is selected for the solid material. The conjugate heat transfer and film cooling characteristics of MSCS are analyzed across blowing ratios of Br = 1 and 2 for density ratio, 2. This study presents upstream wall temperature distributions due to conjugate heat transfer for different gap design parameters. The maximum film cooling effectiveness with upstream conjugate heat transfer is less than adiabatic film cooling effectiveness by 24-34%. However, the full coverage of cooling effectiveness in spanwise direction can be obtained using internal cooling with conjugate heat transfer, whereas adiabalic film cooling effectiveness has narrow distribution.
机译:冷却技术在提高现代燃气轮机的效率和功率输出中起关键作用。在这项研究中考虑了薄膜和冲击冷却方案的共轭技术。多级冷却方案(MSCS)涉及冷却剂从内到外通过两级涡轮叶片传递。第一阶段;冷却剂通过第一孔到达内部间隙,在此处冲击射流冷却叶片的外层。最后,冷却剂通过内部间隙到达第二孔,第二孔具有专门设计的用于外部薄膜冷却的几何形状。通过计算研究了设计参数,例如两级孔之间的偏移距离,间隙高度和第一个孔的倾斜角度,对上游共轭传热规则和下游薄膜冷却效率的影响。选择具有可变特性的Inconel 617合金作为固体材料。针对密度比为2的Br = 1和2的吹塑比,分析了MSCS的共轭传热和薄膜冷却特性。该研究提出了由于不同间隙设计参数的共轭传热引起的上游壁温分布。上游共轭传热的最大薄膜冷却效率比绝热薄膜冷却效率低24-34%。然而,使用具有共轭传热的内部冷却可以在翼展方向上完全覆盖冷却效率,而绝热膜的冷却效率分布较窄。

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