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Experimental Study of Heat Transfer Augmentation Near the Entrance to a Film Cooling Hole in a Turbine Blade Cooling Passage

机译:涡轮叶片冷却通道中膜冷却孔入口附近强化传热的实验研究

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摘要

Film cooling is extensively used by modern gas turbine blade designers as a means of limiting the blade temperature when exposed to extreme combustor outlet temperatures. The following paper describes an experimental study of heat transfer near the entrance to a film cooling hole in a turbine blade cooling passage. Steady state heat transfer results were acquired by using a transient measurement technique in a 40 times actual rectangular channel, representative of an internal cooling channel of a turbine blade. Platinum thin film gauges were used to measure the inner surface heat transfer augmentation as a result of thermal boundary layer renewal and impingement near the entrance of a film cooling hole. Measurements were taken at various suction ratios, extraction angles, and wall temperature ratios with a main duct Reynolds number of 25,000. A numerical technique based on the resolution of the unsteady conduction equation, using a Crank-Nicholson scheme, is used to obtain the surface heat flux from the measured surface temperature history. Computational fluid dynamics predictions were also made to provide better understanding of the near-hole flow. The results show extensive heat transfer enhancement as a function of extraction angle and suction ratio in the near-hole region and demonstrate good agreement with a corresponding study. Furthermore it was shown that the effect of a wall-to-coolant ratio is of a second order and can therefore be considered negligible compared with the primary variables such as the suction ratio and extraction angle.
机译:当暴露于极端的燃烧器出口温度时,现代燃气涡轮叶片设计者广泛使用薄膜冷却来限制叶片温度。以下论文描述了涡轮叶片冷却通道中薄膜冷却孔入口附近传热的实验研究。稳态传热结果是通过使用瞬态测量技术在代表涡轮叶片内部冷却通道的40倍实际矩形通道中获得的。铂薄膜量规用于测量由于热边界层更新和薄膜冷却孔入口附近撞击而导致的内表面传热增加。在不同的吸气比,抽气角和壁温比下进行测量,主导管雷诺数为25,000。使用基于Crank-Nicholson方案的基于非稳态传导方程的分辨率的数值技术,可从测量的表面温度历史记录中获取表面热通量。还进行了计算流体动力学预测,以更好地了解近井流动。结果表明,在近孔区域,传热的增强与抽气角和吸力比的函数关系密切,与相应的研究结果吻合良好。此外,还显示出壁与冷却剂之比的影响是第二级的,因此与诸如抽吸比和抽气角度之类的主要变量相比,可以忽略不计。

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