首页> 外文会议>ASME (American Society of Mechanical Engineers) Turbo Expo 2002: Heat Transfer Manufacturing Materials and Metallurgy >EVALUATION OF PRESSURE SIDE FILM COOLING WITH FLOW AND THERMAL FIELD MEASUREMENTS, PART Ⅱ: TURBULENCE EFFECTS
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EVALUATION OF PRESSURE SIDE FILM COOLING WITH FLOW AND THERMAL FIELD MEASUREMENTS, PART Ⅱ: TURBULENCE EFFECTS

机译:带有流动和热场测量的压力侧膜冷却的评估,第二部分:湍流效应

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This study focused on the film cooling performance on the pressure side of a turbine vane subjected to high mainstream turbulence levels, with and without showerhead blowing. Whereas previous studies have measured the adiabatic effectiveness and heat transfer at the surface of the airfoil, the goal of this study was to examine the flow and thermal fields above the surface. These measurements included flow visualization, thermal profiles, and laser Doppler velocimetry. For comparison, adiabatic effectiveness was also measured. A mainstream turbulence level of Tu_∞ = 20%, with integral length scale of seven hole diameters, was used. Particularly insightful is the discovery that the large scale high mainstream turbulence causes a lateral oscillation of coolant jet resulting in a much wider time average distribution of coolant. Even with high mainstream turbulence, showerhead blowing was found to still cause a significantly increased dispersion of the pressure side coolant jets.
机译:这项研究的重点是在有和没有喷头的情况下,在承受高主流湍流水平的涡轮叶片压力侧的薄膜冷却性能。尽管先前的研究已经测量了机翼表面的绝热效果和传热,但这项研究的目的是检查表面上方的流场和热场。这些测量包括流动可视化,热剖面和激光多普勒测速仪。为了比较,还测量了绝热效果。使用的主流湍流度为Tu_∞= 20%,积分长度比例为七个孔直径。特别有见地的发现是,大规模的高主流湍流会导致冷却液射流的横向振荡,从而导致冷却液的时间平均分布范围更广。即使主流风湍流很大,喷头的喷吹仍会导致压力侧冷却剂射流的扩散明显增加。

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