首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >HEAT TRANSFER COEFFICIENT AUGMENTATION FOR A SHAPED FILM COOLING HOLE AT A RANGE OF COMPOUND ANGLES
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HEAT TRANSFER COEFFICIENT AUGMENTATION FOR A SHAPED FILM COOLING HOLE AT A RANGE OF COMPOUND ANGLES

机译:在一系列复合角度的成型膜冷却孔的传热系数增加

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Shaped film cooling holes are used to efficiently deliver coolant to the surface of a gas turbine part to keep metal temperatures low. The ultimate goal of film cooling is to reduce the heat flux into a component, relative to a case with no coolant injection. This reduction in heat flux is primarily achieved via a lower driving temperature at the wall for convection, represented by the adiabatic effectiveness. Another important consideration, however, is how the disturbance to the flowfield and thermal field caused by the injection of coolant augments the heat transfer coefficient. The present study examines the spatially-resolved heat transfer coefficient augmentation for a shaped film cooling hole at a range of compound angles, using a constant heat flux foil and IR thermography. Results show that the heat transfer coefficient increases with compound angle and with blowing ratio. Due to the unique asymmetric flowfield of a compound angle hole, a significant amount of augmentation occurs to the side of the film coolingjet, where very little coolant is present. This causes local regions of increased heat flux, which is counter to the goal of film cooling. Heat transfer results are compared with adiabatic effectiveness and flowfield measurements from a previous study.
机译:形薄膜冷却孔被用于有效地提供冷却剂到燃气涡轮机部件的表面,以保持金属温度低。膜冷却的最终目标是减少热通量相对于与没有冷却剂喷射的情况下的成分,。这种减少热通量主要是在壁对流,通过绝热有效性表示经由较低的驱动温度来实现。另一个重要的考虑,但是,是干扰引起的冷却剂的喷射流场和热场如何增强了热传递系数。本研究探讨了的成形薄膜在一定范围的角度化合物的冷却孔的空间分辨传热系数增大,使用恒定的热通量箔和红外热。结果表明,与化合物角度,并与吹风比传热系数增大。由于复合角孔的独特的非对称流场,增强的显著量发生于膜coolingjet,其中非常小的冷却剂是本侧。这会导致增加的热通量,这是计数器的薄膜冷却的目标的局部区域。传热结果与绝热效果和流场测量从先前的研究相比较。

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