首页> 外文会议>ASME turbo expo conference >INFLUENCE OF DISCRETE PIN SHAPED SURFACE ROUGHNESS (P-PINS) ON HEAT TRANSFER AND AERODYNAMICS OF FILM COOLED AEROFOIL
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INFLUENCE OF DISCRETE PIN SHAPED SURFACE ROUGHNESS (P-PINS) ON HEAT TRANSFER AND AERODYNAMICS OF FILM COOLED AEROFOIL

机译:离散销形表面粗糙度(P-PIN)对薄膜冷却翼型热传递和空气动力学的影响

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The influence of localized pin-shaped surface roughness (P-Pins) on heat transfer and aerodynamics of a fully film cooled engine aerofoil has been studied in a transonic annular cascade. The "P-Pins", present on some casting film cooled turbine blades and vanes, are the residues left in the manufacturing process. This paper investigates the effect of the P-Pins on the aerodynamic performance and measures the heat transfer consequences both for the aerofoils and the P-Pins. The effect on performance was determined independently on the pressure and suction surface of the aerofoil. For comparison, the aerofoil without P-Pins was also tested to provide baseline results. The measurements have been made at engine representative Mach and Reynolds numbers. Wide band liquid crystal and direct heat flux gauge technique were employed in the heat transfer tests. A four-hole pyramid probe was used to obtain the aerodynamic data. The aerodynamic and thermodynamic characteristics of the coolant flow have been modelled to represent engine conditions by using a heavy "foreign gas" (30.2% SF_6 and 69.8% Ar by weight). The paper concludes that P-Pins as usually placed on the blade do not have detrimental effects to the heat transfer performance of film-cooled aerofoil. P-Pins, located in thick boundary layer regions of the aerofoil, such as the later portion of the suction surface, do not cause any reduction of aerofoil aerodynamic efficiency. For contrast, the P-Pins located in the thin boundary layer regions on the pressure side of the aerofoil cause noticeably more losses.
机译:延长环形环形级联研究了局部销形表面粗糙度(P-PIN)对全膜冷却发动机空气的热传递和空气动力学的影响。存在于一些铸造薄膜冷却的涡轮机叶片和叶片上的“P-PIN”是制造过程中留下的残留物。本文研究了P引脚对空气动力学性能的影响,测量翼型和P引脚的传热后果。对性能的影响独立地确定了机翼的压力和吸入表面。为了比较,还测试了没有P-PIN的翼型以提供基线结果。已经在发动机代表马赫和雷诺数进行测量。在传热试验中使用宽带液晶和直接热通量计技术。使用四孔金字塔探针来获得空气动力学数据。冷却剂流动的空气动力学和热力学特性已经建模以通过使用重“异物”(30.2%SF_6和69.8%AR重量)来表示发动机条件。本文得出结论,通常放置在叶片上的P引脚对薄膜冷却机身的传热性能没有不利影响。位于厚边界层区域的P引脚,例如抽吸表面的后部部分,不会导致空气动力学效率的任何降低。为了对比,位于机翼的压力侧的薄边界层区域中的P引脚引起更大的损失。

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