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TURBULENCE AND HEAT TRANSFER MEASUREMENTS IN AN INCLINED LARGE SCALE FILM COOLING ARRAY- PART I, VELOCITY AND TURBULENCE MEASUREMENTS

机译:倾斜大型薄膜冷却阵列中的湍流和传热测量-第一部分,速度和湍流测量

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A large-scale model of an inclined row of film cooling holes is used to obtain detailed surface and flow field measurements that will enable future computational fluid dynamics code development and validation. The model consists of three holes of 1.9-cm diameter that are spaced 3 hole diameters apart and inclined 30° from the surface. The length to diameter ratio of the coolant holes is about 18. Measurements include film effectiveness using IR thermography and near wall thermocouples, heat transfer using liquid crystal thermography, flow field temperatures using a thermocouple, and velocity and turbulence quantities using hotwire anemometry. Results are obtained for blowing ratios of up to 2 in order to capture severe conditions in which the jet is lifted. This first part of the two-part paper presents the detailed velocity component and turbulence stresses along the centerline of the film-cooling hole and at various streamwise locations.
机译:倾斜行的倾斜行冷却孔的大规模模型用于获得将使未来的计算流体动力学编码和验证能够实现详细的表面和流场测量。该模型由三个1.9厘米直径的三孔组成,间隔3个孔直径,距离表面倾斜30°。冷却剂孔的长度为约18.测量包括使用IR热成像和靠近壁热电偶的薄膜效果,使用液晶热成像,使用热电偶的流场温度,使用Hotwire风速度的速度和湍流量。获得最多2的吹风比率,以捕获射流抬起的严重条件。双部分纸的第一部分呈现沿着薄膜冷却孔的中心线和各种流动位置的详细速度分量和湍流应力。

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