首页> 外文会议>ASME Turbo Expo >THE EFFECTS OF FREESTREAM TURBULENCE, TURBULENCE LENGTH SCALE AND EXIT REYNOLDS NUMBER ON TURBINE BLADE HEAT TRANSFER IN A TRANSONIC CASCADE
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THE EFFECTS OF FREESTREAM TURBULENCE, TURBULENCE LENGTH SCALE AND EXIT REYNOLDS NUMBER ON TURBINE BLADE HEAT TRANSFER IN A TRANSONIC CASCADE

机译:自由流湍流,湍流长度和出口雷诺数对跨音级级跨级级型汽轮机叶片热传递的影响

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This paper experimentally investigates the effect of high freestream turbulence intensity, turbulence length scale, and exit Reynolds number on the surface heat transfer distribution of a turbine blade at realistic engine Mach numbers. Passive turbulence grids were used to generate freestream turbulence levels of 2%, 12%, and 14% at the cascade inlet. The turbulence grids produced length scales normalized by the blade pitch of 0.02, 0.26, and 0.41, respectively. Surface heat transfer measurements were made at the midspan of the blade using thin film gauges. Experiments were performed at exit Mach numbers of 0.55, 0.78 and 1.03 which represent flow conditions below, near, and above nominal conditions. The exit Mach numbers tested correspond to exit Reynolds numbers of 6 × 10{sup}5, 8 × 10{sup}5, and 11 × 10{sup}5, based on true chord. The experimental results showed that the high freestream turbulence augmented the heat transfer on both the pressure and suction sides of the blade as compared to the low freestream turbulence case. At nominal conditions, exit Mach 0.78, average heat transfer augmentations of 23% and 35% were observed on the pressure side and suction side of the blade, respectively.
机译:本文通过实际发动机马赫数研究了高自由流湍流强度,湍流长度尺度的影响,对涡轮机叶片的表面传热分布的影响雷诺数。被动湍流网格用于在级联入口处产生2%,12%和14%的自由流湍流水平。湍流网格分别由0.02,0.26和0.41的叶片间距归一化的长度尺度。使用薄膜仪表在刀片的中坡上进行表面传热测量。实验在0.55,0.78和1.03的出口马赫数下进行,其代表下面的流动条件,接近和高于标称条件。基于真正的和弦,测试的退出马赫数对应于6×10 {sup} 5,8×10 {sup} 5和11×10 {sup} 5的reqyynolds数。实验结果表明,与低自发流湍流壳相比,高自由流湍流增加了叶片的压力和吸力侧的传热。在标称条件下,在叶片的压力侧和吸入侧观察到23%和35%的平均传热增强。

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