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Local Heat Transfer Measurements on a Rotating Flat Blade Model with a Single Film Hole

机译:具有单膜孔的旋转平板叶片模型上的局部传热测量

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摘要

An experimental study was performed to measure the heat transfer coefficient distributions on a flat blade model under rotating operating conditions. A steady-state thermochromic liquid crystal technique was employed to measure the surface temperature, and all the signals from the rotating reference frame were collected by the telemetering instrument via a wireless connection. Both air and CO2 were used as coolant. Results show that the rotational effect has a significant influence on the heat transfer coefficient distributions. The profiles of hg/h0, which is the ratio of heat transfer coefficient with film cooling to that without film cooling, deflect towards the high-radius locations on both the pressure surface and suction surface as the rotation number (Rt) increases, and the deflective tendency is more evident on the suction surface. The variations in mainstream Reynolds number (ReD) and blowing ratio (M) present different distributions of hg/h0 on the pressure and suction surfaces, respectively. Furthermore, the coolant used for CO2 injection is prone to result in lower heat transfer coefficients.
机译:进行了一项实验研究,以测量旋转操作条件下平板模型上的传热系数分布。采用稳态热致变色液晶技术测量表面温度,遥测仪通过无线连接收集来自旋转参考系的所有信号。空气和二氧化碳都用作冷却剂。结果表明,旋转效应对传热系数分布有显着影响。 hg / h0曲线是膜冷却时的传热系数与未膜冷却时的传热系数之比,随着转速(Rt)的增加,偏向压力表面和吸力表面的高半径位置,并且在吸力表面上挠曲趋势更明显。主流雷诺数(ReD)和吹塑比(M)的变化分别在压力和吸力表面上呈现出hg / h0的不同分布。此外,用于CO 2注入的冷却剂易于导致较低的传热系数。

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