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Implementation of an In-Situ Infrared Calibration Method for Precise Heat Transfer Measurements on a Linear Cascade

机译:线性级联上精确传热测量的原位红外校准方法的实现

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For heat transfer measurements on the center blade of a linear cascade, the infrared measurement technique was set up. As a highly challenging condition, the angular dependency of the infrared signal was identified. Beside a shallow angle of view, limited by geometric conditions, the curved blade surface necessitated the consideration of this dependency. Therefore, a powerful in-situ calibration method was set up, which accounts for the angular dependency implicitly. In contrast to usual procedures, the correlation of the measured infrared intensity and the temperature was calibrated by a separate calibration function for each position on the blade. In all, three different calibration approaches were proceeded and assessed. Initial measurements in low-speed test conditions delivered physically more reasonable results, using a local calibration compared to a usual global calibration. By means of these data, an evaluation of the aerodynamic characteristic of the cascade was enabled. With few modifications, the procedure is capable to deliver high-precision heat transfer measurements in the high-speed cascade wind-tunnel at the Institute of Jet Propulsion.
机译:为了在线性叶栅的中心叶片上进行传热测量,建立了红外测量技术。作为极富挑战性的条件,已确定了红外信号的角度依赖性。除了受几何条件限制的浅视角之外,弯曲的叶片表面还需要考虑这种依赖性。因此,建立了一种功能强大的现场校准方法,该方法隐式考虑了角度依赖性。与常规程序相反,通过单独的校准功能针对叶片上的每个位置来校准测得的红外强度和温度的相关性。总共进行了三种不同的校准方法并进行了评估。与常规的全局校准相比,使用局部校准在低速测试条件下进行的初始测量在物理上提供了更为合理的结果。通过这些数据,可以评估叶栅的空气动力学特性。经过很少的修改,该程序即可在喷气推进研究所的高速级联风洞中提供高精度的传热测量。

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