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Analysis of thermal effects on body temperature distribution of sonic nozzles

机译:热对声波喷嘴体温分布的影响分析

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To improve the measurement accuracy of sonic nozzle, the complex thermal effect in sonic nozzles were investigated. As the essential characteristic of thermal effect, the steady and transient temperature distributions of nozzle sensors were measured by 12 thermocouple probes. Then, the original signals of thermocouples were filtered smoothly by Savitzky-Golay Method (SGM) and normalized and the dynamic response characteristics, namely the time constant of temperature were obtained. Moreover, the isotherms of whole solid region were analyzed by the Kriging interpolation method (KIM). Finally, the heat flow in solid region were obtained according to the temperature isotherm, which is consistence with heat transfer theory and verify the accuracy of the KIM further.
机译:为了提高声波喷嘴的测量精度,研究了声波喷嘴的复杂热效应。作为热效应的基本特征,通过12个热电偶探头测量了喷嘴传感器的稳态和瞬态温度分布。然后,通过Savitzky-Golay法(SGM)对热电偶的原始信号进行平滑滤波并归一化,得到了动态响应特性,即温度的时间常数。此外,通过Kriging插值法(KIM)分析了整个实体区域的等温线。最后,根据温度等温线获得了固体区域内的热流,这与传热理论相吻合,进一步验证了KIM的精度。

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