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Optical convective heat transfer measurements using infrared thermography and frequency domain phosphor thermometry

机译:使用红外热成像和频域磷光体测温法进行光学对流传热测量

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摘要

A novel technique for spatially resolved heat transfer measurements is proposed. Utilizing its transmis-sive properties the temperature distributions at the upper and lower surface of an acrylic glass plate mounted on a heated copper surface are measured. Infrared thermography is employed to determine the external wall temperature. The temperature at the interface between acrylic glass and copper base plate is measured with a thermographic phosphor. The temperature dependent phosphorescence lifetime of the applied Cr~(3+):Al_2O_3 (ruby) powder is assessed using frequency-domain processing of high-speed camera recordings. The measured temperature boundary conditions are used to perform a finite element computation of the conductive heat flux that is imposed by an electric heater. The heat transfer coefficient distribution is corrected iteratively to compensate lateral conduction errors. The newly developed technique is validated by means of jet impingement heat transfer measurements and compared to numerical results and data available in the literature.
机译:提出了一种用于空间分辨传热测量的新技术。利用其传输特性,可以测量安装在加热的铜表面上的丙烯酸玻璃板的上,下表面的温度分布。红外热像仪用于确定外壁温度。用热成像荧光粉测量丙烯酸玻璃和铜基板之间的界面温度。使用高速相机记录的频域处理来评估所施加的Cr〜(3 +):Al_2O_3(红宝石)粉末的温度依赖性磷光寿命。测得的温度边界条件用于对电加热器施加的传导热通量进行有限元计算。传热系数分布经过迭代校正,以补偿横向传导误差。新开发的技术已通过射流冲击传热测量得到验证,并与文献中的数值结果和数据进行了比较。

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