首页> 外文期刊>Journal of Flow Visualization and Image Processing >2D THICKNESS AND TEMPERATURE MAPPING OF FLUIDS BY MEANS OF A TWO-DYE LASER INDUCED FLUORESCENCE RATIOMETRIC SCHEME
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2D THICKNESS AND TEMPERATURE MAPPING OF FLUIDS BY MEANS OF A TWO-DYE LASER INDUCED FLUORESCENCE RATIOMETRIC SCHEME

机译:二维激光诱导的荧光比重法测量流体的二维厚度和温度映射

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This paper presents the principles behind the use of a two-dye Laser Induced Fluorescence (LIF) technique for two-dimensional film thickness and temperature mapping of fluids. The need for two fluorescent emissions arises as a consequence of the fluorescence dependence on excitation light intensity. A ratiometric scheme that normalizes the fluorescent emission of one dye against the fluorescent emission of a second dye is used in order to eliminate undesirable effects due to illumination intensity fluctuations, in both space and time, and optical distortions. The same ratiometric scheme is applied for both film thickness and temperature measurements, but the required spectral characteristics of the dyes used and the optical conditions differ significantly between the two measurements. The concepts of emission reabsorption and optical thickness are discussed in light of the requirements for each particular measurement. Experimental validation of the technique in measuring the thickness and temperature of a film of lubricating oil is also presented.
机译:本文介绍了使用二维激光诱导荧光(LIF)技术对流体的二维膜厚和温度作图的原理。由于荧光依赖于激发光强度,因此需要两个荧光发射。为了消除由于在空间和时间上的照明强度波动和光学畸变引起的不希望的影响,使用了将一种染料的荧光发射相对于第二种染料的荧光发射归一化的比例方案。薄膜厚度和温度测量均采用相同的比例方案,但两次测量之间所用染料所需的光谱特征和光学条件差异很大。根据每种特定测量的要求,讨论了发射重吸收和光学厚度的概念。还介绍了该技术在测量润滑油膜厚度和温度方面的实验验证。

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