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Experimental and computational infrared imaging of bluff body stabilized laminar diffusion flames

机译:钝体稳定层流扩散火焰的实验和计算红外成像

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摘要

The concept of comparing measured and computed images is extended to the mid-infrared spectrum to provide a non-intrusive technique for studying flames. Narrowband radiation intensity measurements of steady and unsteady bluff body stabilized laminar ethylene diffusion flames are acquired using an infrared camera. Computational infrared images are rendered by solving the radiative transfer equation for parallel lines-of-sight through the flame and using a narrowband radiation model with computed scalar values. Qualitative and quantitative comparisons of the measured and computed infrared images provide insights into the flame stabilization region and beyond. The unique shapes and sizes of the flames observed in the measured and computed infrared images are similar with a few exceptions which are shown to be educational. The important differences occur in the flame stabilization region suggesting improvements in thermal control of the experiment and soot formation and heat loss models.
机译:比较测量图像和计算图像的概念已扩展到中红外光谱,从而提供了一种用于研究火焰的非侵入式技术。使用红外热像仪对稳态和非稳态钝体稳定的层状乙烯扩散火焰进行窄带辐射强度测量。通过求解穿过火焰的平行视线的辐射传递方程并使用具有计算的标量值的窄带辐射模型来呈现计算的红外图像。对测得的和计算出的红外图像进行定性和定量比较,可以深入了解火焰稳定区域及其他区域。在实测和计算的红外图像中观察到的火焰的独特形状和大小相似,只有少数例外,这被证明具有教育意义。重要的差异发生在火焰稳定区域,这表明改进了实验的热控制以及烟灰形成和热损失模型。

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