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Quantitative model-based imaging of mid-infrared radiation from a turbulent nonpremixed jet flame and plume

机译:基于定量模型的湍流非预混喷射火焰和烟羽的中红外辐射成像

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Current understanding of turbulent reacting flows can be improved by novel quantitative comparisons using highly scalable visualization methods based on volume rendering of time-dependent mid-infrared intensities in the form of images with multiple view angles. In this work, the effects of radiation and buoyancy in a turbulent nonpremixed flame and plume are studied by quantitatively comparing measured and computed images of the mid-infrared radiation intensity. To this end, a turbulent nonpremixed jet flame (Reynolds number 15,200 and CH4/H-2/N-2 fuel composition) is considered, representing a benchmark flame configuration of the International Workshop on Measurement and Computation of Turbulent Nonpremixed Flames (TNF Workshop). Quantitative images of the radiation intensity from the flame are acquired using a calibrated high-speed mid-infrared camera and band-pass filters. The camera and filters enable time-dependent measurements of radiation from water vapor and carbon dioxide over the entire flame length and beyond. Results of the solution to the radiative transfer equation are rendered in the form of images using scalar values from large eddy simulations (LES) and a narrowband radiation model. Planar images obtained from experiments and simulations for the radiation intensity display qualitatively comparable features, including localized regions of high and low intensity that are characteristic of turbulent flames. The quantitative comparison of the measured and computed temperature profiles and radiation intensities, particularly in the plume region downstream of the stoichiometric flame length, indicate that including radiation heat loss is important even for weakly radiating flames. The results demonstrate that quantitative experimental and model-based imaging of mid-infrared radiation intensity is useful for assessing the results of narrowband radiation and combustion models. (C) 2014 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:通过使用高度可扩展的可视化方法进行新颖的定量比较,可以提高对湍流反应流的当前理解,该可视化方法基于时间依赖性中红外强度的体积渲染(具有多个视角的图像形式)。在这项工作中,通过定量比较测量和计算的中红外辐射强度图像,研究了湍流非预混火焰和羽流中辐射和浮力的影响。为此,考虑了湍流非预混火焰(雷诺数15,200和CH4 / H-2 / N-2燃料成分),它代表了湍流非预混火焰测量和计算国际研讨会(TNF研讨会)的基准火焰配置。 。使用校准的高速中红外摄像机和带通滤镜获取火焰辐射强度的定量图像。摄像机和滤镜可以在整个火焰长度及更长的时间内对水蒸气和二氧化碳的辐射进行随时间变化的测量。使用来自大涡模拟(LES)和窄带辐射模型的标量值,以图像的形式呈现辐射传递方程的解的结果。从辐射强度的实验和模拟获得的平面图像显示出质量上可比的特征,包括湍流火焰特征的高强度和低强度的局部区域。对测量和计算出的温度曲线和辐射强度(尤其是在化学计量火焰长度下游的羽状区域中)的定量比较表明,即使对于弱辐射火焰,包括辐射热损失也很重要。结果表明,中红外辐射强度的定量实验和基于模型的成像可用于评估窄带辐射和燃烧模型的结果。 (C)2014年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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