灰色气体加权和模型在非灰壁介质中非均质h2o / co2混合物中的应用

Roberta Juliana Collet da Fonseca, F. França
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引用次数: 0

摘要

参与介质中热辐射的光谱建模由于其在许多工程问题中的重要性而一直受到关注,特别是由于气体吸收系数与波数的高度不规则的光谱依赖关系,需要采用替代方法来确定辐射特性。这项工作对一维系统进行了数值研究,该系统由完全扩散和非灰壁所包围,由水蒸气和二氧化碳的非均匀和非等温混合物填充。主要目的是估计在处理应被视为非灰色的表面为黑色或灰色时偏差的大小。采用加权灰色气体和(WSGG)模型对问题进行了光谱建模,并通过与逐行积分(LBL)结果的比较来评价所开发的求解方法的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
APPLICATION OF THE WEIGHTED-SUM-OF-GRAY-GASES MODEL TO NON-HOMOGENEOUS H2O/CO2 MIXTURES FOR MEDIA WITH NON-GRAY WALLS
The spectral modeling of the thermal radiation in participating media is a research area that has received constant attention due to its importance in a great number of engineering problems, especially because the highly irregular spectral dependence of the absorption coefficient of a gas with the wavenumber requires the adoption of alternative methods to determine the radiative properties. This work brings a numerical study of a one-dimensional system, bounded by perfectly diffuse and non-gray walls, filled by a non-homogeneous and non-isothermal mixture of water vapor and carbon dioxide. The main objective is to estimate the magnitude of the deviations in treating surfaces that should be considered non-gray as black or gray. The spectral modeling of the problem is performed by the weighted-sum-of-gray-gases (WSGG) model and the accuracy of the solution methodology developed is evaluated by means of comparisons against the results obtained by line-by-line (LBL) integration.
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