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Relationship between the spectral line based weighted-sum-of-gray-gases model and the full spectrum k-distribution model

机译:基于谱线的灰色气体加权总和模型与全谱k分布模型之间的关系

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The relationship between the spectral line based weighted-sum-of-gray-gases (SLW) model and the full-spectrum k-distribution (FSK) model in isothermal and homogeneous media is investigated in this paper. The SLW transfer equation can be derived from the FSK transfer equation expressed in the k-distribution function without approximation. It confirms that the SLW model is equivalent to the FSK model in the k-distribution function form. The numerical implementation of the SLW relies on a somewhat arbitrary discretization of the absorption cross section whereas the FSK model finds the spectrally integrated intensity by integration over the smoothly varying cumulative-k distribution function using a Gaussian quadrature scheme. The latter is therefore in general more efficient as a fewer number of gray gases is required to achieve a prescribed accuracy. Sample numerical calculations were conducted to demonstrate the different efficiency of these two methods. The FSK model is found more accurate than the SLW model in radiation transfer in H_20; however, the SLW model is more accurate in media containing CO_2 as the only radiating gas due to its explicit treatment of 'clear gas.'
机译:研究了等温和均质介质中基于谱线的灰色气体加权和(SLW)模型与全谱k分布(FSK)模型之间的关系。 SLW传递方程式可以从k分布函数中表示的FSK传递方程式中近似得出。它确定了SLW模型与k分布函数形式中的FSK模型等效。 SLW的数值实现依赖于吸收截面的任意离散化,而FSK模型通过使用高斯正交方案对平滑变化的累积k分布函数进行积分来找到光谱积分强度。因此,后者通常更有效,因为需要较少数量的灰气即可达到规定的精度。进行了样本数值计算,以证明这两种方法的不同效率。发现FSK模型在H_20的辐射传输中比SLW模型更准确;但是,SLW模型由于对“清洁气体”进行了显式处理,因此在包含CO_2作为唯一辐射气体的介质中更为准确。

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