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TREATMENT OF THE LAYER TEMPERATURE-GRADIENT PROBLEM IN BAND-MODEL EMISSION CODES

机译:带状发射码中层温梯度问题的处理

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摘要

An approximate method for rapid and reasonably accurate sublayer integration in band-model-based radiative transfer codes is described, The method is based on a five-parameter, second-order Pade approximation to the molecular equivalent width that is a function of a single variable, the molecular weak-line optical depth tau(m). Three of the parameters are determined by boundary conditions at tau(m) = 0 and tau(m) = infinity. The other two parameters are obtained with an error-minimization fit to the molecular equivalent width at two points along the curve of growth. This process can be applied sequentially to all adjacent pairs of points along the entire curve of growth to yield the total path radiance. Sample calculations are performed for representative curves of growth: exponential, Lorentz, and Doppler. It is shown that for atmospheric radiative flux and cooling-rate calculations this approach will yield results to within approximately 0.2% of fully converged calculations. [References: 11]
机译:描述了一种在基于带模型的辐射转移码中快速,合理准确地进行子层集成的近似方法,该方法基于五参数,二阶Pade近似到分子等效宽度,该分子等效宽度是单个变量的函数,分子弱线光学深度tau(m)。其中三个参数由tau(m)= 0和tau(m)=无穷大的边界条件确定。通过误差最小化获得其他两个参数,这些误差与沿着生长曲线的两个点处的分子当量宽度相符。该过程可以顺序地应用于整个生长曲线上的所有相邻点对,以产生总路径辐射。为代表性的增长曲线执行了样本计算:指数曲线,洛伦兹曲线和多普勒曲线。结果表明,对于大气辐射通量和冷却速率计算,该方法将得出的结果在完全收敛的计算值的约0.2%之内。 [参考:11]

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