Stamnes K, Tsay S C, Wiscombe W, Jayaweera K
Appl Opt. 1988 Jun 15;27(12):2502-9. doi: 10.1364/AO.27.002502.
We summarize an advanced, thoroughly documented, and quite general purpose discrete ordinate algorithm for time-independent transfer calculations in vertically inhomogeneous, nonisothermal, plane-parallel media. Atmospheric applications ranging from the UV to the radar region of the electromagnetic spectrum are possible. The physical processes included are thermal emission, scattering, absorption, and bidirectional reflection and emission at the lower boundary. The medium may be forced at the top boundary by parallel or diffuse radiation and by internal and boundary thermal sources as well. We provide a brief account of the theoretical basis as well as a discussion of the numerical implementation of the theory. The recent advances made by ourselves and our collaborators-advances in both formulation and numerical solution-are all incorporated in the algorithm. Prominent among these advances are the complete conquest of two illconditioning problems which afflicted all previous discrete ordinate implementations: (1) the computation of eigenvalues and eigenvectors and (2) the inversion of the matrix determining the constants of integration. Copies of the FORTRAN program on microcomputer diskettes are available for interested users.
我们总结了一种先进的、有详尽记录且用途广泛的离散坐标算法,用于垂直非均匀、非等温平面平行介质中与时间无关的输运计算。该算法可应用于从紫外线到电磁频谱雷达波段的大气领域。所包含的物理过程有热辐射、散射、吸收以及下边界处的双向反射和发射。介质在顶部边界可能受到平行或漫射辐射以及内部和边界热源的作用。我们简要介绍了理论基础,并讨论了该理论的数值实现。我们自己以及合作者最近取得的进展——在公式推导和数值求解两方面的进展——都已纳入该算法。这些进展中突出的是完全攻克了困扰以往所有离散坐标实现方法的两个病态问题:(1)特征值和特征向量的计算,以及(2)确定积分常数的矩阵求逆。有兴趣的用户可获取在微型计算机磁盘上的FORTRAN程序副本。