Nakajima T, King M D
Appl Opt. 1992 Dec 20;31(36):7669-83. doi: 10.1364/AO.31.007669.
Asymptotic expressions for the reflected, transmitted, and internal scattered radiation field in optically thick, vertically homogeneous, plane-parallel media are derived from first principles by using the discrete ordinates method of radiative transfer. Compact matrix equations are derived for computing the escape function, diffusion pattern, diffusion exponent, and the reflection function of a semi-infinite atmosphere in terms of the matrices, eigenvectors, and eigenvalues that occur in the discrete ordinates method. These matrix equations are suitable for numerical computations and are valid throughout the full range of single scattering albedos. The present formulations are validated by comparing them with established methods of radiative transfer.
通过使用辐射传输的离散纵标法,从第一原理推导出了光学厚、垂直均匀、平面平行介质中反射、透射和内部散射辐射场的渐近表达式。根据离散纵标法中出现的矩阵、特征向量和特征值,推导了用于计算半无限大气的逃逸函数、扩散模式、扩散指数和反射函数的紧凑矩阵方程。这些矩阵方程适用于数值计算,并且在整个单散射反照率范围内都是有效的。通过将当前公式与已有的辐射传输方法进行比较,验证了其有效性。