Yang Qiguang, Liu Xu, Wu Wan, Kizer Susan, Baize Rosemary R
Opt Express. 2016 Dec 26;24(26):A1514-A1527. doi: 10.1364/OE.24.0A1514.
A hybrid stream PCRTM-SOLAR model has been proposed for fast and accurate radiative transfer simulation. It calculates the reflected solar (RS) radiances with a fast coarse way and then, with the help of a pre-saved matrix, transforms the results to obtain the desired high accurate RS spectrum. The methodology has been demonstrated with the hybrid stream discrete ordinate (HSDO) radiative transfer (RT) model. The HSDO method calculates the monochromatic radiances using a 4-stream discrete ordinate method, where only a small number of monochromatic radiances are simulated with both 4-stream and a larger N-stream (N ≥ 16)discrete ordinate RT algorithm. The accuracy of the obtained channel radiance is comparable to the result from N-stream moderate resolution atmospheric transmission version 5 (MODTRAN5). The root-mean-square errors are usually less than 5x 10mW/cm/sr/cm. The computational speed is three to four-orders of magnitude faster than the medium speed correlated-k option MODTRAN5. This method is very efficient to simulate thousands of RS spectra under multi-layer clouds/aerosols and solar radiation conditions for climate change study and numerical weather prediction applications.
已经提出了一种混合流PCR™-SOLAR模型用于快速准确的辐射传输模拟。它以快速粗略的方式计算反射太阳(RS)辐射率,然后借助预先保存的矩阵对结果进行变换,以获得所需的高精度RS光谱。该方法已通过混合流离散坐标(HSDO)辐射传输(RT)模型得到验证。HSDO方法使用四流离散坐标法计算单色辐射率,其中仅用四流和更大的N流(N≥16)离散坐标RT算法模拟少量单色辐射率。所获得的通道辐射率的精度与N流中分辨率大气传输版本5(MODTRAN5)的结果相当。均方根误差通常小于5×10mW/cm/sr/cm。计算速度比中速相关-k选项的MODTRAN5快三到四个数量级。该方法对于在多层云/气溶胶和太阳辐射条件下模拟数千个RS光谱以用于气候变化研究和数值天气预报应用非常有效。