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Analytical solution of radiative transfer in the coupled atmosphere-ocean system with a rough surface

机译:具有粗糙表面的大气-海洋耦合系统中辐射传递的解析解

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摘要

Using the computationally efficient discrete-ordinate method, we present an analytical solution for radiative transfer in the coupled atmosphere-ocean system with a rough air-water interface. The theoretical formulations of the radiative transfer equation and solution are described. The effects of surface roughness on the radiation field in the atmosphere and ocean are studied and compared with satellite and surface measurements. The results show that ocean surface roughness has significant effects on the upwelling radiation in the atmosphere and the downwelling radiation in the ocean. As wind speed increases, the angular domain of sunglint broadens, the surface albedo decreases, and the transmission to the ocean increases. The downward radiance field in the upper ocean is highly anisotropic, but this anisotropy decreases rapidly as surface wind increases and as ocean depth increases. The effects of surface roughness on radiation also depend greatly on both wavelength and angle of incidence (i.e., solar elevation); these effects are significantly smaller throughout the spectrum at high Sun. The model-observation discrepancies may indicate that the Cox-Munk surface roughness model is not sufficient for high wind conditions.
机译:使用计算效率高的离散坐标法,我们给出了具有粗糙的空气-水界面的大气-海洋耦合系统中辐射传递的解析解。描述了辐射传递方程和解的理论公式。研究了表面粗糙度对大气和海洋辐射场的影响,并将其与卫星和表面测量结果进行了比较。结果表明,海洋表面粗糙度对大气的上升流辐射和海洋的下降流辐射具有显着影响。随着风速的增加,日照剂的角域变宽,地表反照率减小,并且向海洋的传播增加。高空海洋的向下辐射场是高度各向异性的,但是随着表面风的增加和海洋深度的增加,这种各向异性迅速减小。表面粗糙度对辐射的影响在很大程度上还取决于波长和入射角(即太阳高度);在高太阳下,这些影响在整个光谱范围内明显较小。模型观测的差异可能表明Cox-Munk表面粗糙度模型不足以应对强风条件。

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