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A Monte Carlo Emissivity Model for Wind-Roughened Sea Surface

机译:粗糙海面的蒙特卡罗辐射率模型

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摘要

Sea surface emissivity (SSE) is a key variable in the estimation of sea surface temperature and the sea surface radiation budget. A physical base SSE model with adequate accuracy and acceptable computational efficiency is highly desired. This paper develops a Monte Carlo ray-tracing model to compute the SSE of a wind-roughened sea surface. The adoption of a two-dimensional continuous surface model and averaging the two polarization components in advance before ray-tracing gives the model acceptable computational efficiency. The developed model can output the contributions of direct emission and the reflected component to the effective emissivity. The contribution of the reflected component to the effective emissivity reaches 0.035 at an 80° emission angle for a wind speed larger than 10 m/s. The emissivity spectra and channel emissivities collected from two field campaigns and one set of outdoor measurements are used to validate the developed model. Statistical results indicate that the absolute value of bias or difference is less than 0.5% when the view angle is less than 65°, which means the retrieval accuracy of sea surface temperature (SST) is guaranteed from the view of SSE. When the view angle increases, the accuracy of the developed model degraded, especially at the view angle of 85°. Without considering this view angle, the absolute value of bias or difference is less than 0.016, and the root mean square difference (RMSD) is less than 0.018.
机译:海面发射率(SSE)是估算海面温度和海面辐射预算的关键变量。非常需要具有足够的准确性和可接受的计算效率的物理基础SSE模型。本文建立了蒙特卡洛射线追踪模型来计算风粗糙海面的SSE。采用二维连续表面模型并在光线跟踪之前预先平均两个偏振分量,可以使模型具有可接受的计算效率。所开发的模型可以输出直接发射和反射分量对有效发射率的贡献。当风速大于10 m / s时,在80°的发射角处,反射分量对有效发射率的贡献达到0.035。从两次野战和一组室外测量收集的发射光谱和通道发射率用于验证开发的模型。统计结果表明,当视角小于65°时,偏差或差值的绝对值小于0.5%,这意味着从SSE的角度可以保证海表温度(SST)的检索精度。当视角增加时,开发模型的精度下降,尤其是在85°的视角下。不考虑该视角,偏差或差的绝对值小于0.016,并且均方根差(RMSD)小于0.018。

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