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Radiative transfer theory for passive microwave remote sensing of a two‐layer random medium with cylindrical structures

机译:具有圆柱结构的两层随机介质的无源微波遥感辐射传输理论

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In passive microwave remote sensing of earth terrain, the application of the radiative transfer theory to the model of random medium has been used in the interpretation of various experimental data. For vegetation fields with cylindrical structures, we model the vegetation layer as a two‐layer random medium with a small correlation length lρ in the horizontal direction, and a large correlation length lz in the vertical direction. The closed form solutions for the brightness temperatures are obtained as lz approaches infinity. Using this model, the kernels in the scattering terms of the radiative transfer equations give rise to delta functions, indicating that forward scattering is dominant over all the other directions. For the case that lz is only a few wavelengths long, we find the first‐order solution with an iterative method. The results are compared with that obtained using the Gaussian quadrature method to solve the radiative transfer equations numerically. We also apply this model to match experimental data collected from corn fields.
机译:在无源微波对地球地形的遥感中,辐射转移理论在随机介质模型中的应用已用于解释各种实验数据。对于具有圆柱结构的植被场,我们将植被层建模为两层随机介质,其水平方向的相关长度lρ小,垂直方向的相关长度lz大。当lz接近无穷大时,可获得亮度温度的封闭形式解。使用该模型,辐射传递方程的散射项中的核会产生增量函数,这表明前向散射在所有其他方向上均占主导地位。对于lz只有几个波长长的情况,我们找到了具有迭代方法的一阶解。将结果与使用高斯正交方法获得的结果进行比较,以数值方式求解辐射传递方程。我们还应用此模型来匹配从玉米田收集的实验数据。

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    《Journal of Applied Physics》 |1980年第11期|P.5588-5593|共6页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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