首页> 外文会议>International Geoscience and Remote Sensing Symposium >MODELING THE EFFECT OF SURFACE ROUGHNESS ON THE BACK-SCATTERING COEFFICIENT AND EMISSIVITY OF A SOIL-LITTER MEDIUM USING A NUMERICAL MODEL
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MODELING THE EFFECT OF SURFACE ROUGHNESS ON THE BACK-SCATTERING COEFFICIENT AND EMISSIVITY OF A SOIL-LITTER MEDIUM USING A NUMERICAL MODEL

机译:使用数值模型建模表面粗糙度对土壤垃圾介质后散射系数和发射率的影响

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In the context of the SMOS mission, a new numerical method based on the finite element method is presented which can be used to model the radiometric L-band emission of soil and litter layers in forests. Many different characteristics of these layers that affect the soil-litter emission can be incorporated into the model, including surface roughness, inclusions and volume effects. Soil moisture is incorporated into the model as a function of the dielectric permittivity constant. The model is validated for a single dielectric layer with a surface roughness of Gaussian autocorrelation function by comparing results of the backscattering coefficient with those calculated by the 2D method of moments. Good general agreement is obtained between these results. An emissivity calculation for a single layer rough surface is also presented and compared with the emissivity of a flat layer.
机译:在SMOS任务的背景下,提出了一种基于有限元方法的新数值方法,其可用于模拟森林中土壤和垃圾层的辐射率L带发射。这些层的许多不同的特征,这些层可以纳入模型中,包括表面粗糙度,夹杂物和体积效应。土壤水分作为介电介电常数常数掺入模型中。通过将反向散射系数的结果与由2D时矩方法计算的那些进行比较,该模型被验证了具有高斯自相关函数的表面粗糙度。在这些结果之间获得了良好的一致。还呈现了单层粗糙表面的发射率计算,并与平坦层的发射率进行比较。

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