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Scattering and emission models for microwave remote sensing of snow using numerical solutions of maxwell equations

机译:利用麦克斯韦方程数值解的微波遥感微波遥感散射和发射模型

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Snowpack consists of ice grains that are densely packed in the wavelength scale at microwave frequencies so that the coherent microwave interactions among the ice grains are important in microwave signatures. We have used Numerical Maxwell Model of 3D simulations (NMM3D) of random media / discrete scatterer to study such interactions. In the partial coherent model of Dense Media Radiative Transfer (DMRT), we use NMM3D to calculate the effective propagation constants, the extinction coefficients and the phase matrices. These are then used in radiative transfer equations to calculate the emission and backscattering signatures. In the fully coherent model, we use NMM3D to calculate the bistatic scattering and emissivity for a layer of snow pack over the ground. Using the fully coherent approach, we calculate the complex scattering amplitudes from the snowpack, including both magnitude and phase. In microstructure characterization of snow, we have used 2 models a) densely packed scatters of sticky particles or multiple sizes, and b) computer generated bicontinuous media. Both models can be characterized by correlation functions. In this paper, we also describe the recent simulated results for tomography and co-polarization phase differences of anisotropic dense media.
机译:Snowpack由微波频率的波长尺寸密集地堆积的冰袋,使得冰块之间的相干微波相互作用在微波签名中很重要。我们使用了随机媒体/离散散射体的3D模拟(NMM3D)的数值麦克斯韦模型来研究这种相互作用。在密集介质辐射转移(DMRT)的部分相干模型中,我们使用NMM3D来计算有效传播常数,消光系数和相位矩阵。然后在辐射传递方程中使用这些以计算发射和反向散射签名。在完全相干的模型中,我们使用NMM3D在地面上计算一层积雪层的双孔散射和发射率。使用完全相干的方法,我们计算来自积雪的复杂散射幅度,包括幅度和相位。在雪的微观结构表征中,我们使用了2个模型a)粘性粒子或多种尺寸的密集包装,B)计算机生成的双连续介质。两个模型都可以通过相关函数来表征。在本文中,我们还描述了最近的各向异性致密介质的断层扫描和共偏振相差的模拟结果。

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