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Multiple scattering of waves by dense random distributions of sticky particles for applications in microwave scattering by terrestrial snow

机译:通过粘性颗粒的密集随机分布对波进行多次散射,用于地面雪对微波的散射

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摘要

We investigate the multiple-scattering of waves by dense random distribution of particles. Maxwell equations are put in the form of Foldy-Lax multiple-scattering equations which are solved numerically. The positions of the particles are generated by random shuffling and bonding. Simulations are performed for applications in microwave scattering by terrestrial snow. The results are illustrated for the copolarization and cross-polarization scattering phase matrices and the extinction coefficients for sticky particles. We consider concentrations of particles up to 40% by volume. Results of dense media simulations depart from the predictions on the basis of classical theory of independent scattering and are applicable for very low concentrations. The simulation results agree with those of quasi-crystalline approximation (QCA) for concentration up to 20%. However, they start to deviate from those of the QCA for higher concentrations as QCA underestimates the extinction. Simulation results also predict strong cross polarization in the phase matrix of densely packed spheres, a result that is not predicted by classical independent scattering nor by QCA.
机译:我们通过密集的粒子随机分布研究波的多重散射。麦克斯韦方程组以Foldy-Lax多重散射方程组的形式进行数值求解。粒子的位置是通过随机改组和键合生成的。针对地面雪在微波散射中的应用进行了仿真。结果说明了共极化和交叉极化散射相位矩阵以及粘性粒子的消光系数。我们认为颗粒浓度最高可达40%。密集介质模拟的结果与基于独立散射经典理论的预测背道而驰,并且适用于非常低的浓度。模拟结果与浓度高达20%的准晶体近似(QCA)一致。然而,由于QCA低估了灭绝,它们开始偏离QCA的浓度更高。仿真结果还预测了密集堆积球的相位矩阵中的强交叉极化,而传统的独立散射和QCA均未预测到这一结果。

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