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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Dense medium radiative transfer theory: comparison with experiment and application to microwave remote sensing and polarimetry
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Dense medium radiative transfer theory: comparison with experiment and application to microwave remote sensing and polarimetry

机译:稠密介质辐射传输理论:与实验的比较及在微波遥感和极化法中的应用

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The dense medium radiative transfer theory is used to study the multiple scattering of electromagnetic waves in a slab containing densely distributed spherical particles overlying a homogeneous half-space. This theory is used to explain phenomena observed in a controlled laboratory experiment. The experimental data indicate that, in a dense medium with small particles, both the coherent attenuation rate and bistatic intensities first increase with the volume fraction of the particles until a maximum is reached, and then decrease when the volume fraction further increases. Thus, attenuation rates and bistatic scattering exhibit a peak as a function of the concentration of particles. The magnitudes of both are also less than those predicted by the independent scattering assumption and the conventional radiative transfer theory. These phenomena cannot be explained by the conventional radiative transfer theory. It is shown that the dense medium radiative transfer theory is in agreement with these experimental features.
机译:稠密介质辐射传递理论用于研究平板中电磁波的多次散射,该平板包含均匀分布的半空间上的密集分布的球形颗粒。该理论用于解释在受控实验室实验中观察到的现象。实验数据表明,在具有小颗粒的稠密介质中,相干衰减率和双基地强度都随颗粒的体积分数而增加,直到达到最大值,然后随着体积分数的进一步增加而减小。因此,衰减率和双基地散射表现出作为颗粒浓度的函数的峰值。两者的幅度也小于独立散射假设和常规辐射传递理论所预测的幅度。这些现象不能用常规的辐射转移理论来解释。结果表明,致密介质辐射传递理论与这些实验特征相吻合。

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