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Dielectric and Radiative Properties of Sea Foam at Microwave Frequencies: Conceptual Understanding of Foam Emissivity

机译:海泡在微波频率下的介电和辐射特性:泡沫发射率的概念理解。

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Foam fraction can be retrieved from space-based microwave radiometric data at frequencies from 1 to 37 GHz. The retrievals require modeling of ocean surface emissivity fully covered with sea foam. To model foam emissivity well, knowledge of foam properties, both mechanical and dielectric, is necessary because these control the radiative processes in foam. We present a physical description of foam dielectric properties obtained from the foam dielectric constant including foam skin depth; foam impedance; wavelength variations in foam thickness, roughness of foam layer interfaces with air and seawater; and foam scattering parameters such as size parameter, and refraction index. Using these, we analyze the scattering, absorption, reflection and transmission in foam and gain insights into why volume scattering in foam is weak; why the main absorption losses are confined to the wet portion of the foam; how the foam impedance matching provides the transmission of electromagnetic radiation in foam and maximizes the absorption; and what is the potential for surface scattering at the foam layers boundaries. We put all these elements together and offer a conceptual understanding for the high, black-body-like emissivity of foam floating on the sea surface. We also consider possible scattering regimes in foam.
机译:可以从天基微波辐射数据以1至37 GHz的频率检索泡沫分数。检索需要对完全被海泡覆盖的海洋表面辐射率进行建模。为了很好地模拟泡沫的发射率,必须了解机械和介电的泡沫特性,因为它们可以控制泡沫的辐射过程。我们介绍了从包括泡沫趋肤深度在内的泡沫介电常数获得的泡沫介电特性的物理描述。泡沫阻抗;泡沫厚度的波长变化,泡沫层与空气和海水的界面粗糙度;泡沫散射参数,例如尺寸参数和折射率。利用这些,我们分析了泡沫中的散射,吸收,反射和透射,并深入了解了为什么泡沫中的体积散射较弱。为什么主要的吸收损失仅限于泡沫的湿部分;泡沫阻抗匹配如何在泡沫中提供电磁辐射的传输并最大化吸收;以及在泡沫层边界处的表面散射的潜力是什么。我们将所有这些元素放在一起,并为漂浮在海面上的泡沫的类似黑体的高发射率提供了概念上的理解。我们还考虑了泡沫中可能的散射状态。

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