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Retrieval of macro- and micro-physical properties of oceanic hydrosols from polarimetric observations

机译:通过极化观测反演海洋水溶胶的宏观和微观物理性质

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Remote sensing has mainly relied on measurements of scalar radiance and its spectral and angular features to retrieve micro- and macro-physical properties of aerosols/hydrosols. However, it is recognized that measurements that include the polarimetric characteristics of light provide more intrinsic information about particulate scattering. To take advantage of this, we used vector radiative transfer (VRT) simulations and developed an analytical relationship to retrieve the macro and micro-physical properties of the oceanic hydrosols. Specifically, we investigated the relationship between the observed degree of linear polarization (DoLP) and the ratio of attenuation to-absorption coefficients (c/a) in water, from which the scattering coefficient can be readily computed (b = c - a), after retrieving a. This relationship was parameterized for various scattering geometries, including sensor zenith/azimuth angles relative to the Sun's principal plane, and for varying Sun zenith angles. An inversion method was also developed for the retrieval of the microphysical properties of hydrosols, such as the bulk refractive index and the particle size distribution. The DoLP vs c/a relationship was tested and validated against in-situ measurements of underwater light polarization obtained by a custom-built polarimeter and measurements of the coefficients a and c, obtained using an in-water WET Labs ac-s instrument package. These measurements confirmed the validity of the approach, with retrievals of attenuation coefficients showing a high coefficient of determination depending on the wavelength. We also performed a sensitivity analysis of the DoLP at the Top of Atmosphere (TOA) over coastal waters showing the possibility of polarimetric remote sensing application for ocean color. (C) 2016 Elsevier Inc. All rights reserved.
机译:遥感主要依靠对标量辐射及其光谱和角度特征的测量来获取气溶胶/水溶胶的微观和宏观物理特性。但是,已经认识到,包括光的偏振特性的测量结果提供了有关颗粒散射的更多固有信息。为了利用这一优势,我们使用了矢量辐射转移(VRT)模拟并建立了一种分析关系,以检索海洋溶胶的宏观和微观物理特性。具体来说,我们研究了观察到的线性极化度(DoLP)与水中衰减吸收系数之比(c / a)之间的关系,由此可以很容易地计算出散射系数(b = c-a),检索后对于各种散射几何形状(包括相对于太阳主平面的传感器天顶/方位角)以及变化的太阳天顶角,对该关系进行了参数化。还开发了一种反演方法来检索水溶胶的微物理性质,例如总折射率和粒度分布。针对DoLP与c / a的关系进行了测试,并针对通过定制旋光仪获得的水下光偏振的原位测量以及使用水中WET Labs ac-s仪器套件获得的系数a和c的测量进行了验证。这些测量结果证实了该方法的有效性,对衰减系数的取回显示出取决于波长的高确定系数。我们还对沿海水域顶部大气(TOA)的DoLP进行了敏感性分析,显示了偏振遥感技术对海洋颜色的应用可能性。 (C)2016 Elsevier Inc.保留所有权利。

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