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Specific absorption and backscatter coefficient signatures in southeastern Atlantic coastal waters

机译:大西洋东南沿海水域的比吸收和后向散射系数特征

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Abstract: Measurements of natural water samples in the field and laboratory of hyperspectral signatures of total absorption and reflectance were obtained using long pathlength absorption systems (50 cm pathlength). Water was sampled in Indian River Lagoon, Banana River and Port Canaveral, Florida. Stations were also occupied in near coastal waters out to the edge of the Gulf Stream in the vicinity of Kennedy Space Center, Florida and estuarine waters along Port Royal Sound and along the Beaufort River tidal area in South Carolina. The measurements were utilized to calculate natural water specific absorption, total backscatter and specific backscatter optical signatures. The resulting optical cross section signatures suggest different models are needed for the different water types and that the common linear model may only appropriate for coastal and oceanic water types. Mean particle size estimates based on the optical cross section, suggest as expected, that particle size of oceanic particles are smaller than more turbid water types. The data discussed and presented are necessary for remote sensing applications of sensors as well as for development and inversion of remote sensing algorithms. !10
机译:摘要:使用长光程吸收系统(50 cm光程)获得了现场和实验室中高光谱特征的总吸收和反射率的天然水样品的测量值。在印第安河泻湖,香蕉河和佛罗里达州卡纳维拉尔港采样了水。在佛罗里达肯尼迪航天中心附近,墨西哥湾沿岸水域附近的沿海水域和沿皇家港口和南卡罗来纳州的博福特河潮汐带的河口水域中,也有人占领了这些水域。利用这些测量值来计算自然水的比吸收,总反向散射和特定反向散射光学特征。所得的光学横截面特征表明,不同的水类型需要使用不同的模型,并且通用线性模型可能仅适用于沿海和海洋水类型。如预期的那样,基于光学横截面的平均粒径估算表明,海洋颗粒的粒径小于更多混浊的水类型。讨论和提供的数据对于传感器的遥感应用以及遥感算法的开发和反演都是必需的。 !10

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