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Earth observation of aerosols over inland water bodies in relation to calibration and validation of sentinel 2/3

机译:内陆水体的地球观察哨兵校准和验证哨片2/3

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Satellite remote sensing of inland water bodies has great potential for ensuring water quality and for obtaining reliable data which can be used for decision making. This is a rapidly evolving technology that is now widely utilized throughout the globe for providing a broad as well as detailed perspective on earth-system status and change. Inland water processes, such as eutrophication, may have a major impact on human life and can lead to environmental disasters. This study investigates the optical effect of atmospheric aerosols on remote sensing of the water-leaving radiance (L_w) at Roodeplaat dam. An in-situ measurement field campaign was performed at Roodeplaat dam (Pretoria) during the 2016 winter season, in relation to calibration and validation of Sentinel 2 and Sentinel 3 satellite data. In-situ measurements were performed simultaneously with the satellite overpasses at the dam. In-situ measurements included Aerosol Optical Thickness (AOT), water vapor column and downwelling spectral irradiance as well as the remote sensing spectral reflectance of the dam, R_(rs). A radiative transfer code (Modtran) was used to predict the radiance at the Top of Atmosphere (TOA), compared to actual measurements from Sentinel 2 and 3. Sensitivity analysis demonstrated that retrieval of water-leaving radiance at small water bodies such as Roodeplaat dam was sensitive to aerosol optical properties as well as total column.
机译:内陆水体的卫星遥感具有巨大的潜力,可以确保水质,并获得可用于决策的可靠数据。这是一种迅速发展的技术,现在广泛利用全球广泛利用,以便在地球系统地位和改变方面提供广泛的和详细的视角。内陆水过程,如富营养化,可能对人类生命产生重大影响,可以导致环境灾害。本研究调查了大气气溶胶对Roodplaat大坝遥感遥感遥感的光学效应。在2016年冬季的ROOKPLAAT DAM(比勒陀利亚)在冬季校准和验证了Sentinel 2和Sentinel 3卫星数据的校准和验证。与卫星在坝上的卫星立交桥同时进行原位测量。原位测量包括气溶胶光学厚度(AOT),水蒸气柱和贫困光谱辐照度以及坝的遥感光谱反射率,R_(RS)。辐射转移代码(Modtran)用于预测大气层顶部(TOA)的辐射,与Sentinel 2和3的实际测量相比。敏感性分析证明了在兔子坝等小水体上的留下水辐射的检索对气溶胶光学性质以及总柱敏感。

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