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A method to extrapolate the diffuse upwelling radiance attenuation coefficient to the surface as applied to the Marine Optical Buoy (MOBY)

机译:一种将扩散上升流辐射衰减系数外推到表面的方法应用于海洋光学浮标(MOBY)

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摘要

The upwelling radiance attenuation coefficient (KLu) in the upper 10 m of the water column can be significantly influenced by inelastic scattering processes, and thus will vary even with homogeneous water properties. The Marine Optical BuoY (MOBY), the primary vicarious calibration site for many ocean color sensors, makes measurements of the upwelling radiance (Lu) at 1 m, 5 m, and 9 m and uses these values to determine KLu and propagate the upwelling radiance directed toward the zenith, Lu, at 1 m to and through the surface. Inelastic scattering causes the KLu derived from the arm measurements to be an underestimate of the true KLu from 1 m to the surface at wavelengths greater than 575 nm, thus the derived water leaving radiance is underestimated at wavelengths longer than 575 nm. A method to correct this KLu, based on a model of the upwelling radiance including Raman scattering and chlorophyll fluorescence has been developed which corrects this bias. The model has been experimentally validated, and this technique can be applied to the MOBY data set to provide new, more accurate products at these wavelengths. When applied to a 4 month MOBY deployment, the corrected water leaving radiance, Lw, can increase by 5 % (600 nm), 10 % (650 nm) and 50 % (700 nm). This method will be used to provide additional more accurate products in the MOBY data set.
机译:水柱上部10 m的上升流辐射衰减系数(KLu)可能会受到非弹性散射过程的显着影响,因此即使具有均质的水质也会发生变化。海洋光学浮标(MOBY)是许多海洋颜色传感器的主要替代校准地点,它对1 m,5 m和9 m处的上升流辐射率(Lu)进行测量,并使用这些值确定KLu并传播上升流辐射率朝向并穿过地面1 m指向天顶Lu。非弹性散射会导致从臂部测量得出的KLu在波长大于575 nm的情况下被低估了从1 m到表面的真实KLu,因此在大于575 nm的波长下会低估得出的水的辐射辐射。基于包括拉曼散射和叶绿素荧光在内的上升流辐射模型,已经开发出一种校正该KLu的方法,该方法可以校正这种偏差。该模型已经过实验验证,该技术可以应用于MOBY数据集,以在这些波长下提供新的,更准确的产品。当应用于4个月的MOBY部署时,校正后的离开水的辐射度Lw可以增加5%(600 nm),10%(650 nm)和50%(700 nm)。该方法将用于在MOBY数据集中提供其他更准确的产品。

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