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Estimating Oceanic Primary Production Using Vertical Irradiance and Chlorophyll Profiles from Ocean Gliders in the North Atlantic

机译:利用垂直辐射和北大西洋海滑翔机的叶绿素分布估算海洋初级生产

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摘要

An autonomous underwater vehicle (Seaglider) has been used to estimate marine primary production (PP) using a combination of irradiance and fluorescence vertical profiles. This method provides estimates for depth-resolved and temporally evolving PP on fine spatial scales in the absence of ship-based calibrations. We describe techniques to correct for known issues associated with long autonomous deployments such as sensor calibration drift and fluorescence quenching. Comparisons were made between the Seaglider, stable isotope (^(13)C), and satellite estimates of PP. The Seaglider-based PP estimates were comparable to both satellite estimates and stable isotope measurements.
机译:自主水下航行器(Seaglider)已被用于结合辐照度和荧光垂直剖面来估算海洋初级生产力(PP)。该方法可以在没有基于船用校准的情况下,在精细的空间尺度上提供深度解析和时间演变的PP的估计值。我们介绍了一些技术来纠正与长期自主部署相关的已知问题,例如传感器校准漂移和荧光猝灭。在Seaglider,稳定同位素(^(13)C)和PP的卫星估算值之间进行了比较。基于Seaglider的PP估算值可与卫星估算值和稳定同位素测量值相媲美。

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