CNRS & Sorbonne Université, OSU Ecce Terra, 4 Place Jussieu, CEDEX 05, 75252 Paris, France.
National Research Council (CNR), Institute of Marine Sciences (ISMAR), Via del Fosso del Cavaliere 100, 00133 Rome, Italy.
Sensors (Basel). 2021 Sep 16;21(18):6217. doi: 10.3390/s21186217.
Measuring the underwater light field is a key mission of the international Biogeochemical-Argo program. Since 2012, 0-250 dbar profiles of downwelling irradiance at 380, 412 and 490 nm besides photosynthetically available radiation (PAR) have been acquired across the globe every 1 to 10 days. The resulting unprecedented amount of radiometric data has been previously quality-controlled for real-time distribution and ocean optics applications, yet some issues affecting the accuracy of measurements at depth have been identified such as changes in sensor dark responsiveness to ambient temperature, with time and according to the material used to build the instrument components. Here, we propose a quality-control procedure to solve these sensor issues to make Argo radiometry data available for delayed-mode distribution, with associated error estimation. The presented protocol requires the acquisition of ancillary radiometric measurements at the 1000 dbar parking depth and night-time profiles. A test on >10,000 profiles from across the world revealed a quality-control success rate >90% for each band. The procedure shows similar performance in re-qualifying low radiometry values across diverse oceanic regions. We finally recommend, for future deployments, acquiring daily 1000 dbar measurements and one night profile per year, preferably during moonless nights and when the temperature range between the surface and 1000 dbar is the largest.
测量水下光场是国际生物地球化学 Argo 计划的一项关键任务。自 2012 年以来,全球范围内每 1 至 10 天就会获取 0-250 dbar 深度下的 380、412 和 490nm 下的下行辐照度以及光合有效辐射(PAR)剖面数据。由此产生的前所未有的辐射测量数据已经过实时分布和海洋光学应用的质量控制,但已经确定了一些影响深度测量精度的问题,例如传感器对环境温度的暗响应随时间和用于构建仪器组件的材料而变化。在这里,我们提出了一种质量控制程序来解决这些传感器问题,以便为延迟模式分布提供 Argo 辐射测量数据,并进行相关误差估计。该协议要求在 1000 dbar 停泊深度和夜间剖面处获取辅助辐射测量。对来自全球各地的超过 10,000 个剖面的测试表明,每个波段的质量控制成功率都超过 90%。该程序在重新校准不同海洋区域的低辐射值方面表现出相似的性能。我们最后建议,对于未来的部署,最好在无月之夜和海面与 1000 dbar 之间的温度范围最大时,每天获取 1000 dbar 测量值和每年获取一个夜间剖面。