波浪滑翔机和卫星测量的互补使用:描述太平洋盆地中Chl-a荧光的空间去相关尺度

Nicole L. Goebel , Sergey Frolov , Christopher A. Edwards
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引用次数: 23

摘要

21世纪生态系统科学面临的一个关键挑战是描述气候变化导致的生态系统生产力的新趋势,并更好地预测生态系统变异的周期。实现这一目标的第一步是能够在广泛的空间和时间尺度上描述浮游植物的变异性。本文利用波浪滑翔机(WG)荧光计在太平洋上进行的15个月的测量,了解WGs如何补充卫星平台上现有的基于叶绿素的浮游植物生物量测量。对WG样带的广泛分析表明,WG荧光计读数可靠地表征了四种不同生态系统类型(包括沿海上升流、过渡带、少营养和赤道上升流)中卫星Chl-a测量的类似大尺度变化。WG测量提供的补充信息包括沿海Chl-a斑块的更好分辨率和开放海洋中突出的日蚀旋回。本研究中从WG荧光计测量计算的去相关尺度为设计观测系统、过程实验和数据同化研究提供了必要的信息。最后,我们提出了如何利用WGs锚定卫星测量和开发更好的预测模型。
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Complementary use of Wave Glider and satellite measurements: Description of spatial decorrelation scales in Chl-a fluorescence across the Pacific basin

A key challenge for ecosystem science in the 21st century is to characterize emerging trends in ecosystem productivity due to climate change and to better predict cycles in ecosystem variability. A first step toward this goal is to be able to characterize phytoplankton variability across a wide range of spatial and temporal scales. In this paper, 15 months of Wave Glider (WG) fluorometer measurements made across the Pacific Ocean were used to understand how WGs complement existing chlorophyll-a-based measurements of phytoplankton biomass from satellite platforms. Extensive analysis of the WG transects demonstrated that WG fluorometer readings reliably characterized similar large-scale variability in satellite Chl-a measurements in four distinct ecosystem types including coastal upwelling, transition zone, oligotrophic and equatorial upwelling regions. Complementary information provided by WG measurements included better resolution of coastal Chl-a patches and prominent diel cycles in the open ocean. The decorrelation scales computed from WG fluorometer measurements in this study provide necessary information for designing observing systems, process experiments, and data assimilation studies. We conclude this paper by suggesting how WGs can be used to anchor satellite measurements and to develop better predictive models.

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