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Biophysical ocean observation in the southeastern Bering Sea

机译:白令海东南部的生物物理海洋观测

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Integrated ocean observation, from physical and atmos-pheric forcing mechanisms to the distribution and abundance of top-level predators, is critical to the investigation of marine ecosystems and the impact of climate change on them. We integrated data from a biophysical mooring in the southeast Bering Sea to create a one-year snapshot of ocean dynamics in this remote large marine ecosystem. Distinct patterns in production (chlorophyll), zooplankton biovolume (copepods and euphausiids) and the occurrence of zoo-plankton predators (fin and right whales) were defined and related to discrete features in the annual physical cycle. Peaks in prey and predator cycles were linked to spikes in fluorescence that occurred at the onset of water column stratification in late spring 2006 and the appearance of sea ice in late winter 2007. These data illustrate the capability and potential of integrated ocean observing systems (IOOS) to describe seasonal variability and linkages in a remote marine ecosystem.
机译:从物理和大气强迫机制到顶级捕食者的分布和丰富度,综合海洋观测对于研究海洋生态系统及其对气候的影响至关重要。我们整合了白令海东南部生物物理系泊系统的数据,以创建这一偏远大型海洋生态系统中海洋动力学的一年快照。定义了不同的生产模式(叶绿素),浮游动物的生物量(足足类和足类动物)和浮游动物捕食者(鳍鲸和右鲸)的发生,并且与年度物理周期中的离散特征相关。捕食和捕食者周期的峰值与2006年春末水柱分层开始时和2007年冬末海冰出现时发生的荧光峰值有关。这些数据说明了综合海洋观测系统(IOOS)的能力和潜力。 )来描述偏远海洋生态系统中的季节变化和联系。

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