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Linking deep convection and phytoplankton blooms in the northern Labrador Sea in a changing climate

机译:气候变化使拉布拉多海北部的深对流与浮游植物的繁华联系在一起

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摘要

Wintertime convective mixing plays a pivotal role in the sub-polar North Atlantic spring phytoplankton blooms by favoring phytoplankton survival in the competition between light-dependent production and losses due to grazing and gravitational settling. We use satellite and ocean reanalyses to show that the area-averaged maximum winter mixed layer depth is positively correlated with April chlorophyll concentration in the northern Labrador Sea. A simple theoretical framework is developed to understand the relative roles of winter/spring convection and gravitational sedimentation in spring blooms in this region. Combining climate model simulations that project a weakening of wintertime Labrador Sea convection from Arctic sea ice melt with our framework suggests a potentially significant reduction in the initial fall phytoplankton population that survive the winter to seed the region’s spring bloom by the end of the 21st century.
机译:冬季对流混合在北极北极亚春季春季浮游植物的开花中起着关键作用,因为它有利于浮游植物在光依赖的生产与由于放牧和重力沉降而造成的损失之间的竞争中生存。我们使用卫星和海洋的再分析表明,北部拉布拉多海北部地区平均冬季最大混合层深度与4月叶绿素浓度成正相关。建立了一个简单的理论框架,以了解该区域春季/春季对流和重力沉降在春季开花中的相对作用。结合气候模型模拟(预测北极海冰融化导致冬季拉布拉多海对流减弱)与我们的框架相结合,表明可能在冬季生存下来的最初秋季浮游植物种群数量显着减少,并在21s结束时播种该地区的春季开花。 > 世纪。

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