首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Consequences of inhibition of mixed-layer deepening by the West India Coastal Current for winter phytoplankton bloom in the northeastern Arabian Sea
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Consequences of inhibition of mixed-layer deepening by the West India Coastal Current for winter phytoplankton bloom in the northeastern Arabian Sea

机译:西印度洋海流抑制混合层加深对阿拉伯海东北部冬季浮游植物开花的影响

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The intense winter phytoplankton bloom during November–February in the northeastern Arabian Sea (NEAS) was thought, until recently, to be controlled only by a convective deepening of the mixed layer (ML) owing to cool and dry northeasterlies. But a recent study has shown that the deepening of the ML in the southern NEAS is inhibited by the poleward advection of low-salinity water from the south by the West India Coastal Current (WICC). Using an Ocean General Circulation Model coupled with an ecosystem model, we investigate the consequences of the inhibition of mixed-layer deepening for winter phytoplankton bloom in the NEAS. We show that, during the winter monsoon, the shallow ML inhibits the entrainment of nutrients in the southern NEAS. Strong (weak) positive nitrate tendency in the northern (southern) NEAS seen in the model during the winter monsoon is maintained by strong (weak) entrainment. As a result, the chlorophyll integrated to 200 m depth from the surface is lower in the southern NEAS than in the northern NEAS. The inhibition of mixed-layer deepening in the south affects the size-based distribution of small and large phytoplankton, nutrient limitation terms and growth rate, and their elemental composition. The WICC, which inhibits the deepening of the ML and affects the winter bloom in the NEAS, is driven by coastal Kelvin waves generated by remote winds. This paper demonstrates a mechanism by which remotely forced coastal Kelvin waves impact the biology in the north Indian Ocean.
机译:直到最近,人们一直认为阿拉伯海东北部(NEAS)在11月至2月期间会出现剧烈的冬季浮游植物开花,这是由于凉爽和干燥的东北风只能通过混合层(ML)的对流加深来控制的。但是最近的一项研究表明,西印度洋海流(WICC)从南部向南低盐度水的极地平流抑制了南部NEAS ML的加深。使用海洋总循环模型和生态系统模型,我们研究了在NEAS中抑制混合层加深对冬季浮游植物开花的影响。我们表明,在冬季季风期间,浅层ML抑制了NEAS南部的营养物质的夹带。在冬季季风期间,模型中看到的北部(南部)NEAS中的强(弱)正硝酸盐趋势通过强(弱)夹带来维持。结果,南部NEAS的距表面200 m深度的叶绿素比北部NEAS的低。南部混合层加深的抑制作用影响大小型浮游植物的大小分布,养分限制项和生长速率以及它们的元素组成。 WICC是由偏风产生的沿海开尔文波驱动的,它抑制了ML的加深并影响了NEAS的冬季开花。本文演示了一种机制,远程强迫沿海开尔文波影响北印度洋的生物学。

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