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首页> 外文期刊>Ocean Science Journal >Enhanced biological activity by an anticyclonic warm eddy during early spring in the East Sea (Japan Sea) detected by the geostationary ocean color satellite
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Enhanced biological activity by an anticyclonic warm eddy during early spring in the East Sea (Japan Sea) detected by the geostationary ocean color satellite

机译:对地静止海洋彩色卫星探测到东海(日本海)早春反气旋暖涡增强了生物活性

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摘要

The high primary production enhanced by anticyclonic eddies and hourly variation pattern in the productivity during the spring season in the East Sea were first investigated using the first Korean Geostationary Ocean Color Imager (GOCI). Even though the stratification for a seasonal spring bloom is not well developed in the water column in early April in the East Sea, a physical upward water flux movement at the periphery of the anticyclonic eddies could remain the phytoplankton in euphotic zone to sustain high chlorophyll-a concentration conditions in the Ulleung Basin. At this time, nutrients were no major controlling factor for phytoplankton growth since concentrations of major nutrients (nitrate, silicate, and phosphate) were relatively high in the observed eddy sites based on the observation data from the Korean Oceanographic Data Center (KODC). The estimated mixed layer depth (MLD) significantly shallower at the periphery supports for this mechanism. The hourly primary productivity estimation based on a Carbon-based Productivity Model (CbPM) provides a bimodal pattern along the time especially in L1 with an approximately one order magnitude difference between the lowest and highest values of productivities on 5 April, 2011. Potential possibilities for this large discrepancy in the hourly productivity and some thoughts on a short time in situ incubation method were discussed.
机译:首先使用第一台韩国地球静止海洋彩色成像仪(GOCI)对东海春季反气旋涡旋和生产力每小时变化模式增强的高初级生产力进行了研究。即使4月初东海水柱中春季春季开花的分层没有得到很好的发展,反气旋涡旋外围的物理向上的水通量运动仍可能使富营养区的浮游植物保持高叶绿素水平。乌隆盆地的集中条件。此时,根据韩国海洋学数据中心(KODC)的观测数据,在观测到的涡流部位,主要营养素(硝酸盐,硅酸盐和磷酸盐)的浓度相对较高,因此营养素不是浮游植物生长的主要控制因素。估计的混合层深度(MLD)在此机制的外围支持处明显较浅。基于碳生产率模型(CbPM)的每小时主要生产率估算提供了沿时间的双峰模式,尤其是在L1时段,其最低生产率值和最高生产率值在2011年4月5日之间大约相差一个数量级。讨论了每小时生产率的巨大差异以及对短时间原位孵育方法的一些想法。

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