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Offshore detachment of the Changjiang River plume and its ecological impacts in summer

机译:夏季长江羽流近海脱离及其生态影响

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The Changjiang Diluted Water (CDW) significantly influences the chemical, biological, and sedimentary processes in the Yellow and East China Seas. Based on in situ observations during the summers of 2006 and 2008 and associated satellite-derived data, the offshore detachment of the CDW plume and its mechanisms are investigated, and the related ecological impacts associated with the detached CDW are examined. We show that the detached low-salinity water from the CDW plume can partially reach the seabed, with its volume gradually diminishing from the surface to the seabed, and with a horizontal distribution that initially shifts eastward and then southward. The double-upwelling system, combined with the prevailing southerly wind and the anticyclonic eddy off the Changjiang Estuary, favors the detachment of the CDW plume. In particular, the anticyclonic eddy provides a habitat or venue for the formation and maintenance of the detached low-salinity water, and is responsible for the local presence of low-salinity water along the seabed. Data analysis indicates that this detachment can induce phytoplankton blooms and that enhanced chlorophyll?a (Chl-a) contents were significantly associated with moderate nutrient concentrations and good light conditions in the offshore low-salinity water. This study also demonstrates that the variability in the vertical distribution of Chl-a off the Changjiang Estuary is related to the offshore detached CDW, and that the local deepening of the DCM (depth of Chl-a maximum) and the peak primary production occur within the offshore CDW. More importantly, we find that high Chl-a concentrations in the bottom water can be induced by the anticyclonic-eddy-featuring offshore CDW. Our results may facilitate a better understanding on the role of the detached CDW in local marine biogeochemical processes.
机译:长江稀释水(CDW)极大地影响了黄海和东海的化学,生物和沉积过程。基于2006年和2008年夏季的实地观测以及相关的卫星资料,研究了CDW羽流的近海脱离及其机制,并研究了与CDW脱离相关的生态影响。我们显示,从CDW羽流中分离出来的低盐度水可以部分到达海床,其体积从地表到海床逐渐减小,并且水平分布最初向东移动,然后向南移动。双升流系统结合盛行的南风和长江口外的反气旋涡,有利于CDW羽流的分离。尤其是,反气旋涡旋为分离的低盐度水的形成和维持提供了栖息地或场所,并且是沿海床局部存在低盐度水的原因。数据分析表明,这种分离可引起浮游植物的繁花,而增加的叶绿素a(Chl-a)含量与离岸低盐度水中的适度养分浓度和良好的光照条件显着相关。这项研究还表明,长江口外Chl-a垂直分布的变化与离岸离岸CDW有关,并且DCM的局部深化(最大Chl-a深度)和峰值初级生产发生在离岸CDW。更重要的是,我们发现,反旋涡特征的离岸CDW可以在底水中诱导高Chl-a浓度。我们的结果可能有助于更好地了解分离的CDW在当地海洋生物地球化学过程中的作用。

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