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首页> 外文期刊>Journal of marine systems: journal of the European Association of Marine Sciences and Techniques >Development of under-ice stratification in Himmerfjarden bay, North-Western Baltic proper, and their effect on the phytoplankton spring bloom
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Development of under-ice stratification in Himmerfjarden bay, North-Western Baltic proper, and their effect on the phytoplankton spring bloom

机译:在HIMMERFJARDEN BAY,西北波罗的海的底层分层发展,对浮游植物春天绽放的影响

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摘要

Seasonal sea ice cover reduces wind-driven mixing and allows for under-ice stratification to develop. These under-ice plumes are a common phenomenon in the seasonal sea ice zone. They stabilize stratification and concentrate terrestrial runoff in the top layer, transporting it further offshore than during ice-free seasons. In this study, the effect of sea ice on spring stratification is investigated in Himmeitarden bay in the NW Baltic Sea. Distinct under-ice plumes were detected during long ice seasons. The preconditions for the development of the under-ice plumes are described as well as the typical spatial and temporal dimensions of the resulting stratification patterns. Furthermore, the effect of the under-ice plume on the timing of the onset and the maximum of the phytoplankton spring bloom were investigated, in terms of chlorophyll-a (Chl-a) concentrations. At the head of the bay, bloom onset was delayed on average by 18 days in the event of an under-ice plume. However, neither the maximum concentration of Chl-a nor the timing of the Chl-a maximum were affected, implying that the growth period was shorter with a higher daily productivity. During this period from spring bloom onset to maximum Chl-a, the diatom biomass was higher and Mesodinium rubrum biomass was lower in years with underice plumes compared to years without under-ice plumes. Our results thus suggest that the projected shorter ice seasons in the future will reduce the probability of under-ice plume development, creating more dynamic spring bloom conditions. These dynamic conditions and the earlier onset of the spring bloom seem to favor the M. rubrtan rather than diatoms.
机译:季节性海冰盖减少了风力驱动的混合,并允许冰块分层开发。这些冰盖羽毛是季节性海冰区的常见现象。它们在顶层稳定分层并浓缩陆地径流,在无冰季期间进一步运输。在这项研究中,在NW波罗的海的Himmeitarden Bay中研究了海冰对弹簧分层的影响。在长冰季期间检测到明显的冰羽毛。描述了冰羽羽缘的开发的前提条件以及所得分层图案的典型空间和时间尺寸。此外,就叶绿素-A(CHL-A)浓度而言,研究了冰冷的羽毛对发作时序和最大的浮游植物春季绽放的影响。在海湾的头部,在冰布羽流情况下,盛开的发作平均延迟18天。然而,CHL-A的最大浓度也不是CHL-A最大的时间受到影响,这意味着生长期较短,日本生产率较高。在从春天绽放到最大CHL-A的此期间,硅藻硅藻素较高,并且在没有冰块底层的岁月相比,患有底层羽毛的多年较少的硅藻渣生物量较低。因此,我们的结果表明,未来的预计较短的冰季会降低冰布羽绒开发的概率,从而产生更多动态的春季绽放条件。这些动态条件和春天绽放的早期发作似乎有利于M. Rubrtan而不是硅藻。

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