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Vertical mixing in the Baltic Sea and consequences for eutrophication - A review

机译:波罗的海的垂直混合和富营养化的后果-评论

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摘要

In the transition area between the North Sea and the Baltic Sea entrainment processes dominate the vertical mixing in the inflowing saline bottom water. The hot spots of these processes are located at the Darss Sill and the Bornholm Channel in the western Baltic Sea. In the central Baltic Sea the horizontal advection of saline water in deep layers below the permanent halocline dominate the temporal changes and associated transports. This is accompanied by the turbulent vertical transport through the halocline into the surface layers. The related vertical salt transport into the entire surface mixed layer estimated by various methods is slightly above 30 kg/(m~2 a). During stagnation periods, the residence time of the deep water in the Eastern Gotland Basin increases roughly by a factor of five. Vertical mixing through the halocline is drastically reduced when inflows are lacking, the potential processes of diapycnal mixing are discussed to the present knowledge. The turbulent motion resulting from breaking internal waves is capable of turbulent transports through the halocline corresponding to the estimates of the salt transport into the surface mixed layer. The actual knowledge about boundary mixing due to internal waves in the Baltic Sea is poor. Mesoscale eddies may contribute to the vertical mixing, but it is not known whether they really do and which of the possible direct and indirect mixing mechanisms is most effective. Near-bottom currents induced by inflow events likely enhance vertical mixing. Coastal upwelling certainly contributes to the vertical transport, but the depth of its origin and the volume transport are hard to determine for large-scale quantifications. The short spatiotemporal scale of turbulent transports through the halocline resulting in a weakening of the halocline during summer together with the mixing of the entire surface layer down to the halocline in winter form a consistent description of the vertical salt transport. It is hypothesised that the longer residence time of the deep water during stagnation periods results from the lack of energy imported by the inflows and directly or indirectly feeding the diapycnal mixing processes. The vertical transport of nutrients such as the phosphate is quantitatively not sufficiently understood and needs further interdisciplinary research activities.
机译:在北海和波罗的海之间的过渡区域,夹带过程主导着流入的盐分底水中的垂直混合。这些过程的热点位于波罗的海西部的Darss Sill和Bornholm海峡。在波罗的海中部,永久盐湖下方深层中的盐水水平对流主导着时间变化和相关的运输。这伴随着通过盐环进入表层的湍流垂直传输。通过各种方法估算的垂直盐分向整个表面混合层的迁移略高于30 kg /(m〜2 a)。在停滞期,东部哥特兰盆地深水的停留时间大约增加了五倍。当缺乏流入时,通过卤代烃的垂直混合会大大减少,到目前的知识,已经讨论了潜在的透析混合过程。由破坏内波引起的湍流运动能够通过盐湖进行湍流传输,这对应于盐向表面混合层传输的估计。关于由于波罗的海内波引起的边界混合的实际知识很少。中尺度涡旋可能有助于垂直混合,但尚不清楚它们是否确实起作用,以及哪种可能的直接和间接混合机制最有效。流入事件引起的近底电流可能会增强垂直混合。沿海上升流当然有助于垂直传输,但是很难确定其起源的深度和体积传输。穿过盐湖的湍流运输的时空尺度短,导致夏季盐湖的减弱以及冬季整个表层向下混合到盐湖的混合形成了垂直盐分运移的一致描述。假设深水在停滞期间的停留时间较长是由于流入水缺乏能量,直接或间接给水混合过程提供了能量。营养物质(例如磷酸盐)的垂直运输在定量上还不够充分,需要进一步的跨学科研究活动。

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  • 来源
    《Progress in Oceanography》 |2009年第1期|47-80|共34页
  • 作者单位

    Leibniz Institute for Baltic Sea Research (IOW), Seestrasse 75, D-18119 Rostock-Warnemunde, Germany Federal Maritime and Hydrographic Agency (BSH), Bernard-Nocht-Strasse 78, D-20359 Hamburg, Germany;

    Leibniz Institute for Baltic Sea Research (IOW), Seestrasse 75, D-18119 Rostock-Warnemunde, Germany;

    Leibniz Institute for Baltic Sea Research (IOW), Seestrasse 75, D-18119 Rostock-Warnemunde, Germany;

    Leibniz Institute for Baltic Sea Research (IOW), Seestrasse 75, D-18119 Rostock-Warnemunde, Germany;

    Leibniz Institute for Baltic Sea Research (IOW), Seestrasse 75, D-18119 Rostock-Warnemunde, Germany;

    Leibniz Institute for Baltic Sea Research (IOW), Seestrasse 75, D-18119 Rostock-Warnemunde, Germany;

    Leibniz Institute for Baltic Sea Research (IOW), Seestrasse 75, D-18119 Rostock-Warnemunde, Germany;

    Leibniz Institute for Baltic Sea Research (IOW), Seestrasse 75, D-18119 Rostock-Warnemunde, Germany;

    Leibniz Institute for Baltic Sea Research (IOW), Seestrasse 75, D-18119 Rostock-Warnemunde, Germany;

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