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首页> 外文期刊>AMBIO: A Journal of the Human Environment >The Baltic Haline Conveyor Belt or The Overturning Circulation and Mixing in the Baltic
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The Baltic Haline Conveyor Belt or The Overturning Circulation and Mixing in the Baltic

机译:波罗的海盐渍传送带或波罗的海的倾覆环流和混合

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摘要

A study of the water-mass circulation of the Baltic has been undertaken by making use of a three dimensional Baltic Sea model simulation. The saline water from the North Atlantic is traced through the Danish Sounds into the Baltic where it upwells and mixes with the fresh water inflow from the rivers forming a Baltic haline conveyor belt. The mixing of the saline water from the Great Belt and Öresund with the fresh water is investigated making use of overturning stream functions and Lagrangian trajectories. The overturning stream function was calculated as a function of four different vertical coordinates (depth, salinity, temperature and density) in order to understand the path of the water and where it upwells and mixes. Evidence of a fictive depth overturning cell similar to the Deacon Cell in the Southern Ocean was found in the Baltic proper corresponding to the gyre circulation around Gotland, which vanishes when the overturning stream function is projected on density layers. A Lagrangian trajectory study was performed to obtain a better view of the circulation and mixing of the saline and fresh waters. The residence time of the water masses in the Baltic is calculated to be 26–29 years and the Lagrangian dispersion reaches basin saturation after 5 years.
机译:通过利用三维波罗的海模型模拟,对波罗的海的水质循环进行了研究。来自北大西洋的咸水通过丹麦之声追溯到波​​罗的海,在那里向上流并与从河流流入的淡水混合,形成波罗的海盐渍传送带。利用倾覆的水流函数和拉格朗日轨迹研究了大带和厄勒海峡的咸水与淡水的混合。为了了解水的路径以及水在其上流和混合的位置,倾覆流函数是根据四个不同的垂直坐标(深度,盐度,温度和密度)计算的。在波罗的海自然界中发现了与南大洋的迪肯细胞类似的假想深度翻转单元的证据,对应于哥得兰岛的回旋环流,当翻转流功能投影到密度层时消失。进行了拉格朗日轨迹研究,以更好地了解盐水和淡水的循环和混合。水团在波罗的海的停留时间经计算为26-29年,拉格朗日色散在5年后达到盆地饱和。

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  • 来源
    《AMBIO: A Journal of the Human Environment》 |2004年第4期|p.261-266|共6页
  • 作者单位

    Kristofer Döös is an associate professor in physical oceanography at the Department of Meteorology at Stockholm University, where he has worked on the SWECLIM project and coordinated the EU project TRACMASS. He has previously worked at Southampton Oceanography Centre and at the Institute of Oceanographic Sciences. He has a PhD in oceanography from Université de Pierre et Marie Curie in Paris and has been a guest professor at Université de Bretagne Occidentale. His address: MISU, SE-106 91 Stockholm. E-mail: doos@misu.su.se;

    H.E. Markus Meier is research oceanographer. He is responsible for the development of a 3D-coupled ice-ocean model for the Baltic Sea and Arctic Ocean. His current research interest is the long-term variability of the ice-ocean system in past and future climate. His address: Rossby Centre, Swedish Meteorological and Hydrological Institute, SE-601 76 Norrköping, Sweden. E-mail: markus.meier@smhi.se;

    Ralf Döscher is an ocean climate researcher. He is involved in numerical modelling of the oceans and responsible for the coupling with the atmosphere. His research interests are current and possible future physical states of the Baltic Sea and Arctic Ocean. His address: Rossby Centre, Swedish Meteorological and Hydrological Institute (SMHI), SE-601 76 Norrköping, Sweden. E-mail: ralf.doescher@smhi.se;

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