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Scenario simulations of recent Baltic Sea inflows using the hydrodynamic transport model GETM

机译:利用流体动力运输模型GetM的近期波罗的海流入的情景模拟

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The aim of the present study is to simulate larger salt water inflows from the North Sea into the Baltic Sea reaching the Gotland Deep with the GETM (http://getm.eu) hydrodynamical model Specifically we want to test the influence of different model settings, different initial conditions and a variety of forcing conditions on the occurrences of salt water inflows. The model area covers the whole Baltic Sea and North Sea, therefore no prescribed sealevel forcing in the Kattegat area is applied. Initial conditions and 3D boundary conditions are derived from climatological data [10]. The tidal forcing at the open boundaries in the English Channel and the open North Sea are constructed from 13 partial tides taken from the TOPEX/POSEIDON harmonical tide analysis. Relatively coarse meteorological forcing available from ECMWF re-analysis data was used and seems to be of sufficient spatial resolution in order to reproduce the main features of the inflow dynamics during recent years. For the river inflow we used climatological data for the 30 most important rivers within the model area. It can be demonstrated, that the basic dynamics of sea level variations in that area is already reproduced by forcing the model with such low resolution meteorological data (0.5°×0.5°). Also the main characteristics of bottom and surface salinity are most of the time simulated sufficiently well. Further we are able to show, that for the larger events the inflowing salt water from the Belt Sea is also progressing in the simulations until it reaches the Gotland Deep. Finally we compare the modeled scenarios of the 2002 and 2003 inflows with measured data. From that we try to identify the most important criteria that allow salt water inflows to occur and we try to better assess the range of uncertainty.
机译:本研究的目的是模拟从北海的大盐水流入波罗的海到达哥特兰深入了解了GetM(http://getm.eu)流体动力学模型,具体我们要测试不同模型设置的影响,不同的初始条件和盐水流量发生的各种迫使条件。模型区域涵盖整个波罗的海和北海,因此在凯蒂塔地区没有规定的海水迫使。初始条件和3D边界条件来自气候数据[10]。在英国频道和开放式北海的公开边界处强迫潮流由来自Topex / Poseidon谐波潮汐分析的13个部分潮汐构成。使用ECMWF重新分析数据可获得的相对粗略的气象迫使,似乎具有足够的空间分辨率,以便在近年来再现流入动力学的主要特征。对于河流流入,我们使用了模型区域内30最重要的河流的气候数据。可以证明,通过强制具有这种低分辨率气象数据(0.5°×0.5°),已经通过了该区域的海平变化的基本动态。此外,底部和表面盐度的主要特征是大部分时间都充分模拟。此外,我们能够展示,对于较大的事件,来自皮带大海的流入盐水也在模拟中进行,直到它深入到达达港深处。最后,我们将2002和2003流入的模型方案与测量数据进行了比较。从那里,我们试图确定允许盐水流入发生的最重要标准,我们试图更好地评估不确定性范围。

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