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首页> 外文期刊>Ocean Science Discussions >Investigation of saline water intrusions into the Curonian Lagoon (Lithuania) and two-layer flow in the Klaipda Strait using finite element hydrodynamic model
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Investigation of saline water intrusions into the Curonian Lagoon (Lithuania) and two-layer flow in the Klaipda Strait using finite element hydrodynamic model

机译:用有限元流体动力学模型研究盐水泻药进入库康安泻湖(立陶宛)的两层流动,与klaipda海峡两层流动

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This work is focused on the application of a modelling system to simulate 3-D interaction between the Curonian Lagoon and the Baltic Sea coastal waters and to reflect spatiotemporal dynamics of marine waters in the Curonian Lagoon. The model system is based on the finite element programme package SHYFEM which can be used to resolve the hydrodynamic equations in lagoons, coastal seas, estuaries and lakes. The results of a one year (2009) 3-D model simulation with real weather and hydrological forcing show that the saline water intrusions from the sea through Klaipda Strait are gradually decreasing with distance from the sea and become negligible (average annual salinity about 0.57) at a distance of about 20 km to the south of Kiauls Nugara island. Analyses of the simulation results also show this area to be highly heterogeneous according to the vertical salinity distribution. While in the deeper Klaipda Strait (harbour waterway) differences in average salinity between near bottom and surface layers varies in the range 2–2.5, in the rest of the Curonian Lagoon it is less than 0.5. The exchange flow showed vertical structure, but was horizontally uniform with the presence of a two-directional flow that from time to time changes to either saline water one-directional flow to the Curonian Lagoon or fresh water one-directional flow to the sea. Two-directional flow duration decreases with a distance from sea entrance in Klaipda Strait from around 180 days yr?1 close to the sea entrance to 50 days yr?1 just behind Kiauls Nugara island. One-directional outflow duration is increasing with a distance from the sea entrance from 100 to 225 days yr?1. One-directional inflow duration occurs in the range of 70–100 days yr?1. The analysis of the ratio of buoyancy layer thickness to water depth (hb/H) and the Wedderburn number identified the main importance of wind action on the flow structure. Strong winds from the North and NW determine a barotropic inflow which is mostly responsible for the salt water intrusion into the Curonian Lagoon. Absence of wind or cross-strait wind regimes allows the maintenance of a two-layer flow typical of estuarine dynamics.
机译:这项工作专注于应用建模系统,模拟库尔尼亚泻湖与波罗的海沿海水域之间的三维互动,并反映了库森泻湖海水的时空动态。模型系统基于有限元程序包SHYFEM,其可用于在泻湖,沿海,河口和湖泊中解析流体动力方程。一年(2009年)3-D模型模拟具有真正的天气和水文迫使表明,来自海峡的盐水侵入海峡逐渐减少,距离海域距离并变得忽略不计(平均年盐度约0.57)距离Kiamul Nugara岛的南部约20公里的距离。仿真结果的分析还显示了根据垂直盐度分布的高度异质的该区域。虽然在更深的Klaipda海峡(港口水路)近底部和表面层之间平均盐度的差异在2-2.5范围内变化,但在其余的库隆泻湖中,它小于0.5。交换流显示垂直结构,但是水平均匀,存在双向流动的存在,即不时变为盐水水一方面流向库隆泻湖或淡水一方面流向大海。双向流动持续时间随着距海峡海峡两岸的两方向流动持续时间从大约180天左右到海入口到50天靠近海入口,恰到好处,在Kiamul Nugara岛后面。单向流出持续时间随着从100到225天的距离的距离而增加,Yr?1。单向流入持续时间发生在70-100天YR?1的范围内。分析浮力层厚度与水深(HB / H)的比率和婚礼号标明风动作对流动结构的主要重要性。来自北方的强风和NW决定了波奇罗的流入,主要负责盐水侵入库康安泻湖。没有风或两岸风力制度允许维持典型的雌曲筒动力学的双层流动。

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