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Stratification and Circulation in Lake Pontchartrain

机译:Pontcharrain湖中的分层和循环

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A three-dimensional hydrodynamic model (Princeton Ocean Model, POM) was used to study the dynamic behavior of a saltwater plume originating from a navigation canal and advancing in the lake. The Inner Harbor Navigational Canal (IHNC) is part of the Mississippi River Gulf Outlet, which permits ships to navigate from the Gulf of Mexico to Lake Pontchartrain and the Mississippi River at New Orleans. Lake Pontchartrain is a relatively shallow, brackish estuarine lake with a mean depth of less than 4 m and a mean salinity of 7 ppt. At times, the IHNC brings highly saline water (> 20 ppt) into Lake Pontchartrain. Under certain conditions, this higher density water has been observed to form a thin layer of high salinity water over a large area near the bottom of the lake. Field data showed that the stratified zone was approximately 0.5 m deep and up to 250 km~2 in area. A three-dimensional hydrodynamic model (POM) was developed for the area to study the effect of Lake circulation on the location and stability of the saltwater plume. Field and laboratory data were used for model calibration and verification. The forcing functions for the model include tide from nearby connections to the Gulf of Mexico, wind and river flows from tributaries to the north and west. The model includes 20 sigma levels with surface and bottom refinement in order to capture the momentum transfer from the wind shear and the density current near the bed. The horizontal grid resolution is 600 m.
机译:使用三维流体动力学模型(普林斯顿海洋模型,POM)来研究源自导航运河的盐水羽流的动态行为,并在湖中推进。内港导航运河(IHNC)是密西西比河海湾出口的一部分,允许船舶从墨西哥湾向庞加关湖和新奥尔良的密西西比河航行。 Pontcharrtrain湖是一个相对较浅的,咸培解湖湖,其平均深度小于4米,平均盐度为7个PPT。有时,IHNC将高度盐水(> 20 ppt)带入蓬施塔尔湖。在某些条件下,已经观察到这种较高的密度水在湖底附近的大面积上形成一层薄的高盐水。现场数据表明,分层区域深度为0.5米,面积高达250 km〜2。为该地区开发了一种三维流体动力学模型(POM),以研究湖循环对盐水羽流的位置和稳定性的影响。场和实验室数据用于模型校准和验证。该模型的强制功能包括附近与墨西哥湾的附近连接,风和河流从北部和西部的支流流过。该模型包括具有表面和底部改进的20个σ水平,以捕获从风剪的动量和床附近的密度电流。水平网格分辨率为600米。

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