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Numerical Modeling of Flow, Sediment, and Salinity in Lake Pontchartrain during the Bonnet Carre Spillway Flood Release

机译:帽子Carre Spillway洪水释放湖蓬施拉特湖流量,沉积物和盐度的数值模型

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In order to protect the city of New Orleans from the Mississippi River flooding, the Bonnet Carre Spillway (BCS) was constructed from 1929 to 1936 to divert flood water from the river into Lake Pontchartrain and then into the Gulf of Mexico. However, a BCS opening event causes a lot of environmental problems in the lake. This paper presents the application of a two-dimensional numerical model (CCHE2D), developed at the National Center for Computational Hydroscience and Engineering, for simulating the flow circulations, sediment transport, and salinity distribution in Lake Pontchartrain during the Bonnet Carre Spillway (BCS) is opened for flood release. When the spillway is opened for flood release, large amount of fresh water and sediment discharged from the Mississippi River into Lake Pontchartrain, and then into the Gulf of Mexico, causing significant increase of lake sediment concentration and decrease of lake salinity. The aquatic environment and fish habitat in the lake are greatly affected by the opening events. CCHE2D model was applied to simulate the flow, sediment, and salinity in Lake Pontchartrain during the recent BCS flood releases in 1997, 2008, and 2011. The simulated results were compared with field measured data and satellite imageries, and good agreements were obtained. The flow patterns, sediment concentrations, and salinities in the lake due to the three flood release events were discussed. In addition, the salinity recovery processes in the lake were also simulated. The simulation results provides useful information to evaluate the environmental impacts of the flood events on lake ecosystems.
机译:为了保护新奥尔良市从密西西比河洪水洪水,帽子Carre Spillway(BCS)是由1929年至1936年建造的,将洪水从河流转移到湖北湖,然后进入墨西哥湾。然而,BCS开放事件导致湖中的大量环境问题。本文介绍了在国家计算冷科学和工程中心开发的二维数值模型(CCHE2D)的应用,用于模拟帽子Carre溢洪道(BCS)湖蓬施拉特湖的流动循环,沉积物和盐度分布打开洪水释放。当溢洪道打开洪水释放时,大量的淡水和沉积物从密西西比河排放到帕特加勒湖,然后进入墨西哥湾,导致湖泊沉积物浓度的显着增加和湖泊盐度下降。湖中的水生环境和鱼类栖息地受到开放活动的大大影响。应用CCHE2D模型在1997年,2008年和2011年的BCS洪水发布期间模拟了湖泊湖泊湖泊湖泊的流量,沉积物和盐度。将模拟结果与现场测量数据和卫星成像进行比较,并获得了良好的协议。讨论了由于三种洪水释放事件而导致湖泊中的流动模式,沉积物浓度和盐度。此外,还模拟了湖中的盐度回收过程。仿真结果提供了有用的信息,以评估湖泊生态系统上的洪水事件的环境影响。

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