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Louisiana Chenier Plain Regional Hydrodynamic and Salinity Numerical Model

机译:路易斯安那州Chenier普通区域水动力学和盐度数值模型

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This paper describes a coupled one-and two-dimensional hydrodynamic and salinity transport model developed for the Chenier Plain along the southwestern Louisiana coast. The Louisiana Chenier Plain encompasses the coastal zone and marshes from Freshwater Bayou west of Vermilion Bay to Sabine Lake near the Texas-Louisiana border. Over the years, man-made changes to the regional circulation patterns have caused documented land loss, increased salinities, marsh deterioration, impacts on seasonal inundation patterns and drainage potentials, and greater vulnerability to storm surges. Alterations include the construction of several large and deep artificial ship channels, numerous dredged access canals to enhance navigation, the Gulf Intracoastal Waterway, and the presence of roadways disrupting the natural hydrology of the marsh. The 500m × 500m MIKE21 grid represents the lakes, marshes, and a portion of the near-shore Gulf of Mexico, covering an area greater than 10,800 square kilometers. The natural and man-made system of inland waterways, encompassing 128 channels spanning across 1400 kilometers are represented through the one-dimensional model MIKE11. The numerical model has been validated through water-level, salinity and velocity measurements. It is noteworthy that the model incorporates real-time hydraulic structure operations. The model compared well with the field measurements. The Root Mean Square Error for the water level and salinity was in the range of 5 to 8 cm and 3 to 7 parts per thousand, respectively. The model predicts water levels, discharges, depth-averaged velocities, and salinities across the Chenier Plain. The validated model will be used as a tool to evaluate proposed restoration and management strategies.
机译:本文介绍了沿路易斯安那州海岸西南部的Chenier平原开发的耦合的单维流体动力和盐度传输模型。路易斯安那州Chenier Planpps包括来自德克萨斯路易斯安那州边境附近的朱米尔湾西谷湾淡水湾的沿海地区和沼泽地。多年来,区域流通模式的人为变革导致了记录的土地损失,增加盐度,沼泽恶化,对季节性淹没模式和排水潜力的影响,以及对风暴潮的更大脆弱性。改变包括建造几种大型和深层人造渠道,众多疏浚的进入运河增强导航,海湾颅内水路,以及扰乱沼泽自然水文的道路的存在。 500米×500M Mike21 Grid代表湖泊,沼泽和墨西哥近岸海湾的一部分,覆盖大于10,800平方公里的面积。内陆水道的自然和人造系统,包括跨越1400公里的128个通道,通过一维模型MIKE11代表。通过水位,盐度和速度测量验证了数值模型。值得注意的是,该模型采用实时液压结构操作。该模型与现场测量相比均匀。水位和盐度的根均方误差分别为5至8厘米,分别为3至7份/份。该模型预测克莱尔平原上的水位,放电,深度平均速度和盐度。经过验证的模型将被用作评估拟议恢复和管理策略的工具。

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