首页> 外文会议>International symposium on contaminated sediments: Characterization, evaluation, mitigation/restoration, and management strategy performance >Numerical Modeling of Hydrodynamic Circulation and Cohesive Sediment Transport in Hartwell Lake, South Carolina/Georgia, USA
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Numerical Modeling of Hydrodynamic Circulation and Cohesive Sediment Transport in Hartwell Lake, South Carolina/Georgia, USA

机译:哈特韦尔湖,南卡罗来纳州/佐治亚州水动力循环与粘性沉积物运输的数值模拟

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This paper describes numerical modeling of hydrodynamic circulation and cohesive sediment transport in Hartwell Lake, South Carolina/Georgia, a U.S. Army Corps of Engineers (USACE) hydropower and flood control reservoir. A U.S. Environmental Protection Agency (EPA) "Superfund" site is located on a tributary to the lake because of high concentrations of polychlorinated biphenyls (PCBs) in the lake sediments. The primary objective of this study involves prediction of depositional zones for sediments transported within the reservoir. The EFDC (Environmental Fluid Dynamics Code) model developed by Hamrick (1996) is used to describe lake hydrodynamics and sediment fate. Historical records of wind and flow were used to determine frequencies of occurrence and representative conditions for prediction of long-term deposition zones for sediment transported by the flow. Sensitivity of hydrodynamic processes to model parameters were investigated and wind was found to be the major force driving the circulation. Model results for cases with realistic long-term forcing indicated likely zones of sediment deposition, useful for mitigation of pollution problems as well as predictions of reservoir lifetime and development of maintenance schemes.
机译:本文介绍了哈特韦尔湖,南卡罗来纳州/佐治亚州,工程师(美国陆军工程兵团),水电和防洪水库的美国军团水动力循环和粘性泥沙输移的数值模拟。一个美国环境保护署(EPA)的“超级基金”遗址位于一条支流湖,因为高浓度的湖泊沉积物中多氯联苯(PCBs)的。本研究的主要目的涉及一种用于储器内输送沉积物沉积区的预测。该EFDC(环境流体力学代码)由哈姆里克(1996)开发的模型被用来描述湖泊水动力和泥沙的命运。风和流量的历史记录被用于确定发生和对沉积物由流动运送长期沉积区的预测代表性条件的频率。流体动力学过程对模型参数的敏感性进行了调查,风被认为是驱动循环的主要动力。模型结果与现实的长期情况下强迫表明泥沙淤积的可能区域,对于污染问题缓解,以及水库的使用寿命和维修方案的发展的预测是有用的。

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