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Evaluation of marine outfall with three-dimensional hydrodynamic and water quality modeling

机译:用三维水动力和水质模型评估海洋排污口

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Numerical models are often used to evaluate the potential impact of human alternation of natural water bodies and to help the design of the alternation to mitigate its impacts. In the past decade, three-dimensional hydrodynamic and reactive transport modeling has matured from a research subject to a practical analysis technology. This paper presents a practical study in which a three-dimensional hydrodynamic and water quality model [hydrodynamic eutrophication model (HEM-3D)] was applied to determine the optimal location for treated wastewater discharged from marine outfall system in the Keelung harbor and the adjacent coastal sea. First, model validation was conducted with respect to surface elevation, current, and water quality variables measured in the Keelung harbor station and its coastal sea. The overall performance of the model was in qualitative agreement with the available field data. The model was then used to evaluate several scenarios of the locations from marine outfall system. Based on model simulation results, a location at the northeast of Ho-Ping Island was recommended for adoption because the environmental impact is smaller than any other alternative.
机译:数值模型通常用于评估人类自然水体变更的潜在影响,并帮助设计变更以减轻其影响。在过去的十年中,三维流体动力和反应输运模型已经从研究主题发展为实用分析技术。本文提出了一项实用研究,其中应用了三维水动力和水质模型[水动力富营养化模型(HEM-3D)]确定基隆港和邻近沿海地区海洋排污系统排放的处理废水的最佳位置。海。首先,对在基隆港站及其沿海海域测得的地表高程,水流和水质变量进行了模型验证。该模型的整体性能与可用的现场数据在质量上一致。然后,该模型用于评估海洋排污系统中多个位置的方案。根据模型模拟结果,建议在和平岛的东北部选择一个地点,因为对环境的影响比其他任何方法都小。

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