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An Integrated Model of Hydrodynamics and Water Quality Transport

机译:水动力与水质运移的集成模型

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摘要

This paper presents the development of a numerical model to simulate integrated hydrodynamics and water quality transport in surface waters. The hydrodynamic module solves three-dimensional Navier-Stokes equations with or without the hydrostatic assumptions, and energy and salinity transport equations. The turbulence is modeled with generalized k-ψ transport equations. The moving free surface is explicitly handled by solving the kinematic boundary condition equation using a node-repositioning algorithm. The water quality module solves sediment and reactive biogeochemical transport equations. The set of species transport equations were transformed into three subsets using a general paradigm of diagonalization. The first subset is made of transport equations of kinetic variables for slow/kinetic reactions. The second subset composes transport equations of components for reaction invariance. The third subset consists of transport equations of equilibrium variables, which can be used for posterior calculations of reaction rates of fast/equilibrium reactions. A set of nonlinear algebraic equations based on thermodynamic approaches is employed to close the system. The Arbitrary Lagrangian-Eulerian (ALE) representation is adopted for all transport equations. To provide robust, accurate, and efficient simulations, a variety of numerical schemes are provided. These include finite element methods or a combination of finite element and Semi-Lagrangian (particle tracking) methods. The model was applied to the Loxahatchee Estuary river system. The computational domain includes Loxahatchee estuary, Intracoastal Waterways, and three major tributaries of the river - the South Fork, North Fork, and Northwest Fork. Tides, currents, and salinity that are needed for water quality simulations were obtained from the hydrodynamics module of the integrated model. To demonstrate the flexibility and generality of water quality transport module, three widely used water quality models, WASP5, QUAL2E, and CE-QUAL-ICM, can be recast in the mode of reaction networks. Applications of WASP5 to the Loxahatchee estuary system using the model illustrated that it was treated simply as one example in light of the general paradigm of modeling reactive biogeochemical transport.
机译:本文提出了一种数值模型的开发,以模拟地表水中的综合流体动力学和水质传输。流体动力学模块可求解带有或不带有静水压力假设的三维Navier-Stokes方程,以及能量和盐度输运方程。用广义的k-ψ输运方程对湍流进行建模。通过使用节点重定位算法求解运动学边界条件方程,可以明确处理运动的自由表面。水质模块解决了沉积物和反应性生物地球化学迁移方程。使用对角化的一般范式将物种运输方程组转换为三个子集。第一个子集由慢/动力学反应的动力学变量传输方程组成。第二子集构成了用于反应不变性的组分的输运方程。第三个子集由平衡变量的输运方程组成,可用于快速/平衡反应的反应速率的后验计算。基于热力学方法的一组非线性代数方程被用来关闭系统。所有输运方程均采用任意拉格朗日-欧拉(ALE)表示。为了提供鲁棒,准确和有效的仿真,提供了多种数值方案。这些方法包括有限元方法或有限元方法与半拉格朗日方法(粒子跟踪)的组合。该模型已应用于Loxahatchee河口河系。计算域包括Loxahatchee河口,沿海内河道和该河的三个主要支流-南叉,北叉和西北叉。水质模拟所需的潮汐,洋流和盐度是从集成模型的水动力模块获得的。为了展示水质传输模块的灵活性和通用性,可以在反应网络模式下重现三种广泛使用的水质模型WASP5,QUAL2E和CE-QUAL-ICM。 WASP5在使用该模型的Loxahatchee河口系统中的应用表明,根据对反应性生物地球化学迁移进行建模的一般范式,可以将其简单地作为一个示例。

著录项

  • 来源
    《Estuarine and coastal modeling》|2007年|507-542|共36页
  • 会议地点 Newport RI(US);Newport RI(US)
  • 作者单位

    University of Central Florida, Department of Civil and Environmental Engineering, 4000 Central Florida Blvd, Orlando, FL 32816;

    University of Texas at Arlington, Department of Mathematics, 701 S. Nedderman Drive, Arlington, TX 76019;

    South Florida Water Management District, 3301 Gun Club Road, West Palm Beach, FL 33406;

    Florida Department of Environmental Protection, W 2600 Blair Stone Road, Tallahassee, FL 32399;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋工程;
  • 关键词

  • 入库时间 2022-08-26 13:59:55

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