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Lagrangian Method to Model Advection-Dispersion-Reaction Transport in Drinking Water Pipe Networks

机译:拉格朗日方法模拟饮用水管网饮用水管网中的逆转反应运输

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摘要

A Lagrangian method to simulate the advection, dispersion, and reaction of a single chemical, biological, or physical constituent within drinking water pipe networks is presented. This Lagrangian approach removes the need for fixed computational grids typically required in Eulerian and Eulerian-Lagrangian methods and allows for nonuniform computational segments. This makes the method fully compatible with the advection-reaction water quality engine currently used in EPANET. An operator splitting approach is used, in which the advection-reaction process is modeled before the dispersion process for each water quality step. The dispersion equation is discretized using a segment-centered finite-difference scheme, and flux continuity boundary conditions are applied at network junctions. A staged approach is implemented to solve the dispersion equation for interconnected pipe networks. First, a linear relationship between the boundary and internal concentrations is established for every pipe. Second, a symmetric and positive definite linear system of equations is constructed to calculate the concentrations at network junctions. Last, pipe internal concentrations are updated based on the junction concentrations. The solution generates exact results when the analytical solutions are available and leads to more accurate water quality simulations than advection-reaction-only water quality models, especially in the areas where dispersion dominates advection. (C) 2021 American Society of Civil Engineers.
机译:提出了一种饮用水管网内单一化学,生物学或物理成分的平流,分散和反应的拉格朗日方法。这款拉格朗日方法消除了欧拉和欧莱尼拉拉格兰语方法中通常需要的固定计算网格的需求,并允许非均匀的计算段。这使得该方法与目前在EPANET中使用的平流反应水质发动机完全兼容。使用操作员分裂方法,其中在每个水质步骤的分散过程之前模拟过的反应过程。使用段中心的有限差分方案离散化分散方程,并且在网络连接处施加通量连续性边界条件。实现了阶段方法以解决互连管网的色散方程。首先,为每个管道建立边界和内部浓度之间的线性关系。其次,构造了对称和正的方程线性线性系统以计算网络连接处的浓度。最后,基于结浓度更新管内浓度。当分析解决方案可获得并导致更准确的水质模拟时,该解决方案产生比仅进行反应的水质模型更准确的水质模拟,特别是在分散主导地位的领域。 (c)2021年美国土木工程师协会。

著录项

  • 来源
    《Journal of Water Resources Planning and Management》 |2021年第9期|04021057.1-04021057.12|共12页
  • 作者单位

    US EPA Water Infrastruct Div Ctr Environm Solut & Emergency Response 26 W Martin Luther King Dr Cincinnati OH 45268 USA;

    Greater Cincinnati Water Works Water Qual & Treatment Div 5651 Kellogg Ave Cincinnati OH 45230 USA;

    US EPA Water Infrastruct Div Ctr Environm Solut & Emergency Response 26 W Martin Luther King Dr Cincinnati OH 45268 USA;

    US EPA Water Infrastruct Div Ctr Environm Solut & Emergency Response 26 W Martin Luther King Dr Cincinnati OH 45268 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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