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Numerical Modelling and Analysis of Turbulent Flow in an Open Channel with Submerged Vegetation

机译:淹没植被明渠湍流数值模拟与分析

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摘要

Turbulent flow in an open channel whose bed is covered with vegetation is studied. Vegetation has been modeled by a series of small diameter rigid cylinders protruded vertically from the channel bed. 3-D computations were performed using the ANSYS-CFX computer program which uses a finite volume method to solve the partial differential equations describing fluid flow. In order to reduce the computational burden, periodic boundary conditions in the direction of the channel axis have been used. The computational domain has been discretized using tetrahedral elements. Six mesh designs were evaluated in order to choose the optimal/suboptimal mesh and ensure that the solution is independent of the mesh used. The mesh finally chosen provides a good balance between the stability of the solution and the flow field resolution. However, achieving mesh-independent solutions for a complex geometry problem, such as the one studied in this work, requires tremendous computational resourses. The connection of the hydrodynamic model to the study of contaminant transport and sedimentation processes in aquatic environments is also discussed.
机译:研究了在河床中被植被覆盖的明渠中的湍流。植被是通过从通道床垂直突出的一系列小直径刚性圆柱体模拟的。使用ANSYS-CFX计算机程序执行3-D计算,该程序使用有限体积方法来求解描述流体流动的偏微分方程。为了减轻计算负担,已经使用了在通道轴方向上的周期性边界条件。计算域已使用四面体元素离散化。对六个网格设计进行了评估,以选择最佳/次优网格,并确保解决方案独立于所使用的网格。最后选择的网格在溶液的稳定性和流场分辨率之间提供了良好的平衡。但是,要实现复杂几何问题的网格无关解决方案(例如本工作中研究的解决方案),需要大量的计算资源。还讨论了流体动力学模型与水生环境中污染物迁移和沉降过程研究之间的联系。

著录项

  • 来源
    《Environmental Processes》 |2017年第1期|S47-S61|共15页
  • 作者单位

    Hydromechanics and Environmental Engineering Laboratory, Department of Civil Engineering, University of Thessaly, Pedion Areos, 38334 Volos, Greece;

    Hydromechanics and Environmental Engineering Laboratory, Department of Civil Engineering, University of Thessaly, Pedion Areos, 38334 Volos, Greece;

    Hydromechanics and Environmental Engineering Laboratory, Department of Civil Engineering, University of Thessaly, Pedion Areos, 38334 Volos, Greece;

    Hydromechanics and Environmental Engineering Laboratory, Department of Civil Engineering, University of Thessaly, Pedion Areos, 38334 Volos, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Free-surface flow; Channel vegetation model; Turbulent flow; ANSYS-CFX computer package;

    机译:自由表面流动;河道植被模型;湍流;ANSYS-CFX电脑套件;

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