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首页> 外文期刊>Hydrological Processes >Two-dimensional and three-dimensional computational models in hydrodynamic and morphodynamic reconstructions of a river bend: sensitivity and functionality
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Two-dimensional and three-dimensional computational models in hydrodynamic and morphodynamic reconstructions of a river bend: sensitivity and functionality

机译:河弯流体动力学和形态学性重建中的二维和三维计算模型:敏感性与功能

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摘要

This study assesses hydrodynamic and morphodynamic model sensitivity and functionality in a curved channel. The sensitivity of a depth-averaged model to user-defined parameters (grain size, roughness, transverse bed slope effect, transport relations and secondary flow) is tested. According to the sensitivity analysis, grain size, transverse bed slope effect and sediment transport relations are critical to simulated meander bend morphodynamics. The parametrization of grain size has the most remarkable effect: field-based grain size parametrization is necessary in a successful morphodynamic reconstruction of a meander bend. The roughness parametrization method affects the distribution of flow velocities and therefore also morphodynamics. The combined effect of various parameters needs further research. Two-dimensional (2D) and three-dimensional (3D) reconstructions of a natural meander bend during a flood event are assessed against field measurements of acoustic Doppler current profiler and multi-temporal mobile laser scanning data. The depth-averaged velocities are simulated satisfactorily (differences from acoustic Doppler current profiler velocities 5-14%) in both 2D and 3D simulations, but the advantage of the 3D hydrodynamic model is unquestionable because of its ability to model vertical and near-bed flows. The measured and modelled near-bed flow, however, differed notably from each other's, the reason of which was left open for future research. It was challenging to model flow direction beyond the apex. The 3D flow features, which also affected the distribution of the bed shear stress, seem not to have much effect on the predicted morphodynamics: the 2D and 3D morphodynamic reconstructions over the point bar resembled each other closely. Although common features between the modelled and measured morphological changes were also found, some specific changes that occurred were not evident in the simulation results. Our results show that short-term, sub-bend scale morphodynamic processes of a natural meander bend are challenging to model, which implies that they are affected by factors that have been neglected in the simulations. The modelling of short-term morphodynamics in natural curved channel is a challenge that requires further study. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:该研究评估了曲线通道中的流体动力学和形态学模型敏感性和功能。测试了深度平均模型对用户定义参数(晶粒尺寸,粗糙度,横向床斜率,传输关系和二次流量)的灵敏度。根据敏感性分析,粒度,横向床斜率和沉积物运输关系对模拟曲折弯曲形态学性至关重要。晶粒尺寸的参数化具有最显着的效果:基于场的晶粒尺寸参数化对于曲折弯曲的成功形态学重建是必要的。粗糙度参数化方法影响流速的分布,因此也是形态学性。各种参数的综合效果需要进一步研究。在洪水事件期间自然曲折弯曲期间的二维(2D)和三维(3D)重建是针对声学多普勒电流分析器和多时间移动激光扫描数据的场测量来评估洪水事件期间的自然曲折弯曲。令人满意地模拟深度平均速度(与2D和3D模拟中的声学多普勒电流分析速度5-14%的差异),但是由于其模拟垂直和近床流动的能力,3D流体动力模型的优点是毫无疑问的。然而,测量和建模的近床流量显着不同于彼此不同,其原因是未来的研究开放。它挑战超出顶点的流动方向。这也影响了床剪切应力的分布的3D流特征,似乎没有对预测的形态学性产生很大影响:在点栏上的2D和3D形态动力学重建彼此紧密相似。尽管也发现了建模和测量的形态变化之间的常见特征,但在模拟结果中发生了一些发生的一些具体变化。我们的研究结果表明,自然曲折弯曲的短期,子弯曲比例形态动力学过程对模型有挑战性,这意味着它们受到模拟中被忽视的因素的影响。自然弯曲渠道中短期形态学性的建模是需要进一步研究的挑战。版权所有(c)2014 John Wiley&Sons,Ltd。

著录项

  • 来源
    《Hydrological Processes》 |2015年第6期|1604-1629|共26页
  • 作者单位

    Univ Turku Dept Geog & Geol FI-20014 Turku Finland;

    Univ Turku Dept Geog & Geol FI-20014 Turku Finland|Aalto Univ Sch Engn Dept Real Estate Planning & Geoinformat FI-00076 Aalto Finland;

    Univ Eastern Finland Dept Geog & Hist Studies Joensuu 80101 Finland;

    Univ Turku Dept Geog & Geol FI-20014 Turku Finland;

    Finnish Geodet Inst Dept Remote Sensing & Photogrammetry FI-02431 Masala Finland;

    Aalto Univ Sch Engn Dept Real Estate Planning & Geoinformat FI-00076 Aalto Finland|Helsinki Metropolia Univ Appl Sci FI-00079 Metropolia Finland;

    Finnish Geodet Inst Dept Remote Sensing & Photogrammetry FI-02431 Masala Finland;

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

    morphodynamic modelling; sensitivity analysis; meandering; mobile laser scanning; ADCP; CFD;

    机译:形态学造型;敏感性分析;蜿蜒;移动激光扫描;ADCP;CFD;

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