在福尔摩沙河泻湖应用分散波水文沉积物形态动力学模型

IF 2.1 3区 地球科学 Q3 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS Computational Geosciences Pub Date : 2024-07-10 DOI:10.1007/s10596-024-10305-x
Kazbek Kazhyken, Eirik Valseth, Juha Videman, Clint Dawson
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引用次数: 0

摘要

本文介绍了在位于葡萄牙南部阿尔加维地区的福尔摩沙河泻湖西部环流单元应用分散波水文沉积物形态动力学模型的结果。该研究区域有几个特点,使分散波模型的应用变得复杂:(1) 该区域具有复杂的不规则几何形状,有许多屏障岛将泻湖与大西洋隔开,有人工和自然形成的潮汐入口,泻湖内有许多弯曲的水道将入口相互连接,并作为泻湖居民点之间的水道;(2) 该区域的潮差可达 3.(2) 该地区的潮差可达 3.5 米;因此,潟湖内的地形以广阔的盐沼和滩涂为特征,湿润-干燥过程是该地区水动力模拟的关键组成部分。通过生成环流单元的非结构化有限元网格、收集该区域潮汐波特征参数的数据以及模拟中使用的底部摩擦和沉积物输运模型,开发了该区域的模型表征。模拟结果表明,色散波模型可以应用于具有非简单基本物理过程和复杂不规则几何形 状的沿岸地区。此外,该模式的色散项能够捕捉到在涉及非线性浅水方程的水动力模拟中不存在的额外流 动特征,而这些额外的流动特征反过来又会影响所产生的沉积物输运和床面形态动力学过程模拟。
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Application of a dispersive wave hydro-sediment-morphodynamic model in the Ria Formosa lagoon

Results of an application of a dispersive wave hydro-sediment-morphodynamic model in the western circulation cell of the Ria Formosa lagoon located in the Algarve region of the southern Portugal are presented. This area of interest has a couple of features that complicate the application of the dispersive wave model: (1) the area has a complex irregular geometry with a number of barrier islands that separate the lagoon from the Atlantic Ocean, artificial and naturally occurring tidal inlets, and a number of curling channels inside the lagoon that interconnect the inlets and serve as waterways between the lagoon settlements; (2) the tidal range in the area can reach up to 3.5 m; therefore, the terrain inside the lagoon is characterized by vast salt marshes and tidal flats, and the wetting-drying process is a key component of any hydrodynamic simulation in this area. A model representation of the area has been developed by generating an unstructured finite element mesh of the circulation cell, and collecting data on parameters that characterize the tidal waves in the area, and bottom friction and sediment transport models used in the simulations. The results of the simulations indicate that the dispersive wave model can be applied in coastal areas with nontrivial underlying physical processes, and complex irregular geometries. Moreover, the dispersive term of the model is capable of capturing additional flow characteristics that are otherwise not present in hydrodynamic simulations that involve the nonlinear shallow water equations; and these additional flow features can, in their turn, affect the resulting sediment transport and bed morphodynamic process simulations.

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来源期刊
Computational Geosciences
Computational Geosciences 地学-地球科学综合
CiteScore
6.10
自引率
4.00%
发文量
63
审稿时长
6-12 weeks
期刊介绍: Computational Geosciences publishes high quality papers on mathematical modeling, simulation, numerical analysis, and other computational aspects of the geosciences. In particular the journal is focused on advanced numerical methods for the simulation of subsurface flow and transport, and associated aspects such as discretization, gridding, upscaling, optimization, data assimilation, uncertainty assessment, and high performance parallel and grid computing. Papers treating similar topics but with applications to other fields in the geosciences, such as geomechanics, geophysics, oceanography, or meteorology, will also be considered. The journal provides a platform for interaction and multidisciplinary collaboration among diverse scientific groups, from both academia and industry, which share an interest in developing mathematical models and efficient algorithms for solving them, such as mathematicians, engineers, chemists, physicists, and geoscientists.
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