Hydrodynamic Modelling in a Mediterranean Coastal Lagoon—The Case of the Stagnone Lagoon, Marsala

IF 3 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Water Pub Date : 2024-09-14 DOI:10.3390/w16182602
Emanuele Ingrassia, Carmelo Nasello, Giuseppe Ciraolo
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Abstract

Coastal lagoons are important wetland sites for migratory species and the local flora and fauna population. The Stagnone Lagoon is a coastal lagoon located on the west edge of Sicily between the towns of Marsala and Trapani. The area is characterized by salt-harvesting plants and several archaeological sites and is affected by microtidal excursion. Two mouths allow exchange with the open sea: one smaller and shallower in the north and one larger and deeper in the south. This study aims to understand the lagoon’s hydrodynamics, in terms of circulation and involved forces. The circulation process appears to be dominated mainly by tide excursions and wind forces. Wind velocity, water levels, and water velocity were recorded during different field campaigns in order to obtain a benchmark value. The hydrodynamic circulation has been studied with a 2DH (two-dimensional in the horizontal plane) unstructured mesh model, calibrated with data collected during the 2006 field campaign and validated with the data of the 2007 campaign. Rapid changes in averaged velocity have been found both in Vx and Vy components, showing the strong dependence on seiches. This study tries to identify the main factor that domains the evolution of the water circulation. Sensitivity analyses were conducted to estimate the correct energy transfer between the forcing factors and dissipating ones. A Gauckler–Strickler roughness coefficient between 20 and 25 m1/3/s is found to be the most representative in the lagoon. To enhance the knowledge of this peculiar lagoon, the MIKE 21 model has been used, reproducing all the external factors involved in the circulation process. Nash–Sutcliffe coefficient of efficiency (NSE) values up to 0.92 and 0.79 are reached with a Gauckler–Strickler coefficient equal to 20 m1/3/s related to water depth and the Vy velocity component. The Vx velocity component NSE has never been satisfying, showing the limits of the 2D approach in reproducing the currents induced by local morphological peculiarities. Comparing the NSE value of water depth, there is a loss of up to 70% in model predictivity capability between the southern and the northern lagoon areas. This study aims to support the local decision-makers to improve the management of the lagoon itself.
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地中海沿海泻湖的水动力模型--马萨拉斯塔尼翁泻湖案例
沿海泻湖是迁徙物种和当地动植物的重要湿地。斯塔尼翁泻湖是一个沿海泻湖,位于西西里岛西部边缘的马萨拉镇和特拉帕尼镇之间。该地区的特点是有采盐植物和多个考古遗址,并受到微潮汐的影响。这里有两个入海口可以与公海交换海水:一个在北部,面积较小,水位较浅;另一个在南部,面积较大,水位较深。这项研究的目的是了解环礁湖的水动力,包括环流和相关力量。环流过程似乎主要由潮汐偏移和风力主导。在不同的实地考察中记录了风速、水位和水流速度,以获得基准值。使用 2DH(水平面二维)非结构网格模型研究了水动力环流,该模型使用 2006 年实地考察收集的数据进行了校准,并使用 2007 年考察收集的数据进行了验证。发现平均速度的 Vx 和 Vy 部分都发生了快速变化,显示出对海蚀的强烈依赖性。这项研究试图找出影响水循环演变的主要因素。进行了敏感性分析,以估计强迫因素和耗散因素之间的正确能量转移。在泻湖中,高克勒-斯特里克勒(Gauckler-Strickler)粗糙度系数在 20 至 25 m1/3/s 之间最具代表性。为了加深对这一奇特泻湖的了解,使用了 MIKE 21 模型,再现了环流过程中涉及的所有外部因素。当高克勒-斯特里克勒系数等于 20 m1/3/s 时,与水深和 Vy 速度分量有关的纳什-萨特克利夫效率系数(NSE)分别达到 0.92 和 0.79。Vx 速度分量的 NSE 值从未令人满意,这表明二维方法在再现由局部形态特征引起的水流方面存在局限性。比较水深的 NSE 值,南部和北部泻湖地区的模型预测能力损失高达 70%。这项研究旨在为当地决策者提供支持,以改善环礁湖本身的管理。
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来源期刊
Water
Water WATER RESOURCES-
CiteScore
5.80
自引率
14.70%
发文量
3491
审稿时长
19.85 days
期刊介绍: Water (ISSN 2073-4441) is an international and cross-disciplinary scholarly journal covering all aspects of water including water science and technology, and the hydrology, ecology and management of water resources. It publishes regular research papers, critical reviews and short communications, and there is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental and/or methodical details must be provided for research articles. Computed data or files regarding the full details of the experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material.
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