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Hydrodynamic Simulation of the Pagasitikos Gulf, Greece

Hydrodynamic Simulation of the Pagasitikos Gulf, Greece
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摘要 Semi-enclosed sea basins have difficulty in recharging their waters due to limited communication with larger water bodies, with understandable consequences for their environmental status. This paper aims at the computational simulation of the hydrodynamic characteristics of the waters of the Pagasitikos Gulf (Greece), which has limited communication and water exchange with the Aegean Sea and is subject to intense environmental pressures The Estuary, Lake & Coastal Ocean 3d hydrodynamic Model (ELCOM 2.2) combined with its later version Aquatic Ecosystem Model-3d (AEM3D) were used for the simulation. The simulation included the topography of the area, the bay’s bottom geometry, atmospheric loadings, tides, the influence of the Coriolis force and boundary conditions. The hydrodynamic behaviour of the bay, water circulation, velocities at the surface and in depth, water recharge and residence time throughout the bay, density variation and other factors were examined to determine the impact of all these on the aquatic ecosystem. Semi-enclosed sea basins have difficulty in recharging their waters due to limited communication with larger water bodies, with understandable consequences for their environmental status. This paper aims at the computational simulation of the hydrodynamic characteristics of the waters of the Pagasitikos Gulf (Greece), which has limited communication and water exchange with the Aegean Sea and is subject to intense environmental pressures The Estuary, Lake & Coastal Ocean 3d hydrodynamic Model (ELCOM 2.2) combined with its later version Aquatic Ecosystem Model-3d (AEM3D) were used for the simulation. The simulation included the topography of the area, the bay’s bottom geometry, atmospheric loadings, tides, the influence of the Coriolis force and boundary conditions. The hydrodynamic behaviour of the bay, water circulation, velocities at the surface and in depth, water recharge and residence time throughout the bay, density variation and other factors were examined to determine the impact of all these on the aquatic ecosystem.
作者 George Bousbouras Panagiotis Angelidis George Bousbouras;Panagiotis Angelidis(Division of Hydraulics, Department of Civil Engineering, School of Engineering, Democritus University of Thrace, Kimmeria Campus, Xanthi, Greece)
机构地区 Division of Hydraulics
出处 《Computational Water, Energy, and Environmental Engineering》 2024年第1期58-85,共28页 水能与环境工程(英文)
关键词 Hydrodynamic Simulation Semi-Enclosed Sea Basins Pagasitikos Gulf Greece Hydrodynamic Simulation Semi-Enclosed Sea Basins Pagasitikos Gulf Greece
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