Numerical modelling in the coastal aquifer between Burlamacca Canal and Bufalina Ditch, southern Versilia (Tuscany, Italy)

Groundwater numerical models are necessary instruments for management of water resources and for their protection, both in terms of quantity and quality. In this paper we present a study on an area located along the southern coastline of Versilia (Viareggio,LU) affected by marine intrusion. The main...

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Main Authors: Gioia Bravini, Matia Menichini, Marco Doveri
Format: Article
Language:English
Published: PAGEPress Publications 2015-03-01
Series:Acque Sotterranee
Subjects:
Online Access:http://www.acquesotterranee.online/index.php/acque/article/view/27
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spelling doaj-9e5a81c233e148db8e50401984cb4d8c2020-11-25T03:19:24ZengPAGEPress PublicationsAcque Sotterranee1828-454X2280-64582015-03-014110.7343/as-103-15-013027Numerical modelling in the coastal aquifer between Burlamacca Canal and Bufalina Ditch, southern Versilia (Tuscany, Italy)Gioia Bravini0Matia Menichini1Marco Doveri2Università di Pisa, Dip. Scienze della TerraCNR-IGG, Ist. Geoscienze e GeorisorseCNR-IGG, Ist. Geoscienze e GeorisorseGroundwater numerical models are necessary instruments for management of water resources and for their protection, both in terms of quantity and quality. In this paper we present a study on an area located along the southern coastline of Versilia (Viareggio,LU) affected by marine intrusion. The main purpose of this work was to create a mathematical flow model based on a conceptual hydrogeological model defined by a multidisciplinary approach. For the realization of the numerical model the ModFlow code and the graphic interface Visual ModFlow was used. The procedure for defining the mathematical model involves a series of steps such as horizontal and vertical discretization of the space, the definition of the initial and boundary conditions, the assignment of the hydraulic properties of the cells and, finally, the definitions of external perturbations to the system (recharge, evapotranspiration, drainage and pumping wells). Implementation, development and calibration of the numerical flow model was performed both in steady and transient state. Both models were calibrated using the manual “trial and error adjustment” method using heads measurements. Moreover the model results gathered in transient state simulation were compared with the data continuously recorded by a piezometer of the monitoring network of the Regional Hydrological Service. There is a good correlation between the measured data and those calculated by the model which then turns out to be sufficiently representative and provides a solid basis for the development of a transport model that could be useful to control and manage the phenomenon of the salt water intrusion.http://www.acquesotterranee.online/index.php/acque/article/view/27coastal aquifers, groundwater flow, hydrogeochemistry, conceptual model, numerical modeling
collection DOAJ
language English
format Article
sources DOAJ
author Gioia Bravini
Matia Menichini
Marco Doveri
spellingShingle Gioia Bravini
Matia Menichini
Marco Doveri
Numerical modelling in the coastal aquifer between Burlamacca Canal and Bufalina Ditch, southern Versilia (Tuscany, Italy)
Acque Sotterranee
coastal aquifers, groundwater flow, hydrogeochemistry, conceptual model, numerical modeling
author_facet Gioia Bravini
Matia Menichini
Marco Doveri
author_sort Gioia Bravini
title Numerical modelling in the coastal aquifer between Burlamacca Canal and Bufalina Ditch, southern Versilia (Tuscany, Italy)
title_short Numerical modelling in the coastal aquifer between Burlamacca Canal and Bufalina Ditch, southern Versilia (Tuscany, Italy)
title_full Numerical modelling in the coastal aquifer between Burlamacca Canal and Bufalina Ditch, southern Versilia (Tuscany, Italy)
title_fullStr Numerical modelling in the coastal aquifer between Burlamacca Canal and Bufalina Ditch, southern Versilia (Tuscany, Italy)
title_full_unstemmed Numerical modelling in the coastal aquifer between Burlamacca Canal and Bufalina Ditch, southern Versilia (Tuscany, Italy)
title_sort numerical modelling in the coastal aquifer between burlamacca canal and bufalina ditch, southern versilia (tuscany, italy)
publisher PAGEPress Publications
series Acque Sotterranee
issn 1828-454X
2280-6458
publishDate 2015-03-01
description Groundwater numerical models are necessary instruments for management of water resources and for their protection, both in terms of quantity and quality. In this paper we present a study on an area located along the southern coastline of Versilia (Viareggio,LU) affected by marine intrusion. The main purpose of this work was to create a mathematical flow model based on a conceptual hydrogeological model defined by a multidisciplinary approach. For the realization of the numerical model the ModFlow code and the graphic interface Visual ModFlow was used. The procedure for defining the mathematical model involves a series of steps such as horizontal and vertical discretization of the space, the definition of the initial and boundary conditions, the assignment of the hydraulic properties of the cells and, finally, the definitions of external perturbations to the system (recharge, evapotranspiration, drainage and pumping wells). Implementation, development and calibration of the numerical flow model was performed both in steady and transient state. Both models were calibrated using the manual “trial and error adjustment” method using heads measurements. Moreover the model results gathered in transient state simulation were compared with the data continuously recorded by a piezometer of the monitoring network of the Regional Hydrological Service. There is a good correlation between the measured data and those calculated by the model which then turns out to be sufficiently representative and provides a solid basis for the development of a transport model that could be useful to control and manage the phenomenon of the salt water intrusion.
topic coastal aquifers, groundwater flow, hydrogeochemistry, conceptual model, numerical modeling
url http://www.acquesotterranee.online/index.php/acque/article/view/27
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