Three-dimensional hydrogeological reconstruction based on geological depositional model: A case study from the coastal plain of Arborea (Sardinia, Italy)
Academic Article
Publication Date:
2016
Short description:
Three-dimensional hydrogeological reconstruction based on geological depositional model: A case study from the coastal plain of Arborea (Sardinia, Italy) / Ghiglieri, G., Carletti, A., DA PELO, S., Cocco, F., Funedda, A.L., Loi, A., Manta, F., Pittalis, D.. - In: ENGINEERING GEOLOGY. - ISSN 0013-7952. - 207:3(2016), pp. 103-114. [10.1016/j.enggeo.2016.04.014]
abstract:
This study presents a novel approach for the hydrogeological assessment of sedimentary coastal aquifers. Specifically,
the methodology is tailored for modeling groundwater flow and nitrates contamination in typicalMediterranean
coastal plains with high anthropogenic pressures, as exemplified by the Arborea plain (central western Sardinia,
Italy). The study started with development of an updated geological–depositional model based on sequential stratigraphy.
Geological and geophysical data, processed in a geographic information system (GIS) environment, supported
the definition of a 3D hydrogeological conceptual model and provided a solid basis for the interpretation
of groundwater flow directions. The 3D hydrogeological model allowed constraining groundwater circulation,
flow paths and distribution of nitrate concentrations in the aquifers. The methodology appears as a valid tool applicable
in other coastal areas to determine geological and hydrogeological settings. The definition of a quantitative
hydrogeological framework will support the effective management of local water resources.
the methodology is tailored for modeling groundwater flow and nitrates contamination in typicalMediterranean
coastal plains with high anthropogenic pressures, as exemplified by the Arborea plain (central western Sardinia,
Italy). The study started with development of an updated geological–depositional model based on sequential stratigraphy.
Geological and geophysical data, processed in a geographic information system (GIS) environment, supported
the definition of a 3D hydrogeological conceptual model and provided a solid basis for the interpretation
of groundwater flow directions. The 3D hydrogeological model allowed constraining groundwater circulation,
flow paths and distribution of nitrate concentrations in the aquifers. The methodology appears as a valid tool applicable
in other coastal areas to determine geological and hydrogeological settings. The definition of a quantitative
hydrogeological framework will support the effective management of local water resources.
Iris type:
1.1 Articolo in rivista
Keywords:
3D HYDROGEOLOGICAL–CONCEPTUAL MODEL; GROUNDWATER. NITRATE POLLUTION; NITRATE VULNERABLE ZONE; DESERTIFICATION; SARDINIA
List of contributors:
Ghiglieri, Giorgio; Carletti, Alberto; DA PELO, Stefania; Cocco, Fabrizio; Funedda, Antonio Luca; Loi, A; Manta, F; Pittalis, D.
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