Please use this identifier to cite or link to this item: http://hdl.handle.net/2122/9051
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dc.contributor.authorallDe Rosa, R.; Università della Calabriaen
dc.contributor.authorallRomanazzi, A.; CNR-IRPI, Barien
dc.contributor.authorallApollaro, C.; Università della Calabriaen
dc.contributor.authorallCianflone, G.; Università della Calabriaen
dc.contributor.authorallVespasiano, G.; Università della Calabriaen
dc.contributor.authorallDominici, R.; Università della Calabriaen
dc.contributor.authorallMolinari, P.; Agrinconsulting Romaen
dc.contributor.authorallPolemio, M.; CNR-IRPI, Barien
dc.contributor.editorallWiederhold, H.en
dc.contributor.editorallMichaelsen, J.en
dc.contributor.editorallHinsby, K.en
dc.contributor.editorallNommensen, B.en
dc.date.accessioned2014-07-17T13:33:34Zen
dc.date.available2014-07-17T13:33:34Zen
dc.date.issued2014-06en
dc.identifier.urihttp://hdl.handle.net/2122/9051en
dc.description.abstractThe increasing overexploitation of water resources is observed on a global scale in the previous decades; this trend involves the coastal regions of Mediterranean Basin (Van Beynen et alii, 2012). As an effect of increasing groundwater discharge from coastal aquifers, the phenomenon of seawater intrusion is becoming a serious problem for most of the coastal aquifers, especially in the Mediterranean area (COST, 2003; COST, 2005). The aim of this paper is to present the modeling of a coastal porous aquifer located in the complex plain of Sibari (Southern Italy), a plain deeply modified as an effect of reclamation works realized after thirties. The model was implemented using piezometric historical data (from thirties) to establish the effect of seawater intrusion when the well discharge was negligible (natural conditions), the modification in subsequent decades, to be used for forecasting purpose and for evaluate the evolution of groundwater resource. The area actually represents a landscape with anthropic equilibrium based on the works of a land reclamation project (1960s-1990s). Study area is about 365 km2 for a coastline of about 35 km, about which an hydrogeological conceptual model was defined. The area can be conceptualized into three hydrogeological complexes (from the top): sand complex, a clay complex and a sand and conglomerate complex, constituting the deep aquifer, the bottom of which is not well-defined. Shallow aquifer is predominantly fed by direct rainwater infiltration. Deep aquifer is fed by outflows of the mountainous aquifers as the case of limestone aquifer of Pollino Mount,and of shallow granitic aquifer of the Sila massif (Guerricchio and Melidoro, 1975). The maximum piezometric levels of the deep aquifer are equivalent to approximately 40 m asl, so in some areas it presents artesian feature. The computer codes selected for numerical groundwater modelling were MODFLOW (McDonald and Harbaugh, 1998) and SEAWAT (Guo and Langevin, 2002). This groundwater flow modelling is based on the concept of a equivalent homogeneous porous medium by which it is assumed that the real heterogeneous aquifer can be simulated as homogeneous porous media within cells or elements (Anderson, 2002). The modeled aquifer area was uniformly discretized, using Peclet number, into a finite difference grid of 97,735 cells of 240 m x 350 m. For the vertical discretization, model was divided into five layers of variable thicknesses, defined on the basis of a multi-methodological geological survey. Climatic, hydrological and agricultural data were processed to defines inputs for the numerical model based on the variable-density flow. An hydrological balance using monthly and annual of 13 thermo-pluviometric stations falling in the study area, in the time period 1930-1975, was done (Polemio and Casarano, 2008, Polemio et alii, 2013). The numerical model was calibrated with PEST code with a correlation coefficient equal to 0,90. Preliminary results of steady flow and of groundwater salinity spatial are now available and shows it is not sustainable in the case of shallow aquifer and it can be improved in the case of deep aquifer.en
dc.language.isoEnglishen
dc.relation.ispartofSWIM 2014, 23rd Salt Water Intrusion Meetingen
dc.subjectSeawater intrusionen
dc.titleHydrogeological model of a complex coastal aquifers: the case of Sibari Plain (Southern Italy)en
dc.typeConference paperen
dc.description.statusPublisheden
dc.subject.INGV03. Hydrosphere::03.02. Hydrology::03.02.03. Groundwater processesen
dc.description.ConferenceLocationHusum (Germany)en
dc.relation.referencesGuo W., Langevin C.D., (2002) - User’s Guide to SEAWAT: A Computer Program for Simulation of Three-Dimensional Variable-Density Ground-Water Flow, U.S. Geological Survey Open-File Report 01-4340. McDonald M.G., Harbaugh A. W., (1988) - A modular three-dimensional finite-difference ground-water flow model, Techniques of Water-Resources Investigations of the United States Geological Survey, book 6. Petrucci, O., Polemio M., (2007) - Flood risk mitigation and anthropogenic modifications of a coastal plain in southern Italy: combined effects over the past 150 years, Nat. Hazards Earth Syst. Sci., 7(3), 361-373. Polemio, M., Casarano D,. (2004) - Rainfall and drought in southern Italy (1821-2001), in The Basis of Civilization - Water Science?, edited by J. C. Rodda and L. Ubertini, IAHS, Roma, Italy. pp. 217-227 Polemio, M., Petrucci O.,Gatto L., (2004) - Suscettività alla siccità in Calabria ed effetti sulle acque sotterranee, Atti dei Convegni Lincei, 204, 245-250. Polemio, M., Luise G., (2007) - Conceptual and numerical model of groundwater flow for a coastal plain (Piana di Sibari, Southern Italy), in Groundwater and Ecosystems, edited by L. Ribeiro, A. Chambel and M. T. Condesso de Melo Polemio, M., Dragone, V., Romanazzi, A., (2013) - La risorsa idrica. Sfruttamento, depauperamento dei serbatoi sotterranei e utilizzo razionale nel caso della Calabria, in Dramis, F., and Mottana, A., eds., L’acqua in Calabria: risorsa o problema?: Accademia Nazionale delle Scienze - Scritti e Documenti: Roma, Aracne, p. 2-29. Spina V., Tondi E., Mazzoli S., (2011) - Complex basin development in a wrench-dominated back-arc area: Tectonic evolution of the Crati Basin, Calabria, Italy. Journal of Geodynamics 51, 90–109. Turco E., Maresca R., Cappadona P., (1990) - La tettonica Plio-pleistocenica del confine Calabro-lucano : modello cinematico. Mem.Soc. Geol.. vol. 45, 519-529. Van Beynen P.E., Niedzielski M.A., Bialkowska-Jelinska E., Matusick Alsharif, J. K., (2012) - Comparative study of specific groundwater vulnerability of a karst aquiferin central Florida, Applied Geography, 32, 868-877. Van Dijk J.P., Bello M., Brancaleoni G.P., Cantarella G., Costa V., Frixa A., Golfetto F., Merlini F., Riva M., Torricelli S., Toscano C., Zerilli A., (2000) - A regional structural model for the northern sector of the Calabrian Arc (southern Italy). Tectonophysics 324 , 23–60.en
dc.description.obiettivoSpecifico6A. Monitoraggio ambientale, sicurezza e territorioen
dc.publisherLeibniz-Institut für Angewandte Geophysik, Hannoveren
dc.description.fulltextopenen
dc.contributor.authorDe Rosa, R.en
dc.contributor.authorRomanazzi, A.en
dc.contributor.authorApollaro, C.en
dc.contributor.authorCianflone, G.en
dc.contributor.authorVespasiano, G.en
dc.contributor.authorDominici, R.en
dc.contributor.authorMolinari, P.en
dc.contributor.authorPolemio, M.en
dc.contributor.departmentUniversità della Calabriaen
dc.contributor.departmentCNR-IRPI, Barien
dc.contributor.departmentUniversità della Calabriaen
dc.contributor.departmentUniversità della Calabriaen
dc.contributor.departmentUniversità della Calabriaen
dc.contributor.departmentUniversità della Calabriaen
dc.contributor.departmentAgrinconsulting Romaen
dc.contributor.departmentCNR-IRPI, Barien
dc.contributor.editorMichaelsen, J.en
dc.contributor.editorHinsby, K.en
dc.contributor.editorNommensen, B.en
item.openairetypeConference paper-
item.cerifentitytypePublications-
item.languageiso639-1en-
item.grantfulltextopen-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
item.fulltextWith Fulltext-
crisitem.author.deptCNR-IRPI, Italy-
crisitem.author.deptUniversità della Calabria-
crisitem.author.deptUniversità della Calabria-
crisitem.author.deptUniversità della Calabria-
crisitem.author.deptDepartment of Biology, Ecology and Earth Sciences, University of Calabria, Via P. Bucci, cubo 15B, 87036 Arcavacata di Rende (Cs), Italy-
crisitem.author.deptAgrinconsulting Roma-
crisitem.author.deptCNR-IRPI-
crisitem.author.orcid0000-0002-4295-1897-
crisitem.author.orcid0000-0002-2729-9415-
crisitem.author.orcid0000-0001-9615-9347-
crisitem.author.orcid0000-0003-4223-1512-
crisitem.classification.parent03. Hydrosphere-
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