Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/86875
Title: 3D characterization of a coastal freshwater aquifer in SE Malta (Mediterranean Sea) by time-domain electromagnetics
Authors: Pondthai, Potpreecha
Everett, Mark E.
Micallef, Aaron
Weymer, Bradley A.
Faghih, Zahra
Haroon, Amir
Jegen, Marion
Keywords: Geophysics
Hydrogeology
Hydrology
Groundwater
Electromagnetism
Issue Date: 2020
Publisher: MDPI
Citation: Pondthai, P., Everett, M. E., Micallef, A., Weymer, B. A., Faghih, Z., Haroon, A., & Jegen, M. (2020). 3D characterization of a coastal freshwater aquifer in SE Malta (Mediterranean Sea) by time-domain electromagnetics. Water, 12(6), 1566.
Abstract: Electromagnetic (EM) geophysical methods are well equipped to distinguish electrical resistivity contrasts between freshwater-saturated and seawater-saturated formations. Beneath the semi-arid, rapidly urbanizing island of Malta, offshore groundwater is an important potential resource but it is not known whether the regional mean sea-level aquifer (MSLA) extends offshore. To address this uncertainty, land-based alongshore and across-shore time-domain electromagnetic (TDEM) responses were acquired with the G-TEM instrument (Geonics Ltd., Mississauga, ON, Canada) and used to map the onshore structure of the aquifer. 1-D inversion results suggest that the onshore freshwater aquifer resides at 4–24 m depth, underlain by seawater-saturated formations. The freshwater aquifer thickens with distance from the coastline. We present 2D and 3D electromagnetic forward modeling based on finite-element (FE) analysis to further constrain the subsurface geometry of the onshore freshwater body. We interpret the high resistivity zones that as brackish water-saturated bodies are associated with the mean sea-level aquifer. Generally, time-domain electromagnetic (TDEM) results provide valuable onshore hydrogeological information, which can be augmented with marine and coastal transition-zone measurements to assess potential hydraulic continuity of terrestrial aquifers extending offshore.
URI: https://www.um.edu.mt/library/oar/handle/123456789/86875
Appears in Collections:Scholarly Works - FacSciGeo

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