Application of Geophysical Methods for Hydrogeology

The special focus of this reprint is on case studies demonstrating the potential to improve our understanding of hydrogeological parameters in vadose and non-vadose zones used to modelize groundwater flow, study the transport of substances, and, therefore, improve our aquifer knowledge and manage ma...

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ISBN9783725843527
9783725843510
3725843511
372584352X
DOI10.3390/books978-3-7258-4351-0

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Abstract The special focus of this reprint is on case studies demonstrating the potential to improve our understanding of hydrogeological parameters in vadose and non-vadose zones used to modelize groundwater flow, study the transport of substances, and, therefore, improve our aquifer knowledge and manage many important processes such as contamination and saltwater intrusion. The accepted papers included those on geophysical prospecting surveys as a part of the holistic strategy for aquifer conceptualization and modelling; integrated large- and detailed-scale near-surface geophysical prospecting techniques and time-lapse approaches to reducing the ambiguity of hydrogeological interpretations; experimental field and numerical operational designs; and case studies surveying saturated and unsaturated media for methodological and conceptual purposes. Other papers contributed to understanding state-of-the-art geophysical techniques through specific study cases covering hydrogeological environments such as polluted sites and urbanized areas in different countries; aquifer typologies in coastal and inland areas such as Paleogene and Neogene sedimentary rocks and Quaternary detrital sediments; and climate settings including humid, sub-humid, and semiarid to arid ones. The used techniques were electrical, such as ERT, VES, resistivity well logs, SP measurements, and induced polarization tomography; electromagnetic, such as GPR, TDEM, and GNSS-R; and seismic, such as SRT, MASW, and HVSR.
AbstractList The special focus of this reprint is on case studies demonstrating the potential to improve our understanding of hydrogeological parameters in vadose and non-vadose zones used to modelize groundwater flow, study the transport of substances, and, therefore, improve our aquifer knowledge and manage many important processes such as contamination and saltwater intrusion. The accepted papers included those on geophysical prospecting surveys as a part of the holistic strategy for aquifer conceptualization and modelling; integrated large- and detailed-scale near-surface geophysical prospecting techniques and time-lapse approaches to reducing the ambiguity of hydrogeological interpretations; experimental field and numerical operational designs; and case studies surveying saturated and unsaturated media for methodological and conceptual purposes. Other papers contributed to understanding state-of-the-art geophysical techniques through specific study cases covering hydrogeological environments such as polluted sites and urbanized areas in different countries; aquifer typologies in coastal and inland areas such as Paleogene and Neogene sedimentary rocks and Quaternary detrital sediments; and climate settings including humid, sub-humid, and semiarid to arid ones. The used techniques were electrical, such as ERT, VES, resistivity well logs, SP measurements, and induced polarization tomography; electromagnetic, such as GPR, TDEM, and GNSS-R; and seismic, such as SRT, MASW, and HVSR.
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Editor Casas Ponsati, Albert
Cabrera Santana, María del Carmen
Sendros, Alex
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SubjectTerms 3D model
3D resistivity model
active and passive seismics
aquifer geometry
aquitard breaches
BEL1D
coastal alluvial plain
coastal aquifers
coastal-plain deposits
contaminated site
DC resistivity
deep soil moisture
electrical resistivity
electrical resistivity tomography
electrical resistivity tomography (ERT)
electrode spacing
ERT
flow unit
geoelectrical resistivity
geoelectrical sounding
GNSS-R
GPR
groundwater
groundwater body
groundwater sustainability
HVSR
hydrogeological flow model
hydrogeological studies
hydrogeophysical studies
hydrogeophysics
infiltration experiment
J-function
landfill
leachate plume
MASW
mathematical model
Messinian reservoir
Morocco
n/a
Nile Delta
numerical modeling
paleochannels
prediction
redox potential
Reference, Information and Interdisciplinary subjects
Research and information: general
resources management
saltwater intrusion
saturation height
self-potential
SimPEG
soil–water characteristics
sustainability
sustainable water management (SWM)
Tadla
TDEM
time-lapse
time-lapse geophysics
uncertainty
Vertical Electrical Soundings
VES
waste characterization
well log
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Title Application of Geophysical Methods for Hydrogeology
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