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Book
Integrated Surface Water and Groundwater Analysis
Authors: --- --- ---
Year: 2022 Publisher: Basel MDPI Books

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Abstract

Comprehensive understanding of surface water and groundwater interaction is essential for effective water resources management. Groundwater and surface water are closely connected components that constantly interact with each other within the Earth’s hydrologic cycle. Many studies utilized observations to explain the surface water and groundwater interactions by carefully analyzing the behavior of surface water features (streams, lakes, reservoirs, wetlands, and estuaries) and the related aquifer environments. However, unlike visible surface water, groundwater, an invisible water resource, is not easy to measure or quantify directly. Nevertheless, demand for groundwater that is highly resilient to climate change is growing rapidly. Furthermore, groundwater is the prime source for drinking water supply and irrigation, and hence critical to global food security. Groundwater needs to be managed wisely, protected, and especially sustainably used. However, this task has become a challenge to many hydrologic systems in arid to even humid regions because of added stress caused by changing environment, climate, land use, population growth, etc. In this issue, the editors present contributions on various research areas such as the integrated surface water and groundwater analysis, sustainable management of groundwater, and the interaction between surface water and groundwater. Methodologies, strategies, case studies as well as quantitative techniques for dealing with combined surface water and groundwater management are of interest for this issue.

Keywords

groundwater-surface water interaction --- analytical --- numerical --- FEMME --- STRIVE --- MODFLOW --- Long Short-Term Memory --- groundwater level prediction --- groundwater withdrawal impact --- groundwater level variation --- machine learning --- integrated surface water and groundwater analysis --- climate change --- hydraulic fracturing --- construction of well pads --- MIKE-SHE --- MIKE-11 --- northwestern Alberta --- SWAT+ --- groundwater --- modeling --- groundwater–surface water interactions --- rainwater harvesting --- climate variability --- small island developing states --- improved water governance --- national sustainable development plans --- SDG6 --- community participation --- drinking water supply --- water supply scheme --- surface water/groundwater interactions --- managed aquifer recharge --- induced riverbank filtration --- groundwater resource management --- water curtain cultivation --- surface–groundwater interaction --- water budget analysis --- Nera River --- carbonate aquifer --- recession curves --- seismic sequence --- permafrost hydrology --- Russian Arctic --- water tracks --- hydrological connectivity --- stable water isotopes --- dissolved organic carbon --- electrical resistivity tomography --- taliks --- flood --- surface and groundwater interactions --- HEIFLOW --- Managed Aquifer Recharge --- groundwater tracer --- heat transport --- surface–ground-water interactions --- infiltration basin --- groundwater hydrology --- young water fraction --- global meteoric water line --- northern Italian Apennines --- stakeholder participation --- surface water-groundwater interaction --- scenario modelling --- integrated water management --- agent-based modelling --- SimCopiapo --- water balance --- water table fluctuation method --- irrigated pastures --- deep percolation --- aquifer recharge --- clay soils --- flood irrigation --- water management --- surface water --- n/a --- groundwater-surface water interactions --- surface-groundwater interaction --- surface-ground-water interactions


Book
Managed Aquifer Recharge for Water Resilience
Authors: --- --- ---
Year: 2021 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

This book is a hard copy of the editorial and all the papers in a Special Issue of the peer-reviewed open access journal ‘Water’ on the theme ‘Managed Aquifer Recharge for Water Resilience’. Managed aquifer recharge (MAR) is the purposeful recharge of water to aquifers for subsequent recovery or environmental benefit. MAR is increasingly used to make water supplies resilient to drought, climate change and deteriorating water quality, and to protect ecosystems from declining groundwater levels. Global MAR has grown exponentially to 10 cu.km/year and will increase ten-fold within a few decades. Well informed hydrogeologists, engineers and water quality scientists are needed to ensure that this investment is effective in meeting increasingly pressing needs. This compilation contains lessons from many examples of existing projects, including several national and continental summaries. It also addresses the elements essential for identifying and advancing projects such as mapping aquifer suitability and opportunities, policy matters, operational issues, and some innovations in MAR methods and monitoring. This collection exemplifies the state of progress in the science and practice of MAR and is intended to be useful, at least to water managers, water utilities, agricultural water users and urban planners, to facilitate water resilience through new MAR projects.

Keywords

ASR --- recycled water --- well clogging --- geochemical analysis --- filtration --- biofouling --- risk management --- Managed Aquifer Recharge (MAR) --- aquifer storage and recovery (ASR) --- strategic storage --- Northern Australia --- Managed Aquifer Recharge --- MAR --- climate change --- water management --- IWRM --- adaptation measures --- indicators --- Spain --- groundwater --- mapping --- Sweden --- decision-support --- riverbank filtration --- pharmaceuticals in groundwater --- removal of pharmaceuticals --- managed aquifer recharge --- web GIS --- web tools --- multi-criteria decision analysis --- suitability mapping --- anthropic forcing --- meteorological forcing --- lake bank filtration --- mixing ratios --- environmental tracer --- time-varying mixing model --- sensitivity analysis --- Ulaanbaatar --- MATLAB --- FEFLOW --- artificial recharging scenarios --- Mexico --- legal --- regulatory --- framework --- LAN (Law of the Nation’s Waters) --- reclaimed water --- arid --- semi-arid --- environment protection --- health protection --- safety --- risk --- ecosystems --- contaminants --- recycling --- drinking water --- regulation --- governance --- SAT --- tillage --- infiltration pond --- infiltration rate --- soil compaction --- types of MAR for irrigation --- Yellow River Irrigation District --- adaptability zoning evaluation --- online flow-cytometry --- enzymatic activity --- ultrafiltration --- ATP --- managed aquifer recharge (MAR) --- induced bank filtration (IBF) --- geographic information science (GISc) --- geographic information systems (GIS) --- drinking water supply --- guidelines --- climate adaptation --- stream temperature --- streamflow --- Henry’s Fork --- fisheries --- Snake River --- Idaho --- water rights --- infiltration basin --- cost function --- suitability map --- GIS-MCDA --- water supply security model --- risk assessment --- decision support --- dynamic --- probabilistic --- integrated water resource management --- organic amendments --- contaminants of emerging concern (CECs) --- pathogens --- new water challenges --- Underground Transfer of Floods for Irrigation --- droughts --- floods --- groundwater depletion --- groundwater recharge --- water quality --- water level monitoring --- recharge performance --- rainwater harvesting --- India --- water security --- urban water management --- semiarid --- Social Technology --- developing countries --- Africa --- water banking --- water crisis

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