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Author Hussain*, M.S.; Javadi, A.A.; Asr, A.A.; Farmani, R.
Title A surrogate model for simulation-optimization of aquifer systems subjected to seawater intrusion Type Journal Article
Year 2015 Publication J. Hydrol. Abbreviated Journal
Volume 523 Issue Pages 542-554
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Call Number CUT @ phaedon.kyriakidis @ hussain2015 Serial 114
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Author Hermans*, T.; Vandenbohede, A.; Lebbe, L.; Martin, R.; Kemna, A.; Beaujean, J.; Nguyen, F.
Title Imaging artificial salt water infiltration using electrical resistivity tomographyconstrained by geostatistical data Type Journal Article
Year 2012 Publication J. Hydrol. Abbreviated Journal
Volume 438–439 Issue Pages 168-180
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Call Number CUT @ phaedon.kyriakidis @ hermans2012 Serial 111
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Author Ghabayen, S.; McKee, M.; Kemblowski, M.
Title Ionic and Isotopic Ratios for Identification of Salinity Sources and Missing Data in the Gaza Aquifer Type Journal Article
Year 2006 Publication Journal of Hydrology Abbreviated Journal
Volume 318 Issue Pages 360-373
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Call Number THL @ christoph.kuells @ article Serial 87
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Author Liu, F.; Wang, S.; Wang, L.; Shi, L.; Song, X.; Yeh, T.-C.J.; Zhen, P.
Title Coupling hydrochemistry and stable isotopes to identify the major factors affecting groundwater geochemical evolution in the Heilongdong Spring Basin, North China Type Journal Article
Year 2019 Publication Journal of Geochemical Exploration Abbreviated Journal
Volume 205 Issue Pages
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Abstract Understanding the interference of natural processes and anthropogenic activities in geochemical evolution of groundwater is vital for groundwater sustainable management in water-stressed regions. This study is devoted to the identification of the main factors controlling the evolution of groundwater chemistry by the combined use of hydrogeochemical indicators along with isotope tracers in the Heilongdong Spring Basin, North China. Thirty-nine groundwater samples and twelve surface water samples were collected, and major ions and stable isotopes were measured during the two campaigns (December 2017 and August 2018). The isotope approach indicates that the groundwater is recharged by precipitation infiltration after evaporation, and interacts with surface water along preferential flow paths in fault zones and karst conduits. Currently, the main chemical facies of groundwater evolve from Ca-HCO3 and Ca-Mg-HCO3 types with low TDS, through Ca-Mg-HCO3-SO4 and Ca-HCO3-SO4 types with moderate TDS, to Ca-SO4, Ca-SO4-Cl and CaCl types with high TDS. Apart from natural processes (involving dissolution/precipitation of minerals, cation exchange, and evaporation) regulating the groundwater quality, the stagnant zones also play a crucial role in the formation of severe localized nitrate contamination. The deterioration in groundwater quality can be attributed to anthropogenic factors (including the change in groundwater exploitation, the leaching of solid waste, and the overuse of agricultural fertilizers). The high loads of agricultural fertilizers in irrigation return flows are likely to be the main contributor of the dissolved nitrate in groundwater. The findings of this work not only have important implications for groundwater sustainable utilization, but also could serve as a template for other rapidly industrialized and water-stressed regions.
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Call Number THL @ christoph.kuells @ Liu2019 Serial 29
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Author Lucia, M.D.; Kempka, T.; Jatnieks, J.; Kuhn, M.
Title Integrating surrogate models into subsurface simulation framework allows computation of complex reactive transport scenarios Type Journal Article
Year 2017 Publication Energy Procedia Abbreviated Journal
Volume 125 Issue Pages 580-587
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Call Number CUT @ phaedon.kyriakidis @ lucia2017 Serial 112
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