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Author Carrera*, J.; Alcolea, A.; Medina, A.; Hidalgo, J.; Slooten, L.J. doi  openurl
  Title (down) Inverse problem in hydrogeology Type Journal Article
  Year 2005 Publication Hydrogeol. J. Abbreviated Journal  
  Volume 13 Issue Pages 206-222  
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  Call Number CUT @ phaedon.kyriakidis @ Carrera2005 Serial 146  
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Author Zhou*, H.; Gómez-Hernández, J.J.; Li, L. doi  openurl
  Title (down) Inverse methods in hydrogeology: Evolution and recent trends Type Journal Article
  Year 2014 Publication Adv. Water Resour. Abbreviated Journal  
  Volume 63 Issue Pages 22-37  
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  Publisher Elsevier BV Place of Publication Editor  
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  Notes Approved no  
  Call Number CUT @ phaedon.kyriakidis @ Zhou2014 Serial 170  
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Author Kitanidis*, P.K. isbn  openurl
  Title (down) Introduction to geostatistics: Applications in hydrogeology Type Book Whole
  Year 1997 Publication Abbreviated Journal  
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  Publisher Cambridge University Press Place of Publication Editor  
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  ISSN ISBN 0521587476 Medium  
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  Notes Approved no  
  Call Number CUT @ phaedon.kyriakidis @ Kitanidis1997 Serial 165  
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Author Lucia, M.D.; Kempka, T.; Jatnieks, J.; Kuhn, M. doi  openurl
  Title (down) 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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Author Liu, Y.; Jin, M.; Wang, J. url  doi
openurl 
  Title (down) Insights into groundwater salinization from hydrogeochemical and isotopic evidence in an arid inland basin Type Journal Article
  Year 2018 Publication Hydrological Processes Abbreviated Journal  
  Volume 32 Issue 20 Pages 3108-3127  
  Keywords deuterium excess, groundwater salinization, Northwest China, Manas River basin, stable isotopes  
  Abstract Abstract In the Manas River basin (MRB), groundwater salinization has become a major concern, impeding groundwater use considerably. Isotopic and hydrogeochemical characteristics of 73 groundwater and 11 surface water samples from the basin were analysed to determine the salinization process and potential sources of salinity. Groundwater salinity ranged from 0.2 to 11.91 g/L, and high salinities were generally located in the discharge area, arable land irrigated by groundwater, and depression cone area. The quantitative contributions of the evaporation effect were calculated, and the various groundwater contributions of transpiration, mineral dissolution, and agricultural irrigation were identified using hydrogeochemical diagrams and δD and δ18O compositions of the groundwater and surface water samples. The average evaporation contribution ratios to salinity were 5.87% and 32.7% in groundwater and surface water, respectively. From the piedmont plain to the desert plain, the average groundwater loss by evaporation increased from 7% to 29%. However, the increases in salinity by evaporation were small according to the deuterium excess signals. Mineral dissolution, transpiration, and agricultural irrigation activities were the major causes of groundwater salinization. Isotopic information revealed that river leakage quickly infiltrated into aquifers in the piedmont area with weak evaporation effects. The recharge water interacted with the sediments and dissolved minerals and subsequently increased the salinity along the flow path. In the irrigation land, shallow groundwater salinity and Cl− concentrations increased but not δ18O, suggesting that both the leaching of soil salts due to irrigation and transpiration effect dominated in controlling the hydrogeochemistry. Depleted δ18O and high Cl− concentrations in the middle and deep groundwater revealed the combined effects of mixing with paleo-water and mineral dissolution with a long residence time. These results could contribute to the management of groundwater sources and future utilization programs in the MRB and similar areas.  
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  Call Number THL @ christoph.kuells @ doi:10.1002/hyp.13243 Serial 178  
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