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Author (down) Mallick, J.; Singh, C.K.; AlMesfer, M.K.; Kumar, A.; Khan, R.A.; Islam, S.; Rahman, A. doi  openurl
  Title Hydro-geochemical assessment of groundwater quality in Aseer Region, Saudi Arabia Type Journal Article
  Year 2018 Publication Water Abbreviated Journal  
  Volume 10 Issue Pages 1847  
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  Call Number CUT @ phaedon.kyriakidis @ Mallick2018 Serial 120  
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Author (down) Makkawi, M.H. doi  openurl
  Title Geostatistics as a groundwater exploration planning tool: case of a brackish-saline aquifer Type Journal Article
  Year 2015 Publication Arab. J. Geosci. Abbreviated Journal  
  Volume 8 Issue Pages 3311-3319  
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  Call Number CUT @ phaedon.kyriakidis @ Mahmoodifard2014 Serial 130  
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Author (down) Mahindawansha, A.; Külls, C.; Kraft, P.; Breuer, L. url  doi
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  Title Estimating water flux and evaporation losses using stable isotopes of soil water from irrigated agricultural crops in tropical humid regions Type Journal Article
  Year 2019 Publication Hydrology and Earth System Sciences Discussions Abbreviated Journal  
  Volume 2019 Issue Pages 1-28  
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  Call Number THL @ christoph.kuells @ hess-2019-213 Serial 105  
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Author (down) Magaritz, M.; Nadler, A.; Kafri, U.; Arad, A. doi  openurl
  Title Hydrogeochemistry of continental brackish waters in the southern Coastal Plain, Israel Type Journal Article
  Year 1984 Publication Chemical Geology Abbreviated Journal  
  Volume 42 Issue 1 Pages 159-176  
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  Abstract The southern Coastal Plain in Israel incorportates a transitional fringe of the desert in which three different chemical types of groundwater are found: (1) near-surface waters from springs along the Besor River course: (2) shallow- to moderate-depth waters from the slightly westward-dipping Pleistocene coastal aquifer (this aquifer, which consists of sandstone layers of the Kurkar Group, is recharged in the Coastal Plain); and (3) deep waters of the westward-dipping Upper Cretaceous Judea Group carbonates, which are recharged in the mountains in the east. A thick aquiclude of Upper Cretaceous-Tertiary rocks separates the Judea Group aquifer from the overlying coastal aquifer in the southern Coastal Plain. Isotopically light oxygen and depleted deuterium characterize the Judea Group waters, as expected from high-altitude recharge. The isotopic composition of the Coastal Plain waters is variable, but for the most part enriched in 18O and D. Within the southern Coastal Plain aquifer a southern subgroup comprises waters more depleted in heavy isotopes than those of either the northern or eastern subgroups. The Besor waters are isotopically similar to the Judea Group waters, reflecting their origin in the mountain region, and flow through the surficial river gravels and sands. It is suggested that leakage of the Besor waters into the underlying southern Coastal Plain aquifer results in mixing of the two water types. The most prominent chemical feature characterizing the groundwater of the southern Coastal Plain is Na+Cl− \textgreater 1. This Na+Cl− ratio can be maintained only by a continuous input from a non-marine source of Na. The most plausible source of this Na is the dissolution of feldspar derived from the windblown loess deposits which cover the area and/or leaching of trona minerals found in the unsaturated zone, combined with base-exchange processes.  
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  ISSN 0009-2541 ISBN Medium  
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  Call Number THL @ christoph.kuells @ Magaritz1984 Serial 31  
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Author (down) Ma*, Y.Z. doi  isbn
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  Title Quantitative geosciences: Data analytics, geostatistics, reservoir characterization and modeling Type Book Whole
  Year 2019 Publication Abbreviated Journal  
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  Publisher Springer International Publishing Place of Publication Editor  
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  ISSN ISBN 978-3-030-17860-4 Medium  
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  Call Number CUT @ phaedon.kyriakidis @ Ma2019 Serial 162  
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