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Author Hayes-Rich, E.; Levy, J.; Hayes-Rich, N.; Lightfoot, D.; Gauthier, Y. url  openurl
  Title Searching for hidden waters: The effectiveness of remote sensing in assessing the distribution and status of a traditional, earthen irrigation system (khettara) in Morocco Type Journal Article
  Year 2023 Publication (down) Journal of Archaeological Science: Reports Abbreviated Journal  
  Volume 51 Issue Pages 104175  
  Keywords Remote sensing, Satellite imagery, , Morocco, Traditional irrigation, Archaeology, Water management  
  Abstract This paper presents the results of a multi-year, interdisciplinary project that aimed to assess the holistic status of the khettara system in Morocco. The khettara (also known as qanat) is a traditional, earthen water management system. Historically the system was used for settlement in regions without access to reliable surface water. It is both a world and local heritage structure, found in rural and urban regions throughout 46 countries. Recent evaluations of this traditional system have advocated for its preservation and use in arid and semi-arid regions, as modern technologies (pump wells, industrial dams, drip irrigation, etc.) have proven to be unsustainable. This project evaluates remote sensing as a tool for assessing the distribution and status of the khettara in Morocco. The results of this project demonstrate that (1) the khettara system played a large role in the historic settlement of arid and semi-arid regions, and (2) the system continues to be an important part of agriculture and life in many oases across Morocco.  
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  ISSN 2352-409x ISBN Medium  
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  Call Number THL @ christoph.kuells @ Hayesrich2023104175 Serial 256  
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Author French, K. url  openurl
  Title Indigenous knowledge, water management, and learning from our collective past Type Journal Article
  Year 2022 Publication (down) Journal of Anthropological Archaeology Abbreviated Journal  
  Volume 68 Issue Pages 101466  
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  ISSN 0278-4165 ISBN Medium  
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  Call Number THL @ christoph.kuells @ French2022101466 Serial 253  
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Author Klock, H.; Külls, C.; Udluft, P. openurl 
  Title Estimation of relative recharge values for the northern Kalahari catchment, Namibia Type Journal Article
  Year 2000 Publication (down) Journal of African Earth Sciences Abbreviated Journal  
  Volume 30 Issue 4 Pages 47-48  
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  Call Number THL @ christoph.kuells @ Klock2000estimation Serial 33  
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Author Severi, A.; Masoudian, M.; Kordi, E.; Roettcher, K. url  doi
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  Title Discharge coefficient of combined-free over-under flow on a cylindrical weir-gate Type Journal Article
  Year 2015 Publication (down) ISH Journal of Hydraulic Engineering Abbreviated Journal  
  Volume 21 Issue 1 Pages 42-52  
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  Publisher Taylor & Francis Place of Publication Editor  
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  Call Number THL @ christoph.kuells @ doi:10.1080/09715010.2014.939503 Serial 88  
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Author de Jong, I.J.H.; Arif, S.S.; Gollapalli, P.K.R.; Neelam, P.; Nofal, E.R.; Reddy, K.Y.; Röttcher, K.; Zohrabi, N. url  openurl
  Title Improving agricultural water productivity with a focus on rural transformation* Type Journal Article
  Year 2021 Publication (down) Irrigation and Drainage Abbreviated Journal  
  Volume 70 Issue 3 Pages 458-469  
  Keywords irrigation efficiency, water productivity, rural transformation, efficacité de l’irrigation, productivité de l’eau, transformation rurale  
  Abstract ABSTRACT As a result of population growth, economic development and climate change, feeding the world and providing water security will require important changes in the technologies, institutions, policies and incentives that drive present-day water management, as captured in Goal 6.4 of the Millennium Development Goals. Irrigation is the largest and most inefficient water user, and there is an expectation that even small improvements in agricultural water productivity will improve water security. This paper argues that improvements in irrigation water productivity involves a complex and comprehensive rural transformation that goes beyond mere promotion of water saving technologies. Many of the measures to improve water productivity require significant changes in the production systems of farmers and in the support provided to them. Looking forward, water use and competition over water are expected to further increase. By 2025, about 1.8 billion people will be living in regions or countries with absolute water scarcity. Demand for water will rise exponentially, while supply becomes more erratic and uncertain, prompting the need for significant shifts of inter-sectoral water allocation to support continued economic growth. Advances in the use of remote sensing technologies will make it increasingly possible to cost-effectively and accurately estimate crop evapotranspiration from farmers’ fields.  
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  Call Number THL @ christoph.kuells @ https://doi.org/10.1002/ird.2451 Serial 89  
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