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Güler Demir


                Defries,  R.  ve  Rosenzweig,  C.  (2010).  Toward  a  whole-landscape  approach  for
              sustainable land use in the tropics. Proceedings of the National Academy of Sciences,
              107(46), 19627-19632.
                De Gouvello, B., Gerolin, A. ve Le Nouveau, N. (2014). Rainwater harvesting in urban
              areas: how can foreign experiences enhance the French approach?. Water Science and
              Technology: Water Supply, 14(4), 569-576.
                Demir, Y. (2023). Yağmur suyu hasadı ve gri su teknolojileri. [Retrieved from: https://
              antalya.  tarimorman.gov.tr/Belgeler/Ya%C4%9Fmur%20Suyu%20Hasad%C4%B1%20
              ve%20Gri%20Su%20Teknolojileri%20Ders%20Notlar%C4%B1.pdf],   Retrieved   on:
              24.09.2024.
                Domènech, L. ve Saurí, D. (2011). A comparative appraisal of the use of rainwater
              harvesting in single and multi-family buildings of the Metropolitan Area of Barcelona
              (Spain):  social  experience,  drinking  water  savings  and  economic  costs.  Journal  of
              Cleaner Production, 19(6-7), 598-608.
                Fisher-Jeffes, L.N. (2015). The viability of rainwater and stormwater harvesting in the
              residential areas of the Liesbeek River Catchment, Cape Town. PhD Thesis, University
              of Cape Town, South Africa.
                Godskesen,  B.,  Hauschild,  M.,  Rygaard,  M.,  Zambrano,  K.  ve  Albrechtsen,  H.
              J.  (2013).  Life-cycle  and  freshwater  withdrawal  impact  assessment  of  water  supply
              technologies. Water Research, 47(7), 2363-2374.
                Gould,  J.  (1993,  August).  A  review  of  the  development,  current  status  and  future
              potential of rainwater catchment systems for household supply in Africa. Proceedings
              of the Sixth International Conferenceon Rainwater Catchment. Systems, Nairobi, Kenya.
                Gould, J., Qiang, Z. H. U. ve Yuanhong, L. I. (2014). Using every last drop: rainwater
              harvesting and utilization in Gansu Province, China. Waterlines, 33(2), 107-119.
                Hajtar, H., Kılınç, İ., Ülker, E. (2020). Rainwater Harvesting Potential in Public Buildings:
              A Case Study in Katip Celebi University. https://doi.org/10.46810/tdfd.728797.
                Han, M. Y. ve Mun, J. S. (2011). Operational data of the Star City rainwater harvesting
              system  and  its  role  as  a  climate  change  adaptation  and  a  social  influence.  Water
              Science and Technology, 63(12), 2796-2801.251
                Handia, L., Tembo, J. M. ve Mwiindwa, C. (2003). Potential of rainwater harvesting in
              urban Zambia. Physics and Chemistry of the Earth, 28, 893-896.
                Iveroth, S. P., Johansson, S. ve Brandt, N. (2013). The potential of the infrastructural
              system of Hammarby Sjöstad in Stockholm, Sweden. Energy Policy, 59, 716-726.
                Kijne, J. W., Barker, R. ve Molden, D. J. (Eds.). (2003). Water productivity in agriculture:
              limits and opportunities for improvement (Vol. 1). Cabi.
                Lasage, R. (2015). Community based adaptation in water management: Assessing
              impacts and vulnerability. PhD Thesis, Vrije Universiteit Amsterdam, Amsterdam.




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