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Optimization and Modelling of Pressurized Irrigation Networks

Yıl 2017, Cilt: 1 Sayı: 2, 62 - 80, 30.07.2017

Öz

The agriculture has the biggest share of the
water consumption. Thus, design of irrigation networks which is vital for
agriculture becomes very important for water conservation. Among the different
types of irrigation network systems the most efficient irrigation method is
known as pressurized irrigation. This study aims to better understand how to
design and model a pressurized irrigation network. An Excel VBA (Visual basic
for application) program is coded for optimization with the first formula of
Clément. “Network Optimization” program which uses the same method but there is
limited input section is used to control the output. So, the importance of how
the minimal changes in input gives big differences in output is revealed.

Kaynakça

  • Bruinsma, J. (2009). How to Feed The World in 2050? In F. E. Meeting (Ed.), The Resource Outllok For 2050: By How Much Do Land, Water and Crop Yields Need to Increase By 2050?, (pp. Fig.4, p.12). Rome.
  • Clément, R. (1966). Calcul des débits dans les réseaux d'irrigation fonctionnant àla demande. La Houille Blanche (5), 553-576.
  • DSI. (2009). Project and Construction Department, Project Seminar Notes. Project Seminar Notes (pp. 53-75, 163-169). Antalya: DSI Republic of Turkey the General Directorateof State Hydraulic Works.
  • Feni, M., Khadra, R., & LaMaddalena, N. (2014). Hydraulic and agronomic constraints of on demand pressurized irrigation networks optimization. Geophysical Reseach Abstracts , Vol.16-6741.
  • Jamie, B., Joe, L., & Onda, K. (2012). Global Access to Safe Water: Accountig for Water Quality and the Resulting Impact on MDG Progress. International Journal of Environmental Research and Public Helath (Vol.9 No.3), 880-894.
  • LaMaddalena, N. (1997). Integrated Simulation Modeling for Design and Performance Analysis of On-Demand Pressure Irrigation Systems. Lisboa: Universidade Technica de Lisboa. Instituto Superior de Agronomia Ph.D. Dissertation.
  • LaMaddalena, N., & Sagardoy, J. A. (2000). Performance analysis of on-demand pressurized irrigation systems (Vol. No.59). Food and Agriculture Organization of the United Nations.
  • Shiklomanov, I. (1998). A New Appraisal and Assessment for the 21st Century. (UNESCO, Ed.) Paris: World Water Resources.
  • U.S. Bureau of Reclamation. (1967). Canals and Related Structures. United States Department of the Interior, Bureau of Reclamation. Denver: United States Department of the Interior, Bureau of Reclamation.
Yıl 2017, Cilt: 1 Sayı: 2, 62 - 80, 30.07.2017

Öz

Kaynakça

  • Bruinsma, J. (2009). How to Feed The World in 2050? In F. E. Meeting (Ed.), The Resource Outllok For 2050: By How Much Do Land, Water and Crop Yields Need to Increase By 2050?, (pp. Fig.4, p.12). Rome.
  • Clément, R. (1966). Calcul des débits dans les réseaux d'irrigation fonctionnant àla demande. La Houille Blanche (5), 553-576.
  • DSI. (2009). Project and Construction Department, Project Seminar Notes. Project Seminar Notes (pp. 53-75, 163-169). Antalya: DSI Republic of Turkey the General Directorateof State Hydraulic Works.
  • Feni, M., Khadra, R., & LaMaddalena, N. (2014). Hydraulic and agronomic constraints of on demand pressurized irrigation networks optimization. Geophysical Reseach Abstracts , Vol.16-6741.
  • Jamie, B., Joe, L., & Onda, K. (2012). Global Access to Safe Water: Accountig for Water Quality and the Resulting Impact on MDG Progress. International Journal of Environmental Research and Public Helath (Vol.9 No.3), 880-894.
  • LaMaddalena, N. (1997). Integrated Simulation Modeling for Design and Performance Analysis of On-Demand Pressure Irrigation Systems. Lisboa: Universidade Technica de Lisboa. Instituto Superior de Agronomia Ph.D. Dissertation.
  • LaMaddalena, N., & Sagardoy, J. A. (2000). Performance analysis of on-demand pressurized irrigation systems (Vol. No.59). Food and Agriculture Organization of the United Nations.
  • Shiklomanov, I. (1998). A New Appraisal and Assessment for the 21st Century. (UNESCO, Ed.) Paris: World Water Resources.
  • U.S. Bureau of Reclamation. (1967). Canals and Related Structures. United States Department of the Interior, Bureau of Reclamation. Denver: United States Department of the Interior, Bureau of Reclamation.
Toplam 9 adet kaynakça vardır.

Ayrıntılar

Bölüm TÜRKİYE SU BİLİMLERİ VE YÖNETİMİ DERGİSİ
Yazarlar

Keh-han Wang Bu kişi benim

Mustafa Dal

Yayımlanma Tarihi 30 Temmuz 2017
Yayımlandığı Sayı Yıl 2017 Cilt: 1 Sayı: 2

Kaynak Göster

APA Wang, K.-h., & Dal, M. (2017). Optimization and Modelling of Pressurized Irrigation Networks. Turkish Journal of Water Science and Management, 1(2), 62-80.