Optimal Water Allocation among the Irrigation Districts in Zayandehrud Basin with Economic Approach and Performance Assessment of Water Distribution within the District (Case Study: North-Rudasht Irrigation District)

Document Type : Original Article

Authors

1 PhD Candidate, Department of Water Resources Engineering and Management, Faculty of Civil Engineering, Semnan University, Semnan, Iran

2 Professor, Department of Water Resources Engineering and Management, Faculty of Civil Engineering, Semnan University, Semnan, Iran

3 Assistant Professor, Department of Irrigation and Drainage Engineering, Aburaihan Campus, University of Tehran, Tehran, Iran

Abstract

The primary objective of this study is to develop a hydro-economic framework in Zayandehrud River Basin to optimize allocation of water released from Zayandehrud dam to downstream irrigation districts, to maximize economic benefits from agricultural activities. To achieve this goal, the existing agricultural activities in each irrigation district were simulated by applying the Positive Mathematical Programming (PMP) economic model. By coupling the developed water allocation planning model of the basin (MODSIM) with the economic model, the hydro-economic framework was then generated. Calibration and convergence of the models were performed by using the base-year (2014-2015) data. Obtained results of employing the hydro-economic framework in the management of water delivery revealed significant changes in water-allocation priorities between the irrigation districts. For instance, allocation priorities of Neko-Abad and Rudasht Irrigation Districts were first and fifth under the current conditions, respectively, which have significantly changed to fourth and second after employing the developed hydro-economic framework. As a case study, the potential of existing operating system in North Rudasht Irrigation District, as a representative of other irrigation districts in the basin, was investigated to make an infrastructure for optimum water allocation by using the hydro-economic framework. Results of modeling the existing operating system of North Rudasht Irrigation District showed a fair and inadequate performance, especially in the middle and lower sections, in optimum water allocation with an economic approach.

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Abbasi F, Sohrab F, Abbasi N (2016) Evaluation of irrigation efficiencies in Iran. Irrigation and Drainage Structures Engineering Research 17(67):113-120 (In Persian)
Beare SC, Bell R, Fisher BS (1998) Determining the value of water: The role of risk, infrastructure constraints, and ownership. American Journal of Agricultural Economics 80(5):916-940
Gallego-Ayala J, Gómez-Limón JA (2011) Future scenarios and their implications for irrigated agriculture in the Spanish region of Castilla y León .New Medit 10(1):4-16
Hashemy Shahdany SM, Hassani Y, Hormozi M (2017a) Optimal water distribution and delivery within the main irrigation canal regarding to economic perspective in water shortages conditions. Iran Water Resources Research 13(3):33-42 (In Persian)
Howitt RE, Medellín-Azuara J, MacEwan D, Lund JR (2012) Calibrating disaggregate economic models of agricultural production and water management. Environmental Modelling and Software 38(4):244-258
Masah Bouani A (2002) Introduce mathematical model of Nyrpic gates. MSc. Thesis, School of Agricultural Engineering, Tarbiat Modares University (In Persian)
Medellín-Azuara, J, Harou JJ, Howitt RE (2010) Estimating economic value of agricultural water under changing conditions and the effects of spatial aggregation. Science of the Total Environment 408(23):5639-5648
Molden DJ, Gates TK (1990) Performance measures for evaluation of irrigation water delivery systems. Journal of Irrigation and Drainage Engineering 116(6):804-822
Noel JE, Howitt RE (1982) Conjunctive multibasin management: An optimal control approach. Water Resources Research 18(4):753-763
Oñate JJ, Atance I, Bardají I, Llusia D (2007) Modelling the effects of alternative CAP policies for the Spanish high-nature value cereal-steppe farming systems. Agricultural Systems 94(2):247-260
Peralta RC, Hegazy MA, Musharrafieh GR (1994) Preventing pesticide contamination of groundwater while maximizing irrigated crop yield. Water Resources Research 30(11):3183-3193
Rogers P, Hurst C, Harshadeep N (1993) Water resources planning in a strategic context: Linking the water sector to the national economy. Water Resources Research 29(7):1895-1906
Shahverdi K, Monem M (2017) Design construction and test of PID control system upstream of sliding gate.  In Proc. of 9th Iranian National Hydraulics Conference, 20-23 April, Tarbiat Modares University, pp. 345-352 (In Persian)
Varela-Ortega C, Blanco-Gutiérrez I, Swartz CH, Downing TE (2011) Balancing groundwater conservation and rural livelihoods under water and climate uncertainties: An integrated hydro-economic modeling framework. Global Environmental Change 21(2):604-619