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International Water Resources Allocation and Conflicts: The Case of the Euphrates and Tigris

Author

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  • Mehmet Kucukmehmetoglu

    (Gebze Yuksek Teknoloji Enstitusu, Kocaeli, Turkey)

  • Jean-Michel Guldmann

    (Department of City and Regional Planning, The Ohio State University, 190 W 17th Avenue, Columbus, OH 43210, USA)

Abstract

This paper presents a linear programming model that allocates the waters of the Euphrates and Tigris rivers to irrigation, urban consumption, and on-stream hydroelectricity production in the three riparian countries (Turkey, Syria, and Iraq), by maximizing the aggregate net benefits from water uses while accounting for water-conveyance costs. The model represents, in network form, the system made of the two rivers and their various consumption, supply, and transshipment nodes, and accounts for evaporation and return flows. The constraints include water-conservation balances and maximum and minimum water consumption. The model is used to assess the economic consequences of various cooperation and noncooperation strategies that may be adopted by the riparian countries. Cooperative game-theory concepts (core and Shapley value) are used to identify stable water allocations, under which all three countries find it beneficial to cooperate. The results suggest that an allocation of the total benefits exists, under various scenarios of future energy prices and agricultural productivities, that makes this global cooperation attractive to all countries. Various research extensions are outlined.

Suggested Citation

  • Mehmet Kucukmehmetoglu & Jean-Michel Guldmann, 2004. "International Water Resources Allocation and Conflicts: The Case of the Euphrates and Tigris," Environment and Planning A, , vol. 36(5), pages 783-801, May.
  • Handle: RePEc:sae:envira:v:36:y:2004:i:5:p:783-801
    DOI: 10.1068/a3670
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    References listed on IDEAS

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    1. Kucukmehmetoglu, Mehmet & Guldmann, Jean-Michel, 2002. "International water resources allocation and conflicts - the case of the Euphrates and the Tigris," ERSA conference papers ersa02p140, European Regional Science Association.
    2. Mahan, Robert C. & Horbulyk, Theodore M. & Rowse, John G., 2002. "Market mechanisms and the efficient allocation of surface water resources in southern Alberta," Socio-Economic Planning Sciences, Elsevier, vol. 36(1), pages 25-49, March.
    3. Becker, Nir, 1995. "Value of moving from central planning to a market system: lessons from the Israeli water sector," Agricultural Economics, Blackwell, vol. 12(1), pages 11-21, April.
    4. Booker J. F. & Young R. A., 1994. "Modeling Intrastate and Interstate Markets for Colorado River Water Resources," Journal of Environmental Economics and Management, Elsevier, vol. 26(1), pages 66-87, January.
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    Cited by:

    1. Mehmet Küçükmehmetoğlu & Ali Büyükgöz, 2013. "Consensus Building Via Cooperative Game Theory In The Process Of Urban Redevelopment," ERSA conference papers ersa13p565, European Regional Science Association.
    2. Mahdi Zarghami & Nasim Safari & Ferenc Szidarovszky & Shafiqul Islam, 2015. "Nonlinear Interval Parameter Programming Combined with Cooperative Games: a Tool for Addressing Uncertainty in Water Allocation Using Water Diplomacy Framework," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 29(12), pages 4285-4303, September.
    3. R. Roozbahani & S. Schreider & B. Abbasi, 2013. "Economic Sharing of Basin Water Resources between Competing Stakeholders," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 27(8), pages 2965-2988, June.
    4. Jisi Fu & Ping-an Zhong & Juan Chen & Bin Xu & Feilin Zhu & Yu Zhang, 2019. "Water Resources Allocation in Transboundary River Basins Based on a Game Model Considering Inflow Forecasting Errors," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 33(8), pages 2809-2825, June.
    5. Erik Ansink & Arjan Ruijs, 2008. "Climate Change and the Stability of Water Allocation Agreements," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 41(2), pages 249-266, October.
    6. S W Tsang & C Y Jim, 2011. "Game-Theory Approach for Resident Coalitions to Allocate Green-Roof Benefits," Environment and Planning A, , vol. 43(2), pages 363-377, February.
    7. R. Roozbahani & B. Abbasi & S. Schreider, 2015. "Optimal allocation of water to competing stakeholders in a shared watershed," Annals of Operations Research, Springer, vol. 229(1), pages 657-676, June.
    8. Mehmet Kucukmehmetoglu & Abdurrahman Geymen, 2012. "Transboundary Water Resources Allocation Under Various Parametric Conditions: The Case Of The Euphrates & Tigris River Basin," ERSA conference papers ersa12p613, European Regional Science Association.
    9. Mehmet Kucukmehmetoglu, 2009. "A Game Theoretic Approach to Assess the Impacts of Major Investments on Transboundary Water Resources: The Case of the Euphrates and Tigris," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 23(15), pages 3069-3099, December.
    10. Mehmet Kucukmehmetoglu & Abdurrahman Geymen, 2014. "Transboundary Water Resources Allocation under Various Parametric Conditions: The Case of the Euphrates & Tigris River Basin," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 28(11), pages 3515-3538, September.
    11. R. Roozbahani & B. Abbasi & S. Schreider & J. Iversen, 2021. "Dam Location-Allocation under Multiple Hydrological Scenarios," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 35(3), pages 993-1009, February.
    12. Fariba Avarideh & Jalal Attari & Ali Moridi, 2017. "Modelling Equitable and Reasonable Water Sharing in Transboundary Rivers: the Case of Sirwan-Diyala River," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 31(4), pages 1191-1207, March.
    13. Mehmet Kucukmehmetoglu, 2011. "AN INTEGRATIVE APPROACH BETWEEN GAME THEORY AND PARETO FRONTIER CONCEPTS FOR THE TRANSBOUNDARY WATER RESOURCES ALLOCATIONS: Case of the Euphrates and Tigris," ERSA conference papers ersa10p899, European Regional Science Association.
    14. Kaiyong Wang & Pengyan Zhang & Bo Pang, 2018. "Process and Mechanism of Agricultural Irrigation Benefit Allocation Coefficient Based on Emergy Analysis—A Case Study of Henan, China," Sustainability, MDPI, vol. 10(12), pages 1-15, November.
    15. Mehmet Kucukmehmetoglu & Jean-Michel Guldmann, 2005. "Multi-Objective Programming for the Allocation of Trans-Boundary Water Resources - the Case of the Euphrates and Tigris," ERSA conference papers ersa05p9, European Regional Science Association.
    16. Mehmet Kucukmehmetoglu, 2011. "Energy And Agricultural Policies Over The Transboundary Surface Water Resources," ERSA conference papers ersa11p1183, European Regional Science Association.
    17. Xiqin Wang & Yuan Zhang & Yong Zeng & Changming Liu, 2013. "Resolving Trans-jurisdictional Water Conflicts by the Nash Bargaining Method: A Case Study in Zhangweinan Canal Basin in North China," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 27(5), pages 1235-1247, March.
    18. Reza Roozbahani & Babak Abbasi & Sergei Schreider & Zahra Hosseinifard, 2020. "A basin-wide approach for water allocation and dams location-allocation," Annals of Operations Research, Springer, vol. 287(1), pages 323-349, April.

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