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Water Diversion Conflicts in China: A Hierarchical Perspective

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  • Shawei He
  • Keith Hipel
  • D. Kilgour

Abstract

To address China’s large population and uneven distribution of water storage, the South-North Water Diversion Project (SNWDP) aims at transferring water from the Yangtze River (Changjiang) Basin to the North China Plain. This project is being implemented over three different routes, referred to as the Eastern, Central, and Western routes, each of which is giving rise to strategic conflicts. In this paper, the Graph Model for Conflict Resolution (GMCR) is used to systematically investigate these conflicts and obtain strategic insights into them. The Chinese Central Government is involved in each conflict, together with local decision makers, making the entire conflict hierarchical. The conflict is analyzed both as an overall graph model and as three local conflicts, and the resulting equilibria are compared. The Central Government’s preferences, which can be fully elaborated in the single or overall model, account for the differences in equilibria between the overall model and the three local models. The Central Government, which utilizes different strategies in planning, modifying, and building these routes, may be able to control the overall project as it wishes, thereby reaching separate agreements with the relevant decision makers along each route. Copyright Springer Science+Business Media Dordrecht 2014

Suggested Citation

  • Shawei He & Keith Hipel & D. Kilgour, 2014. "Water Diversion Conflicts in China: A Hierarchical Perspective," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 28(7), pages 1823-1837, May.
  • Handle: RePEc:spr:waterr:v:28:y:2014:i:7:p:1823-1837
    DOI: 10.1007/s11269-014-0550-1
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    Cited by:

    1. Marcella Maia Urtiga & Danielle Costa Morais & Keith W. Hipel & D. Marc Kilgour, 2017. "Group Decision Methodology to Support Watershed Committees in Choosing Among Combinations of Alternatives," Group Decision and Negotiation, Springer, vol. 26(4), pages 729-752, July.
    2. Liangyan Tao & Xuebi Su & Saad Ahmed Javed, 2021. "Inverse Preference Optimization in the Graph Model for Conflict Resolution based on the Genetic Algorithm," Group Decision and Negotiation, Springer, vol. 30(5), pages 1085-1112, October.
    3. He, Shawei & Marc Kilgour, D. & Hipel, Keith W., 2017. "A general hierarchical graph model for conflict resolution with application to greenhouse gas emission disputes between USA and China," European Journal of Operational Research, Elsevier, vol. 257(3), pages 919-932.
    4. Pournabi, Nima & Janatrostami, Somaye & Ashrafzadeh, Afshin & Mohammadi, Kourosh, 2021. "Resolution of Internal conflicts for conservation of the Hour Al-Azim wetland using AHP-SWOT and game theory approach," Land Use Policy, Elsevier, vol. 107(C).
    5. Feng Sun & Zhongshan Yang & Zhenfang Huang, 2014. "Challenges and Solutions of Urban Hydrology in Beijing," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 28(11), pages 3377-3389, September.
    6. Shawei He, 2019. "Coalition Analysis in Basic Hierarchical Graph Model for Conflict Resolution with Application to Climate Change Governance Disputes," Group Decision and Negotiation, Springer, vol. 28(5), pages 879-906, October.
    7. Lijun Jiao & Ruimin Liu & Linfang Wang & Lin Li & Leiping Cao, 2021. "Evaluating Spatiotemporal Variations in the Impact of Inter-basin Water Transfer Projects in Water-receiving Basin," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 35(15), pages 5409-5429, December.
    8. Keith W. Hipel & Liping Fang & D. Marc Kilgour, 2020. "The Graph Model for Conflict Resolution: Reflections on Three Decades of Development," Group Decision and Negotiation, Springer, vol. 29(1), pages 11-60, February.
    9. Steven K. Starrett, 2017. "Mentoring New Water Resources Professionals on Engineering Ethics," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 31(10), pages 3271-3285, August.
    10. Zhen Zhou & Meijia Zhang & Xiaohui Yu & Xijun He & Kang Wang & Quan Shao & Jie Wang & Hongxia Sun, 2019. "PM 2.5 Cooperative Control with Fuzzy Cost and Fuzzy Coalitions," IJERPH, MDPI, vol. 16(7), pages 1-14, April.
    11. Yubing Wang & Kai Zhu & Xiao Xiong & Jianuo Yin & Haoran Yan & Yuan Zhang & Hai Liu, 2022. "Assessment of the Ecological Compensation Standards for Cross-Basin Water Diversion Projects from the Perspective of Main Headwater and Receiver Areas," IJERPH, MDPI, vol. 20(1), pages 1-31, December.

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