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Simulating trans-boundary watershed water resources conflict

Author

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  • Lu, Shibao
  • Lian, Zhiduan
  • Sun, Huaping
  • Wu, Xiaohe
  • Bai, Xiao
  • Wang, Congcong

Abstract

With the rapid development of economy, the water shortage and water intake competition have been further intensified, resulting in the conflict of water resources development. This paper, against the amount of water conflict, has respectively constructed the three-party evolutionary game model regarding the water intake condition at the upper, middle and lower reaches of the river basin from the perspective of evolutionary game theory, verified the related conclusions with the numerical simulation. The conclusions of the research are as follows: (1) There are four sets of system local asymptotic stability points P20,0,1, P40,1,1,P61,0,1 and P81,1,1 in the three-party game of amount of water based trans-boundary water resources conflict, which means there existed four sets of evolutionary stable strategies (non-cooperation, non-cooperation, cooperation), (non-cooperation, cooperation, cooperation), (cooperation, non-cooperation, cooperation), and (cooperation, cooperation, cooperation). After the verification with the numerical simulation, the most contradictory area is existed between the upper and middle reaches of the river basin. Thus, the selected choice is (non-cooperation, non-cooperation, cooperation); (2) as for the amount of water based trans-boundary water resources conflict, the cost of cooperation water intake C1 has a significant impact on the strategy evolutionary path of the water intake group. This is of great theoretical and practical significance for the scientific regulation of trans-boundary water resources conflict and the realization of water resource management goals.

Suggested Citation

  • Lu, Shibao & Lian, Zhiduan & Sun, Huaping & Wu, Xiaohe & Bai, Xiao & Wang, Congcong, 2021. "Simulating trans-boundary watershed water resources conflict," Resources Policy, Elsevier, vol. 73(C).
  • Handle: RePEc:eee:jrpoli:v:73:y:2021:i:c:s0301420721001537
    DOI: 10.1016/j.resourpol.2021.102139
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    1. Pinto, F.S. & Costa, A.S. & Figueira, J.R. & Marques, R.C., 2017. "The quality of service: An overall performance assessment for water utilities," Omega, Elsevier, vol. 69(C), pages 115-125.
    2. Lu, Shibao & Zhang, Xiaoling & Bao, Haijun & Skitmore, Martin, 2016. "Review of social water cycle research in a changing environment," Renewable and Sustainable Energy Reviews, Elsevier, vol. 63(C), pages 132-140.
    3. Shangguan, Zhouping & Shao, Mingan & Horton, Robert & Lei, Tingwu & Qin, Lin & Ma, Jianqing, 2002. "A model for regional optimal allocation of irrigation water resources under deficit irrigation and its applications," Agricultural Water Management, Elsevier, vol. 52(2), pages 139-154, January.
    4. Shang, Yizi & Hei, Pengfei & Lu, Shibao & Shang, Ling & Li, Xiaofei & Wei, Yongping & Jia, Dongdong & Jiang, Dong & Ye, Yuntao & Gong, Jiaguo & Lei, Xiaohui & Hao, Mengmeng & Qiu, Yaqin & Liu, Jiahong, 2018. "China’s energy-water nexus: Assessing water conservation synergies of the total coal consumption cap strategy until 2050," Applied Energy, Elsevier, vol. 210(C), pages 643-660.
    5. Immerzeel, W.W. & Gaur, A. & Zwart, S.J., 2008. "Integrating remote sensing and a process-based hydrological model to evaluate water use and productivity in a south Indian catchment," Agricultural Water Management, Elsevier, vol. 95(1), pages 11-24, January.
    6. Saleh, Yahya & Gürler, Ülkü & Berk, Emre, 2011. "Centralized and decentralized management of groundwater with multiple users," European Journal of Operational Research, Elsevier, vol. 215(1), pages 244-256, November.
    7. Kusre, B.C. & Baruah, D.C. & Bordoloi, P.K. & Patra, S.C., 2010. "Assessment of hydropower potential using GIS and hydrological modeling technique in Kopili River basin in Assam (India)," Applied Energy, Elsevier, vol. 87(1), pages 298-309, January.
    8. Karray, Salma & Sigué, Simon Pierre, 2015. "A game-theoretic model for co-promotions: Choosing a complementary versus an independent product ally," Omega, Elsevier, vol. 54(C), pages 84-100.
    9. Simhon, Eran & Starobinski, David, 2018. "On the impact of information disclosure on advance reservations: A game-theoretic view," European Journal of Operational Research, Elsevier, vol. 267(3), pages 1075-1088.
    10. Fernandez, Linda, 2002. "Trade's Dynamic Solutions to Transboundary Pollution," Journal of Environmental Economics and Management, Elsevier, vol. 43(3), pages 386-411, May.
    11. Frederic H. Murphy & Michael A. Toman & Howard J. Weiss, 1987. "A Stochastic Dynamic Nash Game Analysis of Policies for Managing the Strategic Petroleum Reserves of Consuming Nations," Management Science, INFORMS, vol. 33(4), pages 484-499, April.
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