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Original Articles

Water allocation under the constraint of total water-use quota: a case from Dongjiang River Basin, South China

, , , &
Pages 154-167 | Received 01 Jun 2017, Accepted 06 Oct 2017, Published online: 05 Jan 2018

References

  • Arrow, K.A., Harris, T.E., and Marschak, J., 1951. Optimal inventory policy. Econometrica, 19, 250–272.
  • Athanasiadis, I., et al., 2005. A hybrid agent-based model for estimating residential water demand. Simulation—Transactions of the Society for Modeling and Simulation International, 81 (3), 175–187. doi:10.1177/0037549705053172
  • Beh, E.H.Y., Maier, H.R., and Dandy, G.C., 2015. Adaptive, multi objective optimal sequencing approach for urban water supply augmentation under deep uncertainty. Water Resources Research, 51, 1529–1551. doi:10.1002/2014WR016254
  • Bekchanov, M., et al., 2015. Potential gains from water rights trading in the Aral Sea Basin. Agriculture Water Resources Management, 152, 41–56. doi:10.1016/j.agwat.2014.12.011
  • Brown, C.W., et al., 2015. The future of water resources systems analysis: toward a scientific framework for sustainable water management. Water Resources Research, 51, 6110–6124. doi:10.1002/2015WR017114
  • Chang, F.J., Wang, Y.C., and Tsai, W.P., 2016. Modelling intelligent water resources allocation for multi-users. Water Resources Management, 30 (4), 1395–1413. doi:10.1007/s11269-016-1229-6
  • Chen, X.H., Chen, Y.Q., and Lai, G.Y., 2006. Optimal allocation of water resources in Guangzhou City, South China. Journal of Environmental Science and Health Part A: Toxic/Hazardous Substances Environmental Engineering, 41 (7), 1405–1419. doi:10.1080/10934520600657198
  • Condon, L.E. and Maxwell, R.M., 2013. Implementation of a linear optimization water allocation algorithm into a fully integrated physical hydrology model. Advances in Water Resources, 60, 135–147. doi:10.1016/j.advwatres.2013.07.012
  • Davijani, M.H., et al., 2016. Multi-objective optimization model for the allocation of water resources in arid regions based on the maximization of socio-economic efficiency. Water Resources Management, 30 (3), 927–946. doi:10.1007/s11269-015-1200-y
  • Ding, S., 2013. Uncertain multi-product newsboy problem with chance constraint. Applied Mathematics and Computation, 223, 139–146. doi:10.1016/j.amc.2013.07.083
  • Galán, J.M., López‐Paredes, A., and Del Olmo, R., 2009. An agent‐based model for domestic water management in Valladolid metropolitan area. Water Resources Research, 45, 5. doi:10.1029/2007WR006536
  • George, G., et al., 2011. An integrated hydro-economic modelling framework to evaluate water allocation strategies I: model development. AgricultureWaterResourcesManagement, 98, 733–746. doi:10.1016/j.agwat.2010.12.004
  • GürayGüler, M., 2014. A note on: “The effect of optimal advertising on the distribution-free newsboy problem”. International Journal of Production Economics, 148, 90–92. doi:10.1016/j.ijpe.2013.11.021
  • Haimes, Y.Y. and Li, D., 1993. Hierarchical multiobjective analysis for large-scale systems: review and current status. Automatica, 24 (1), 53–69. doi:10.1016/0005-1098(88)90007-6
  • He, Y., et al., 2016. Quantifying the changing properties of climate extremes in Guangdong province using individual and integrated climate indices. International Journal of Climatology. doi:10.1002/joc.4739
  • He, Y.H., Lin, K.R., and Chen, X.H., 2013. Effect of land use and climate change on runoff in the dongjiang basin of South China. Mathematical Problems In Engineering, 2013, 1–14. doi:10.1155/2013/471429
  • Hillman, B., Douglas, E.M., and Terkla, D., 2012. An analysis of the allocation of Yakima River water in terms of sustainability and economic efficiency. Journal of Environmental Management, 103, 102–112. doi:10.1016/j.jenvman.2012.02.017
  • Hoekema, D.J. and Sridhar, V., 2011. Relating climatic attributes and water resources allocation: a study using surface water supply and soil moisture indices in the Snake River basin, Idaho. Water Resources Research, 47. doi:10.1029/2010WR009697
  • Homayoun, M.F., Ganji, A., and Khalili, D., 2010. Two solution methods for dynamic game in reservoir operation. Advances in Water Resources, 33, 752–761. doi:10.1016/j.advwatres.2010.04.001
  • Kogan, K. and Lou, S., 2003. Multi-stage newsboy problem: a dynamic model. European Journal of Operational Research, 149, 448–458. doi:10.1016/S0377-2217(02)00450-2
  • Li, N., et al., 2015. Economic impacts of total water use control in the Heihe River Basin in Northwestern China – an integrated CGE-BEM modeling approach. Sustainability, 7, 3460–3478. doi:10.3390/su7033460
  • Liu, D.D., Chen, X.H., and Lou, Z.H., 2010. A model for the optimal allocation of water resources in a saltwater intrusion area: a case study in Pearl River delta in China. Water Resources Management, 24 (1), 63–81. doi:10.1007/s11269-009-9437-y
  • Madani, K., 2010. Game theory and water resources. Journal of Hydrology, 381, 225–238. doi:10.1016/j.jhydrol.2009.11.045
  • Mahjouri, N. and Ardestani, M., 2010. A game theoretic approach for inter basin water resources allocation considering the water quality issues. Environmental Monitoring and Assessment, 24, 63–81. doi:10.1007/s10661-009-1070-y
  • Manzoni, S., et al., 2014. Optimal plant water-use strategies under stochastic rainfall. Water Resources Research, 50 (7), 5379–5394. doi:10.1002/2014WR015375
  • Masih, I., et al., 2009. Analyzing streamflow variability and water allocation for sustainable management of water resources in the semi-arid Karkheh river basin, Iran. Physics and Chemistry of the Earth, 34, 329–340. doi:10.1016/j.pce.2008.09.006
  • Milano, M., et al., 2013. Modeling the current and future capacity of water resources to meet water demands in the Ebro basin. Journal of Hydrology, 500, 114–126. doi:10.1016/j.jhydrol.2013.07.010
  • Morse, M.P. and Kimbal, G.E., 1951. Methods of Operations Research. Cambridge, MA: MIT Press.
  • Mostard, J. and Teunter, R., 2006. The newsboy problem with resalable returns: a single period model and case study. European Journal of Operational Research, 169, 81–96. doi:10.1016/j.ejor.2004.04.048
  • Murray, A.T., et al., 2012. Spatial optimization models for water supply allocation. Water Resources Management, 26 (8), 2243–2257. doi:10.1007/s11269-012-0013-5
  • Nouiri, I., et al., 2015. Multi-objective optimization tool for integrated groundwater management. Water Resources Management, 29 (14), 5353–5375. doi:10.1007/s11269-015-1122-8
  • Patrick, 2014. The cycles and spirals of justice in water-allocation decision making. Water International, 39 (1), 63–80. doi:10.1080/02508060.2013.863646
  • Ponte, B., et al., 2016. Intelligent decision support system for real-time water demand management. International Journal of Computational Intelligence Systems, 9 (1), 168–183. doi:10.1080/18756891.2016.1146533
  • Porse, E.C., Sandoval-Solis, S., and Lane, B.A., 2015. Integrating environmental flows into multi-objective reservoir management for a transboundary, water-scarce river basin: rio Grande/Bravo. Water Resources Management, 29 (8), 2471–2484. doi:10.1007/s11269-015-0952-8
  • Rogers, J.W. and Louis, G.E., 2007. A financial resource allocation model for regional water systems. International Transactions in Operational Research, 14, 25–37. doi:10.1111/itor.2007.14.issue-1
  • Salazar, J.Z., et al., 2016. A diagnostic assessment of evolutionary algorithms for multi-objective surface water reservoir control. Advances in Water Resources, 92, 172–185. doi:10.1016/j.advwatres.2016.04.006
  • Saleth, R.M., 2011. Water scarcity and climatic change in India: the need for water demand and supply management. Hydrological Sciences Journal, 56 (4), 671–686. doi:10.1080/02626667.2011.572074
  • Tillman, D., et al., 2005. Simulating development strategies for water supply systems. Journal of Hydroinformatics, 7 (1), 41–51.
  • Veale, B. and Cooke, S., 2017. Implementing integrated water management: illustrations from the Grand River watershed. International Journal of Water Resources Development, 33 (3), 375–392. doi:10.1080/07900627.2016.1217503
  • Wang, Z.Q., et al., 2015. Optimal water resources allocation under the constraint of land use in the Heihe River Basin of China. Sustainability, 7, 1558–1575. doi:10.3390/su7021558
  • Wolters, W., et al., 2016. Issues and challenges in spatial and temporal water allocation in the nile delta. Sustainability, 8, 383. doi:10.3390/su8040383
  • Yan, Z.Y. and Haimes, Y.Y., 2011. Risk-based multiobjective resource allocation in hierarchical systems with multiple decision makers. Part I: theory and methodology. Systems Engineering, 14 (1), 1–16. doi:10.1002/sys.v14.1
  • Yang, L.M., Chan, F.K.S., and Scheffran, J., 2016. Climate change, water management and stakeholder analysis in the Dongjiang River basin in South China. International Journal of Water Resources Development. doi:10.1080/07900627.2016.1264294.32
  • Zechman, E.M., 2011. Agent‐based modeling to simulate contamination events and evaluate threat management strategies in water distribution systems. Risk Analysis, 31 (5), 758–772. doi:10.1111/j.1539-6924.2010.01564.x
  • Zhao, R.H. and Chen, S.Y., 2008. Fuzzy pricing for urban water resources: model construction and application. Journal of Environmental Management, 88, 458–466. doi:10.1016/j.jenvman.2007.03.004

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