Efficient Distribution of Water Between Head-Reach and Tail-End Farms in Developing Countries

Published Online:https://doi.org/10.1287/msom.1120.0414

References

  • Bardhan P, Johnson JD, Ostrom E, Dietz T, Dolsak N, Stern PC, Stonich S, Weber EU. Unequal irrigators: Heterogeneity and commons management in large-scale multivariate research. The Drama of the Commons (2002) (National Academies Press, Washington, DC) 87–112Chap. 3Google Scholar
  • Bassok Y, Ernst R. Dynamic allocations for multi-product distribution. Transportation Sci. (1995) 29(3):256–266LinkGoogle Scholar
  • Bhaskar RN. The Indian Drip Irrigation Jugaad. Forbes India (2010) September 20). http://business.in.com/article/breakpoint/the-indian-drip-irrigation-jugaad/17302/1Google Scholar
  • Bhattarai M, Sakthivadivel R, Hussain I. Irrigation impacts on income inequality and poverty alleviation: Policy issues and options for improved management of irrigation systems. (2002) . Paper 39, International Water Management Institute, Colombo, Sri LankaGoogle Scholar
  • Cachon GP, Lariviere MA. Capacity choice and allocation: Strategic behavior and supply chain performance. Management Sci. (1999) 45(8):1091–1108LinkGoogle Scholar
  • Cachon GP, Lariviere MA. Supply chain coordination with revenue-sharing contracts: Strengths and limitations. Management Sci. (2005) 51(1):30–44LinkGoogle Scholar
  • Caldentey R, Wein LM. Analysis of a decentralized production-inventory system. Manufacturing Service Oper. Management (2003) 5(1):1–17LinkGoogle Scholar
  • Christensen LA, McElyea DE. Toward a general method of estimating productivity-soil depth response relationships. J. Soil Water Conservation (1988) 43(2):199–202Google Scholar
  • Cornish G, Bosworth B, Perry C, Burke J. Pricing methods. (2004) . Water charging in irrigated agriculture: An analysis of international experience. Natural Resources and Environment Department, Food and Agricultural Organization of the United Nations, Rome, 19–25Google Scholar
  • Dinar A, Rosegrant MW, Meinzen-Dick R. Water allocation mechanisms: Principles and examples. (1997) . Policy Research Working Paper 1779, World Bank, Washington, DC. Accessed December 13, 2012, http://water.worldbank.org/water/publications/water-allocation-mechanisms-principles-and-examplesGoogle Scholar
  • Effland A. Small farms, cash crops, agrarian ideals, and international development. Agricultural History (2010) 84(1):1–13CrossrefGoogle Scholar
  • Food and Agriculture Organization of the United Nations Coping with water scarcity. (2007) . Agriculture and Consumer Protection Department, Rome. Accessed December 13, 2012, http://www.fao.org/Ag/magazine/0704sp4.htmGoogle Scholar
  • Gaur A, Biggs TW, Gumma MK, Parthasaradhi G, Turral H. Water scarcity effects on equitable water distribution and land use in a major irrigation project—case study in India. J. Irrigation Drainage Engrg. (2008) 134(1):26–35CrossrefGoogle Scholar
  • Georgiou PE, Papamichail DM. Optimization model of an irrigation reservoir for water allocation and crop planning under various weather conditions. Irrigation Sci. (2008) 26:487–504CrossrefGoogle Scholar
  • Hussain I. Pro-poor intervention strategies in irrigated agriculture in Asia: Issues, lessons, options and guidelines. Irrigation Drainage (2007) 56:119–126CrossrefGoogle Scholar
  • Hussain I, Mudasser M, Hanjra MA, Amrasinghe U, Molden D. Improving wheat productivity in Pakistan: Econometric analysis using panel data from Chaj in the Upper Indus basin. Water Internat. (2004) 29(2):189–200CrossrefGoogle Scholar
  • Jalota SK, Sood A, Vitale JD, Srinivasan R. Simulated crop yields response to irrigation water and economic analysis: Increasing irrigated water use efficiency in the Indian Punjab. Agronomy J. (2007) 99:1073–1084CrossrefGoogle Scholar
  • Johansson RC, Tsur Y, Roe TL, Doukkali R, Dinar A. Pricing irrigation water: A review of theory and practice. Water Policy (2002) 4:173–199Google Scholar
  • Kouvelis P, Lariviere M. Decentralizing cross-functional decisions: Coordination through internal markets. Management Sci. (2000) 46(8):1049–1058LinkGoogle Scholar
  • Kramm J, Wirkus L. Local water governance: Negotiating water access and resolving resource conflicts in Tanzanian irrigation schemes. (2010) . Paper 33. MICROCON: A Micro Level Analysis of Violent Conflict, Institute of Development Studies at the University of Sussex, Brighton, UKGoogle Scholar
  • Kumari BAP, Thiruchelvam S, Dissanayake HMH, Lasantha T. Crop diversification and income inequality in irrigation systems: The case of Minipe. Tropical Agricultural Res. (2010) 21(3):308–320CrossrefGoogle Scholar
  • Maatman A, Schweigman C, Ruijs A, van Der Vlerk MH. Modeling farmers' response to uncertain rainfall in Burkina Faso: A stochastic programming approach. Oper. Res. (2002) 50(3):399–414LinkGoogle Scholar
  • Malik RPS. Towards a common methodolgy for measuring irrigation subsidies. (2008) . Report for the Global Subsidies Initiative of the International Institute for Sustainable Development, Geneva, Switzerland. Accessed December 13, 2012, http://www.iisd.org/gsi/sites/default/files/irrigation_methodology.pdfGoogle Scholar
  • Marques GF, Lund JR, Howitt RE. Modeling irrigated agricultural production and water use decisions under water supply uncertainty. Water Resources Res. (2005) 41:w08423.1–w08423.11CrossrefGoogle Scholar
  • Meher R. Big dam, big failures: A study of the canal irrigation system and the deprived tail-end farmers in the Hirakud command area of Orissa, India. J. Asian and African Stud. (2011) 46(4):422–438CrossrefGoogle Scholar
  • Ministry of Water Resources, India National water policy. (2002) . Report, Government of India, New Delhi. Accessed December 13, 2012, http://mowr.gov.in/writereaddata/linkimages/nwp20025617515534.pdfGoogle Scholar
  • Mollinga PP, Bolding A, Diemer G, Huibers FP. Signposts of struggle: Pipe outlets as the material interface between water users and the state in a large-scale irrigation system in South India. Crops, People and Irrigation: Water Allocation Practices of Farmers and Engineers (1996) (Intermediate Technology Publications, London) 11–33CrossrefGoogle Scholar
  • Namboodiri NV, Gandhi V, Crase L, Gandhi VP. Institutional analysis of the performance of surface water institutions in India. Reforming Institutions in Water Resource Management: Policy and Performance for Sustainable Development (2009) (Earthscan, London) 208–236Google Scholar
  • Nemhauser G, Wolsey L. Integer Programming and Combinatorial Optimization (1988) (Wiley, New York) Google Scholar
  • Organisation for Economic Co-operation and Development Agricultural policies in emerging and transition economies. (1999) . Report, OECD, Paris. Accessed December 13, 2012, http://www.oecd-ilibrary.org/agriculture-and-food/agricultural-policies-in-emerging-and-transition-economies-1999_agr_non-oecd-1999-enGoogle Scholar
  • Oza S. Tailenders and “other deprived.”. (2007) . National Workshop on Participatory Irrigation Management and Integrated Water Resource Management, Asian Development Bank. Accessed December 13, 2012, http://www2.adb.org/Documents/Reports/PIM-IWRM/Session-II.pdfGoogle Scholar
  • Palma CR. Conjunctive use of surface water and groundwater with quality considerations. Frontiers Water Resource Econom. Natural Resource Management Policy (2004) 29:225–240CrossrefGoogle Scholar
  • Press Trust of India Zero interest loans for Maharashtra farmers. Business Standard (2011) March 23). http://www.business-standard.com/india/news/zero-interest-loans-for-maharashtra-farmers/130015/onGoogle Scholar
  • Rao NH, Sarma PBS, Chander S. Optimal multicrop allocation of seasonal and intraseasonal irrigation water. Water Resources Res. (1990) 26(4):551–559CrossrefGoogle Scholar
  • Rudi N, Kapur S, Pyke DF. A two-location inventory model with transshipment and local decision making. Management Sci. (2001) 47(12):1668–1680LinkGoogle Scholar
  • Sahu BK. Pani panchayat in Orissa, India: The practice of participatory water management. Development (2008) 51:121–125CrossrefGoogle Scholar
  • Shah T, Lele U. Climate change, food, and water security in South Asia: Critical issues and cooperative strategies in an age of increased risk and uncertainty. (2011) A Global Water Partnership (GWP) and International Water Management Institute (IWMI) WorkshopColombo, Sri LankaAccessed December 13, 2012, http://www.gwp.org/gwp-in-action/Events/Climate-Change-food-and-water-security–experts-workshop-in-South-Asia/Google Scholar
  • Sur M, Deininger DU, Dinar A. Water related subsidies in agriculture: Environmental and equity consequences. (2002) The OECD Workshop on Environmentally Harmful SubsidiesParisAccessed December 13, 2012, http://www.oecd.org/dataoecd/39/49/35218016.pdfGoogle Scholar
  • Suzuki M, Nakayama M. The cost assignment of the cooperative water resource development: A game theoretical approach. Management Sci. (1976) 22(10):1081–1086LinkGoogle Scholar
  • The Hindu Agriculture: Where India and China stand. (2007) September 3). http://www.hindu.com/2007/09/03/stories/2007090355411000.htmGoogle Scholar
  • Tomkins CD, Weber TA. Option contracting in the California water market. J. Regulatory Econom. (2010) 37:107–141CrossrefGoogle Scholar
  • World Bank Agriculture for development. (2008) . World Development Report, World Bank, Washington, DC. Accessed December 13, 2012, http://siteresources.worldbank.org/INTWDR2008/Resources/WDR_00_book.pdfGoogle Scholar
  • World Bank India: Priorities for agriculture and rural development. (2009) . World Bank, Washington, DC. Accessed December 13, 2012, http://go.worldbank.org/8EFXZBL3Y0Google Scholar
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