Abbasi, F. & Abbasi, N. (2024). An analysis of irrigation efficiencies over time in Iran. Iranian Journal of Irrigation and Drainage, 17(6):1025-1033. (In Persian)
Abbasi, F., Sohrab, F. & Abbasi, N. (2017). Evaluation of irrigation efficiencies in Iran. Irrigation and Drainage Structures Engineering Research, 17(67):113-128. (In Persian)
Agricultural Statistics Yearbook (2022). Agricultural Statistics Yearbook 2021-2022: Volume 1, Crop Products. Statistical Deputy, Information Technology and Communications Deputy, Economic Planning Deputy of the Ministry of Agriculture Jahad, September 2022. (In Persian)
Agricultural Statistics Yearbook (2024). Agricultural Statistics Yearbook 2023-2024: Volume 1, Crop Products. Statistical Deputy, Information Technology and Communications Deputy, Economic Planning Deputy of the Ministry of Agriculture Jahad, September 2024. (In Persian)
Ahmadvand, M.R. & Najafpour, Z.A. (2010). Analysis of wheat cultivation area and supportive policies during the first to fourth national development plans. Journal of Economic Research and Policies, 17 (53): 59-76. (In Persian)
Aligholinia, T., Rezaei, H., Behmanesh, J. & Montaseri, M. (2017). Water footprint index study for dominant crops in Urmia lake basin and its relationship with irrigation management. Water and Soil Science, 27 (4): 37-48. (In Persain)
Aligholinya, T., Sheibany, H., Mohamadi, O. & Hesam, M. (2019). Comparison and evaluation of blue, green and gray water footprint of wheat in different climates of Iran. Iran-Water Resources Research, 15 (3): 234-245. (In Persain)
Allan, J.A. (2011). Virtual water: Tackling the threat to our planet's most precious resource. I.B. Tauris.
Bazrafshan, O., Dehghanpir, Sh. & Holisaz, A. (2018). Estimation of virtual water trade in the Hormozgan province over the past decade. Desert Management, 5 (10): 116-129. (In Persian)
Ehsani, M. (2009). Understanding virtual water. Lecture presented at the Seminar "Water and Sustainable Development with a Focus on Virtual Water", Iranian National Committee on Irrigation and Drainage, July 2009, Tehran International Exhibition Center. (In Persian)
Ehsani, M., Khaledi H. & Barghi, Y. (2008). Introduction to virtual water. Iranian National Committee on Irrigation and Drainage. (In Persian)
El-Marsafawy, S.M., Swelam, A. & and Ghanem, A. (2018). Evolution of crop water productivity in the Nile Delta over three decades (1985–2015). Water 2018, 10, 1168; doi:10.3390/w10091168.
Ewaid, S.H., Abed, S.A. Abbas, A.J. and Al-Ansari, N. (2020). Estimation the virtual water content and the virtual water transfer for Iraqi wheat. Journal of Physics: Conference Series, 1664: 012143.
Fader, M., Rost, S., Muller, Ch., Bondeau, A. and Gerten, D. (2010). Virtual water content of temperate cereals and maize: Present and potential future patterns Journal of Hydrology, 384 (3-4): 218-231.
Faramarzi, M., Yang, H., Mousavi, J., Schulin, R., Binder, C. R.& Abbaspour K. C.(2010). Analysis of intra-country virtual water trade strategy to alleviate water scarcity in Iran. Hydrol. Earth Syst. Sci., 14, 1417–1433.
Jafari, H. & Abbasi, F. (2025). Evaluation of wheat water irrigation management in Iran with the approach of reducing the area under cultivation and improving waterproductivity. Iranian Journal of Soil and Water Research, Doi:10.22059/ijswr.2024.380800.669778. (In Persian)
Harris, F., Dalin, C., Cuevas, S., Lakshmikantha, N.R, Adhya, T., Joy, E.J.M., Scheelbeek, P.F.D., Kayatz, B., Nicholas, O., Shankar, Bh., Dangour, A.D. and Green, R. (2020). Trading water: virtual water flows through interstate cereal trade in India. Environmental Research Letters, 15: 125005.
Hasili, M.A., Golabi, M. & Boroumandnasab, S. (2017). Study and evaluation irrigation and drainage networks by using analytic hierarchy process with virtual water approach: Case study; Shahid Rajae, Ramshir and Hendijan networks. Iran-Water Resources Research, 13 (3):112-127. (In Persian)
Heydari, N. (2015). Concepts of water productivity and virtual water. Scientific Lecture, Agricultural Engineering Research Institute, Karaj, Alborz, Iran. (In Persian)
Heydari, N. (2022). Wheat water productivity in Iran compared with data of some countries. Journal of Water Research in Agriculture, 35 (4): 421-435. (In Persian)
Heydari, N. & Dehghanian, S.E. (2018). Investigation of climate change impacts on agricultural sector of Iran from water resources management perspective. Research Report no. 5474, Dec. 30, 2018, 137p. (In Persaian)
Heydari, N., Keshavarz, A. & Dehghani-Sanij, H. (2005). Optimal management of agricultural water consumption in Iran considering drought and aridity. The 2nd conference on methods to prevent waste of national resources, June 15, 16, Academy of Sciences of Iran, Tehran, Iran. (In Persian)
Hoekstra, A.Y., Chapagain, A.K., Aldaya, M.M. and Mekonnen, M.M. (2011). The Water Footprint Assessment Manual: Setting the Global Standard. Earthscan.
Iranian National Committee on Irrigation and Drainage. (2009a). Water and sustainable development with a focus on virtual water. Summary of the Workshop, organized by the National Committee on Irrigation and Drainage of Iran in collaboration with the Iran Water Resources Management Company, July 18, Tehran International Exhibition Center. (In Persian)
Iranian National Committee on Irrigation and Drainage. (2009b). Virtual water policy: challenges and perspectives. Newsletter of the Iranian National Committee on Irrigation and Drainage of Iran, No. 74. (In Persian)
Keshavarz, A. (2017). Analysis of water resources and the agricultural outlook of the country. National Center for Strategic Agricultural and Water Studies of the Iran Chamber of Commerce, The 2nd National Conference on Iranian Medicinal Herbs papers, Urmia University. (In Persian)
Keshavarz, A. & Heydari, N. (2004). A perspective on the waste and misuse of national water resources in the production and consumption stages of agricultural products. The 1st Symposium of National Resources Loss Prevention, June 8, 10, Academy of Sciences of Iran, Tehran, Iran. (In Persian)
Khoramivafa, M., Nouri, M., Mondani, F. and Veisi, H. (2017). Evaluation of virtual water, water productivity and ecological footprint in wheat and maize farms in west of Iran: A case study of Kouzaran region, Kermanshah Province. Journal of Water and Sustainable Development, 3(2): 19-26. (In Persian)
Masud, M.B., Wada, Y., Goss, G., Faramarzi, M. (2019). Global implications of regional grain production through virtual water trade. Science of the Total Environment, 659: 807-820.
Mekonnen, M., Hoekstra, A.Y. (2011). National water footprint accounts: the green, blue and grey water footprint of production and consumption. Delft, the Netherlands: Unesco-IHE Institute for Water Education, Value of Water Research Report 50, 50.
Mirbagheri, V., Baradaran Nasiri, M., Emami, J. & Hosseini Sabet S.M. (2016). Production and trade of basic products of the agricultural sector in the period of 2001-2016. Vice President of Infrastructure Research and Production Affairs, Office of Infrastructure Studies (Agricultural Group), Research Center of the Islamic Council, subject code 250, serial number 15201, 99P.(In Persian)
Mohammadjani, A. & Yazdanian, N. (2014). Analysis of the water crisis situation in the Iran country and management requirements. Ravand Quarterly, 65-66: 117-144. (In Persian)
Muratoglu, A. 2020. Assessment of wheat’s water footprint and virtual water trade: a case study for Turkey. Ecological Processes, 9: 13.
Najafi Alamdarlu, H., Vakilpour, M.H. and Riahi, F. (2015). Investigating the amount of virtual water in wheat and water productivity in Iran. The 2nd Iternational Conference and the 5th NationaCconference of Environmental and Agricultural Researches of Iran, Hamadan, Iran. (In Persian)
Omidi, T. (2017). Determination and analysis of strategies and priorities for import and export of agricultural products based on the concept of virtual water. M.Sc. Thesis, Department of Water Resources Engineering, Faculty of Agriculture, Tarbiat Modares University, 259 pp. (In Persian)
Omidi, F. & Homaee, M. (2015). Deriving crop production functions to estimate wheat virtual water and irrigation water price. Cereal Research, 5 (2): 131-143. (In Persian)
Rathore, L.S., Aziz, D., Demeke, B.W. and Mekonnen, M.M. (2023). Sustainability assessment of virtual water flows through cereal and milled grain trade among US counties. Environmental Research: Infrastructure and Sustainability, 3 (2): 025001.
Renault, D. (2002). Value of Virtual Water in Food: Principles and Virtues. Land and Water Development Division (AGL), Food and Agriculture Organization of the United Nations, Italy.
Salari, S., Karandish, F. & Darzi-Naftchali, A. (2015). Spatial and temporal analyses of the wheat virtual water variations in Sistan and Blouchestan Province. Irrigation and Water Engineering, 5 (2): 81-94. (In Persian).
Shahrokhnia, M.A., Dehghanian, S.E., Nakhjavanimoghaddam, M.M. & Abbasi, F. (2023). Determining the volume of applied water and water productivity in orange and tangerine orchards in Fars province. Iranian Journal of Irrigation and Drainage, 17 (1): 77-86. (In Persian)
Statista. (2025a). Statistics, Agriculture, Farming, forecast volume of wheat produced in the European Union (EU 27) from 2017 to 2023. Retrieved from https://www.statista.com.
Statista. (2025b). Statistics, Agriculture, Farming, Wheat production in China between 2014 and 2024. Retrieved from https://www.statista.com
Statista. (2025c). Statistics, Agriculture, Farming, Production volume of wheat during rabi season in India from Financial Year 2010 to 2022, with an Estimate for 2023. Retrieved from https://www.statista.com.
Sun, S.K., Wu, P.T., Wang, Y.B., Zhao, X.N. (2013). The virtual water content of major grain crops and virtual water flows between regions in China. Journal of the Science of Food and Agriculture, 93 (6): 1427-1437.
Vafai, K. & Bazr Afshan, A. (2017). Virtual water balance of wheat in the crop year 2014-2015 in Iran. The 4th International Conference on Environmental Planning and Management, Tehran, Iran. (In Persian)
Xinchun, C., Mengyang, W., Xiangping, G., Yalian, Zh., Yan, G., Nan, W., Weiguang, W. (2017). Assessing water scarcity in agricultural production system based on the generalized water resources and water footprint framework. Science of the Total Environment, 609: 587-597.