- Abeledo, L. G, Savin, R., & Slafer, G. A. (2008). Wheat productivity in the Mediterranean Ebro Valley: Analyzing the gap between attainable and potential yield with a simulation model. European Journal of Agronomy, 28, 541-550.
- Antle, J. M. (1996). Meteorological issues in assessing potential impacts of climate change on agriculture. Agricultural and Forest Meteorology, 80, 67-85.
- Becker, M., & Johnson, D. E. (1999). Rice yield and productivity gaps in irrigated systems of the forest zone of CoAte d'Ivoire. Field Crops Research, 60, 201-208.
- Boote, K. J., & Tollenaar, M. (1994). Modeling yield potential. In: Boote, K. J., Bennett, J. M., Sinclair, T. R., Paulsen, G. M. (Eds.), Physiology and Determination of Crop Yield. American Society of Agronomy, Madison, WI, USA.
- Chanasyk, D. S., Mapfumo, E., Willms, W. D., & Naeth, M. A. (2004). Quantification and simulation of soil water on grazed fescue watersheds. Journal of Range Management, 57(2), 169-177.
- Chow, T. T., Long, H., Mok, H. Y., & Li, K. W. (2011). Estimation of soil temperature profile in hong kong from climatic variables. Energy and Building Journal, 43, 3568-3575.
- Delbari, M., Sharifazari, S., & Mohammadi, E. (2108). Modeling daily soil temperature over diverse climate conditions in Iran-a comparison of multiple linear regression and support vector regression techniques. Theoretical and Applied Climatology, 131, 1-11.
- Fischer, G., Van Velthuizen, H., & Nachtergaele, F. (2000). Global Agroecological zones assessment: Methodology and results. Interim Report IR-00-064. IIASA, Vienna and FAO, Rome.
- Gholipoor, M. (2008). Quantifying threshold frost hardiness for overwintering survival of wheat in Iran, using simulation. International Journal of Plant Production, 2, 125-136.
- Hammera, G. L., Hansenb, J. W., Phillipsb, J. G., Mjeldec, J. W., Hillc, H., Lovec, A., & Potgietera, A. (2001). Advances in application of climate prediction in Agriculture. Agricultural Systems, 70, 515-553.
- Holden, N. M., & Brereton, A. J. (2004). Definition of agroclimatic regions in Ireland using hydro-thermal and crop yield data. Agricultural and Forest Meteorology, 122, 175-191.
- Imam, Y. (2002). Cereal farming. Shiraz University. Shiraz, Iran. (In Persian).
- Johnson, D. E. (1998). Applied multivariate methods for data analysts. Duxbury Press.
- Kamali, M. R. (2009). World situation of Wheat in the past, present and future. 10th congress of agronomy and modification of plants, Karaj, Iran. 23-45. (In Persian).
- Kamkar, B., Koocheki, A., Nassiri, A., & Rezvani Moghadam, P. (2006). Analysis of yield gap of Cumin in 9 regions of Great Khorasan by modeling approach. Agronomy Researches, 5, 332-342. (In Persian with English Abstract).
- Koocheki, A., Nassiri, M., Kamali, G., & Shahandeh, G. (2006). Potential impacts of climate change on agro-climatic indicators in Iran. Arid Land Research and Management, 20, 1-15.
- Krause, P., Boyle, D. P., & Base, F. (2005). Comparison of different efficiency criteria for hydrological model assessment. Advances in Geosciences, 5, 89-97.
- Mohammadi, E., & Delbari, M. (2015). Simulation of Water and Salt Transport in Soil Using the HYDRUS-1D Software. Water and Soil Science, 25(1), 67-78. (In Persian).
- Nassiri, M., Koocheki, A., Kamali, G. & Shahandeh, G. (2006). Impacts of climatic change on rainfed wheat production in Iran. Archives in Agronomy and Soil Science, 25(1), 113-124.
- Nicholls, N. (2000). Impediments to the use of climate predictions. In: Hammer, G.L., N. Nicholls, C. Mitchell. (Eds.). Applications of Seasonal Climate Forecasting in Agricultural and Natural Ecosystems: The Australian Experience. Kluwer, Dordrecht, the Netherlands.
- Rosenzweig, C., & Parry, M. L. (1994). Potential Impact of Climate Change on World Food Supply. Nature, 367, 133-138.
- Sabziparvar, A. (2008). A Simple Formula for Estimating Global Solar Radiation in Central Arid Deserts of Iran, Journal of Renewable Energy, 33(5), 1002-1010.
- Sadeghi, A. R., Kamgar-Haghighi, A. A., Sepaskhah, A. R., Khalili, D., & Zand-Parsa, S. (2002). Regional classification for dryland agriculture in southern Iran. Journal of Arid Environments, 50, 333-341.
- Sharafi, S., & Ghaleni, M. M. (2021a). Calibration of empirical equations for estimating reference evapotranspiration in different climates of Iran. Theoretical and Applied Climatology, 1453, 1-15.
- Sharafi, S., & Ghaleni, M. M. (2021b). Evaluation of multivariate linear regression for reference evapotranspiration modeling in different climates of Iran. Theoretical and Applied Climatology, 143(3), 1409-1423.
- Sharafi, S., & Ghaleni, M. M. (2021c). Spatial assessment of drought features over different climates and seasons across Iran. Theoretical and Applied Climatology, 145(4), 1-17.
- Sharafi, S., & Karim, N. M. (2020). Investigating trend changes of annual mean temperature and precipitation in Iran. Arabian Journal of Geosciences, 13(16), 1-11.
- Sharafi, S., Ramroudi, M., Nassiri, M., Galavi, M., & Kamali, G. A. (2017). Assessment of moisture status and crop production in different climates of Iran. Journal of Agriculture Knowledge and Sustainable Production, 7(1), 103-120. (In Persian).
- Sharafi, S., Ramroudi, M., Nassiri, M., Galavi, M., & Kamali, G. A. (2016). Role of Early Warning Systems for Sustainable Agriculture in Iran. Arabian Journal of Geoscience, 9, 734-754.
- Soltani, A., & Sinclair, T. R. (2012). Modeling Physiology of Crop Development, Growth and Yield. CABI publication.
- Soltani, A., Robertson, M. J., Mohammad Nejad, Y., & Rahemi Karizaki, A. (2006). Modeling chickpea growth and development: Leaf production and senescence. Field Crops Research, 99, 14-23.
- Torabi, B., Soltani, A., Galeshi, S., & Zeinali, A. (2012). The analysis of limited factors for wheat yield in Gorgan conditions. Journal of Crop Production, 4(4), 1-17. (In Persian).
- Zare Feizabadi, A., Koocheki, A. R., & Nassiri, M. (2007). Investigation of plantation area, yield and cereal production in Iran and forecasting of the future. Journal of Agronomy Researches, 4(1), 42-69. (In Persian).
|