Open Access
Issue |
Climatologie
Volume 11, 2014
|
|
---|---|---|
Page(s) | 2 - 18 | |
Section | Articles | |
DOI | https://doi.org/10.4267/climatologie.611 | |
Published online | 09 October 2015 |
- Allen R. G., Pereira L. S., Raes D. et Smith M., 1998 : Crop evapotranspiration, guidelines for computing crop water requirements. Paper n°56, Rome, Italy, 300 pages. [Google Scholar]
- Bouazzama B. et Bahri A., 2009 : Détermination des coefficients culturaux de la variété d’oranger « Maroc late » au périmètre irrigué Tadla. . Symposium international « Agriculture durable en région méditerranéenne (AGDUMED) », 14-16 mai 2009, Rabat, Maroc, 390-392. [Google Scholar]
- Bowen I. S., 1926 : The ratio of heat losses by conduction and by evaporation from any water surface. Physical Review, 27, 779–787. [CrossRef] [Google Scholar]
- Braudeau, E. et Zaghloul A., 2010 : Sustainable management of adverse impacts on farming and soil ecosystem associated with long term use of low quality irrigation water. Joint Innovative Projects Fund, STDF-AIRD, Joint Research Project, Scientific Document, 48 pages. [Google Scholar]
- Braudeau, E. et Mohtar R. H., 2006 : Modeling the swelling curve for packed soil aggregates using the pedostructure concept. Soil Science Society of America Journal, 70, 494–502. [CrossRef] [Google Scholar]
- Castel J. R., Bautista I., Ramos C. et Cruz G., 1987 : Evapotranspiration and irrigation efficiency of mature orange orchards in Valencia (Spain). Irrigation and Drainage System, 3, 205–217. [CrossRef] [Google Scholar]
- Castel J. R. et Buj A., 1990 : Response of « Salustiana oranges » to high frequency deficit irrigation. Irrigation Science, 11, 121–127. [Google Scholar]
- Chartzoulakis K., Michelakis N. et Stefanoudaki E., 1999 : Water use, growth, yield and fruit quality of « Bonanza » oranges under different soil water regimes. Advances in Horticultural Science, 13, 6–11. [Google Scholar]
- Cohen S. et Fuchs M., 1987 : The distribution of leaf area, radiation, photosynthesis and transpiration in a « Shamouti » orange hedgerow orchard, I. Leaf area and radiation. Agricultural and Forest Meteorology, 40, 123–144. [CrossRef] [Google Scholar]
- Cohen S., Fuchs M., Moreshet S. et Cohen Y., 1987 : The distribution of leaf area, radiation, photosynthesis and transpiration in a « Shamouti » orange hedgerow orchard, II. Photosynthesis, transpiration, and the effect of row shape and direction. Agricultural and Forest Meteorology, 40, 145–162. [CrossRef] [Google Scholar]
- Cohen S. et Cohen Y., 1983 : Field studies of leaf conductance response to environmental variables in Citrus. Journal of Applied Ecology, 20 (2), 561–570. [CrossRef] [Google Scholar]
- Cohen Y., Fuchs M. et Cohen S., 1983 : Resistance to water uptake in a mature Citrus tree. Journal of Experimental Botany, 34(141), 451–460. [CrossRef] [Google Scholar]
- Gad A., Younes H. et Abdel-Hady M., 1996 : Evaluation of Soil Degradation in Northern Sinai (Egypt). In: Escadafal R., Mulders M. A., Thiombiano L. (éditeurs.), Using Remote Sensing an GdI S Techniques. Surveillance des sols dans l’environnement par télédétection et systèmes d’information géographiques - Monitoring soils in the environment with remote sensing and GIS, Paris, ORSTOM, 445–456. [Google Scholar]
- García Petillo M. et Castel J. R., 2007 : Water balance and crop coefficient estimation of a citrus orchard in Uruguay. Spanish Journal of Agricultural Research, 5(2), 232–243. [CrossRef] [Google Scholar]
- Garcia Petillo M. et Castel J. R., 2004 : The response of Valencia orange trees to irrigation in Uruguay. Spanish Journal of Agricultural Research, 2, 429–443. [CrossRef] [Google Scholar]
- Gardner W. R., 1960 : Dynamic aspects of water availability to plants. Soil Science, 89, 63–73. [CrossRef] [Google Scholar]
- Green G. C. et Moreshet S., 1979 : An analysis of seasonal water use characteristics of Valencia orange trees in the Sundays River Valley. Crop Production, 8, 179–183. [Google Scholar]
- Heilman J. L., McInnes K. J., Gesch R. W., Lacano R. J. et Savage M. J., 1996 : Effects of trellising on the energy balance of a vineyard. Agricultural and Forest Meteorology, 81, 79–83. [CrossRef] [Google Scholar]
- Hoffman G. J., Oster J. D. et Alves W. J., 1982 : Evapotranspiration of mature orange trees under drip irrigation in an arid climate. Transactions of American Society of Agricultural Engineers, 25, 992–996. [CrossRef] [Google Scholar]
- Jenkins D. A., 1990 : North and Central Sinai. In: Rushdi Said (éditeur), The geology of Egypt, A.A. Balkema Publishers, Rotterdam, 361–380. [Google Scholar]
- Marin F. R., Angelocci L. R., Pereira A. R., Villa Nova N. A. et Sentelhas P. C., 2001 : Sap flow and evapotranspiration in an irrigated citrus orchard. Revista Brasileira de Agrometeorologia, 9, 219–226. [Google Scholar]
- Monteith J. L., 1965 : Evaporation and environment. The state and movement of water in living organisms. Symposia of the Society of Experimental Biology, New York, Academic Press, 19, 205–234. [Google Scholar]
- Nizinski J. J. et Saugier B., 1988 : Mesures et modélisation de l’interception nette dans une futaie de chênes. Acta Oecologica/Oecologia Plantarum, 9/2(3), 311–329. [Google Scholar]
- Nizinski J. J. et Saugier B., 1989 : A model of transpiration and soil-water balance for a mature oak forest. Agricultural and Forest Meteorology, 47, 1–17. [CrossRef] [Google Scholar]
- Penman H. L., 1948 : Natural evaporation from open water balance bare soil, and grass. Proceedings of the Royal Society, London, Series A, 193, 120–145. [Google Scholar]
- Philip J. R., 1987 : A physical bound on the Bowen ratio. Journal of Climate and Applied Meteorology, 26, 1043–1045. [CrossRef] [Google Scholar]
- Rana G., Katerji N., Matrorilli M. et El Moujabber M., 1994 : Evapotranspiration and canopy resistance of grass in a Mediterranean region. Theoretical and Applied Climatology, 50(1–2), 61–71. [CrossRef] [Google Scholar]
- Rana G. et Katerji N., 2000 : Measurement and estimation of actual evapotranspiration in the field under Mediterranean climate: a review. European Journal Agriculture, 13(2–3), 125–153. [Google Scholar]
- Rana G., Katerji N. et De Lorenzi F., 2005 : Measurement and modelling of evapotranspiration of irrigated citrus orchard under Mediterranean conditions. Agricultural and Forest Meteorology, 128, 199–209. [CrossRef] [Google Scholar]
- Revfeim K. J. A. et Jordan R. B., 1976 : Precision of evaporation measurements using the Bowen ratio. Boundary-Layer Meteorology, 10, 97–111. [CrossRef] [Google Scholar]
- Rose C. W., Byrne G. F. et Hansen G. K., 1976 : Water transport from soil through plant to atmosphere: a lumped parameters model. Agricultural Meteorology, 16, 171–184. [CrossRef] [Google Scholar]
- Saugier B., 1974 : Transport de CO2 et de vapeur d’eau au-dessus et à l’interface végétation-atmosphère. Interaction du microclimat avec le comportement physiologique de plantes prairiales. Thèse d’Etat, Université des Sciences et Techniques du Languedoc, Montpellier, 155 pages. [Google Scholar]
- Steduto P., Caliandro A., Rubino P., Ben Mechlia N., Masmoudi M., Martinez-Cob A., Jose Faci M., Rana G., Mastrorilli M., El Mourid M., Karrou M., Kanber R., Kirda C., El-Quosy D., El-Askari K., Ait Ali M., Zareb D. et Snyder, R. L., 1996 : Penman-Monteith reference evapotranspiration estimates in the Mediterranean region. In: Camp C. R., Sadler E. J., Yoder R. E. (éditeurs), Evapotranspiration and Irrigation Scheduling, Proceedings of the International Conference, San Antonio, TX, 3-6 November, 357-364.. [Google Scholar]
- Stewart, J. B., 1988 : Modelling surface conductance of pine forest. Agricultural and Forest Meteorology, 43, 19–35. [CrossRef] [Google Scholar]
- Thom A. S., 1972 : Momentum, mass and heat exchange of vegetation. Quarterly Journal of the Royal Meteorological Society, 98, 124–134. [CrossRef] [Google Scholar]
- van den Honert T. H., 1948 : Water Transport in plants as a catenary process. Discussions of the Faraday Society, 3, 146–153. [CrossRef] [Google Scholar]
- Villalobos F. J., Orgaz F., Testi L. et Fereres E., 2000 : Measurement and modelling of evapotranspiration of olive (Olea europea L.) orchards. Agricultural and Forest Meteorology, 130, 155–163. [Google Scholar]
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