- عطایی، ا.، نیشابوری، م.ر.، اکبری، م.، زارعحقی، د. و عنابی میلانی، ا. 1397. ارزیابی مدل هایدروس دو بعدی برای تعیین توزیع رطوبت خاک در آبیاری قطرهای سطحی و زیر سطحی درختان پسته. نشریه پژوهش آب در کشاورزی. جلد 32. شماره 4. صفحات 581-595.
- عطایی ا.، نیشابوری م ر.، اکبری م.، زارعحقی د. و عنابی میلانی، ا. 1398. پاسخ گیاه پسته به توزیع رطوبت و شوری در سامانههای آبیاری قطرهای سطحی و زیرسطحی. آبیاری و زهکشی ایران. جلد 13. شماره 1. صفحات 115-128.
- کاظمی، ز.، نیشابوری، م.ر.، زارع حقی، د. و عسگرزاده، ح. 1397. تعیین دامنه رطوبتی با حداقل محدودیت بر مبنای پاسخ گیاه آفتابگردان. نشریه پژوهشهای خاک (علوم خاک و آب). جلد 32.شماره 2. صفحات 165- 177.
- مسکینی ویشکایی، ف. 1393. ﺑﺮآورد داﻣﻨﻪ رﻃﻮﺑﺖ ﻗﺎﺑﻞ دﺳﺘﺮس ﺑﺮای ﮔﻴﺎه ﮔﻨﺪم و ﻛﻠﺰا ﺑﺎ اﺳﺘﻔﺎده از ﻋﻮاﻣﻞ ﺧﺎک و گیاه. رساله دکتری، دانشکده کشاورزی، دانشگاه زنجان. ایران.
- Asgarzadeh, H., Mosaddeghi, M.R. and Nikbakht, A.M. 2014a. SAWCal: A user-friendly program for calculating soil available water quantities and physical quality indices. Computers and Electronics in Agriculture. 109: 86-93.
- Asgarzadeh, H., Mosaddeghi, M.R., Dexter, A.R., Mahboubi, A.A. and Neyshabouri. M.R. 2014b. Determination of soil available water for plants: Consistency between laboratory and field measurements. Geoderma. 226-227: 8-20.
- Asgarzadeh, H., Mosaddeghi, M.R., Mahboubi, A.A., Nosrati, A. and Dexter. A.R. 2010. Soil water availability for plants as quantified by conventional available water, least limiting water range and integral water capacity. Plant and Soil 335: 229-244.
- Asgarzadeh, H., Mosaddeghi, M.R., Mahboubi, A.A., Nosrati, A. and Dexter. A.R. 2011. Integral energy of conventional available water, least limiting water range and integral water capacity for better characterization of water availability and soil physical quality. Geoderma 166: 34-42.
- Chahal, S.S. 2010. Evaluation of soil hydraulic limitations in determining plant-available-water in light textured soils. PhD thesis. School of Agriculture, Food and Wine. The University of Adelaide. Adelaide, South Australia, Australia.
- Durner, W. 1994. Hydraulic conductivity estimation for soils with heterogeneous pore structure. Water Resources Research. 30: 211-223.
- Eastham, J. and Gray, S.A. 1998. A preliminary evaluation of the suitability of sap flow sensors for use in scheduling vineyard irrigation. American Journal of Enology and Viticulture. 49: 171–176.
- Er-Raki, S., Chehbouni, A., Ezzahar, J., Khabba, S., Boulet, G., Hanich, L. and Williams, D. 2009. Evapotranspiration partitioning from sap flow and eddy covariance techniques for olive orchards in semi-arid region. Acta Horticulturae. 846: 201–208.
- Ferguson, L., Heraclio, C., Blake, S., Steve, G. and Zachary, H. 2002. Salinity tolerance evaluation of pistachio rootstocks. Production Research. 7:122-124.
- Gee, G.W. and Bauder, J.W. 1986. Particle-size analysis. In: Klute, A. (Ed.), Methods of Soil Analysis, Part 1 – Physical and Mineralogical Methods. Lewis Publishers. Madison, WI. pp. 383–411.
- Gong, D., Kang, Sh., Zhang, Lu., Du, T. and Yao, L. 2006. A two-dimensional model of root water uptake for single apple trees and its verification with sap flow and soil water content measurements. Agricultural Water Management. 83:119–129.
- Granier, A., 1985. A new method of sap flow measurement in tree stems. Annales des Sciences Forestieres (France).
- Groenevelt, P., Grant C. and Semetsa, S. 2001. A new procedure to determine soil water availability. Soil Research. 39: 577-598.
- Groenevelt, P., Grant, C. and Murray, R. 2004. On water availability in saline soils. Soil Research. 42: 833-840.
- Klute, A. 1986. Hydraulic conductivity and diffusivity: Laboratory methods. In: Klute, A. (ed.), Methods of soil analysis: part 1: Physical and mineralogical methods. Agronomy monograph vol 9, 2nd edn. American Society of Agronomy. Madison, Wisconsin. p. 687–732.
- Kool, D., Agam, N., Lazarovitch, N., Heitman, J.L., Sauer, T.J. and Ben-Gal, A. 2014. A review of approaches for evapotranspiration partitioning. Agriculture Forest Meteorology. 184:56–70.
- Lu, P., Urban, L. and Zhao, P. 2004. Granier's thermal dissipation probe (TDP) method for measuring sap flow in trees: theory and practice. Acta Botanica Sinica-english edition. 46(6): 631-646.
- Mehdi-Tounsi, H., Chelli-Chaabouni, A., Mahjoub-Boujnah, D. and Boukhris, M. 2017. Long-term field response of pistachio to irrigation water salinity. Agricultural Water Management. 185: 1-12.
- Meskini-Vishkaee, F., Mohammadi, M.H. and Neyshabouri, M.R. 2018. Revisiting the wet and dry ends of soil integral water capacity using soil and plant properties. Soil Research. 56(4): 331-345.
- Metselaar, K. and van Lier, Q. 2007. The shape of the transpiration reduction function under plant water stress. Vadose Zone Journal. 6(1): 124-139
- Nang, N.D. 2012. Plant availability of water in soils being reclaimed from the saline-sodic state. PhD Thesis. The University of Adelaide. Australia.
- Nelson, D.W. and Sommers, L.E. 1996. Total carbon, organic carbon and organic matter. In: Sparks, D.L., Page, A.L., Helmke, P.A., Loeppert, R.H., Soltanpour, P.N., Tabatabaei, M.A., Johnson C.T. and Sumner M.E. (eds.). Methods of Soil Analysis. Part 3, Chemical Methods. Soil Science Society of America Book Serie 5. SSSA, Madison, WI, USA. pp. 967-1010.
- Oren, R., Philips, N., Ewers, B.E., Pataki, D.E. and Megonigal, J.P. 1999. Sap-flux scaled transpiration reponses to light, vapour pressure deficit, and leaf area reductionin a flooded Taxodium distichum forest. Tree Physiol. 19: 337–347.
- Pataki, D.E., Oren, R. and Smith, W.K. 2000. Sap flux of co-occurring species in a western subalpine forest during seasonal soil drought. Ecology. 81(9): 2557-2566.
- Remorini, D. and Massai, R. 2003. Comparison of water status indicators for young peach trees. Irrigation Science. 22: 39–46.
- Schröder, N., Lazarovitch, N., Vanderborght, J., Vereecken, H. and Javaux, M. 2014. Linking transpiration reduction to rhizosphere salinity using a 3D coupled soil-plant model. Plant and Soil. 377(1-2): 277-293.
- Tognetti, R., dĭAndria, R., Morelli, G., Calandrelli, D. and Fragnito, F. 2004. Irrigation effects on daily and seasonal variations of trunk sap flow and leaf water relations in olive trees. Plant and Soil. 263: 249–264.
- Van Genuchten, M.T. 1987. A numerical model for water and solute movement in and below the root zone. United States Department of Agriculture, Agricultural Research Service, US Salinity Laboratory, Reverside.
- Vrugt J. A., Hopmans, J. W., & Simunek, J. 2001. Calibration of a two-dimensional root water uptake model. Soil Science Society of America Journal, 65, 1027-1037.
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