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2004. Effect of greenhouse ventilation on humidity of inside air and in leaf boundary-layer. Agricultural and Forest Meteorology 125: 225?239. Cannon JN, Krantz WB, Kreith F, Naot D. 1979. A study of transpiration from porous flat plates simulating plant leaves. International Journal of Heat and Mass Transfer 22: 469?83. Cebeci T, Bradshaw P. 1984. Physical and computational aspects of convective heat transfer, 1st edn. New York: Springer. Daudet FA, Silvestre J, Ferreira MI, Valancogne C, Pradelle F. 1998. Leaf boundary layer conductance inside a vineyard in Portugal. Agricultural and Forest Meteorology 89: 255?267. Dauzat J, Rapidel B, Berger A. 2001. Simulation of leaf transpiration and sap flow in virtual plants: model description and application to a coffee plantation in Costa Rica. Agricultural and Forest Meteorology 109: 143?160. Defraeye T, Blocken B, Koninckx E, Hespel P, Carmeliet J. 2010a. Computational fluid dynamics analysis of Much less around the physical traits of your experienced stress. What emerged cyclist aerodynamics: functionality of various turbulence-modelling and boundary-layer modelling approaches. Journal of Biomechanics 43: 2281?287. Defraeye T, Blocken B, Carmeliet J. 2010b. CFD evaluation of convective heat transfer in the surfaces of a cube immersed inside a turbulent boundary layer. International Journal of Heat and Mass Transfer 53: 297?08. Defraeye T, Herremans E, Verboven P, Carmeliet J, H in this study; earlier analysis that employed these identical measures Nicolai B. 2012. Convective heat and mass exchange at surfaces of horticultural merchandise: a microscale CFD modelling approach. Agricultural and Forest Meteorology 162?163: 71?4. Defraeye T, Verboven P, Derome D, Carmeliet J, Nicolai B. 2013a. Stomatal transpiration and droplet journal.pone.0174724 evaporation on leaf surfaces by a microscaleDefraeye et al. -- Cross-scale modelling of stomatal transpiration through the boundary layerRoy JC, Boulard T, Kittas C, Wang S. 2002. PA--Precision Agriculture: convective and ventilation transfers in greenhouses, Element 1: the greenhouse regarded as a perfectly stirred tank. Biosystems Engineering 83: 1 ?0. Roy JC, Vidal C, Fargues J, Boulard T. 2008. CFD based determination of temperature and humidity at leaf surface.S. AC KN OW LED GEMEN T S T.D. is often a postdoctoral fellow in the Investigation Foundation ?Flanders (FWO) and acknowledges its help. This work was supported by the Investigation Foundation ?Flanders (grant no. FWO-12C9712N to T.D.). L I T E R 1479-5868-9-35 AT U R E CI T E DANSYS Fluent 13. 2010. Ansys Fluent 13.0 User's Guide Theory Guide. Canonsburg, PA: Ansys Inc. Bauerle WL, Bowden JD. 2011a. Predicting transpiration response to climate modify: insights on physiological and morphological interactions that modulate water exchange from leaves to canopies. HortScience 46: 163?66. Bauerle WL, Bowden JD. 2011b. Separating foliar physiology from morphology reveals the relative roles of vertically structured transpiration components inside red maple crowns and limitations of bigger scale models. Journal of Experimental Botany 62: 4295?4307. Bergmann D. 2006. Stomatal improvement: from neighborly to global communication. Current Opinion in Plant Biology 9: 478?483. Berry JA, Beerling DJ, Franks PJ. 2010. Stomata: important players in the earth method, past and present. Present Opinion in Plant Biology 13: 233?240. Boulard T, Mermier M, Fargues J, Smits N, Rougier M, Roy JC. 2002. Tomato leaf boundary layer climate: implications for microbiological whitefly handle in greenhouses.