The seasonal course of canopy transpiration and the diurnal courses of latent heat flux of a spring wheat crop were simulated for atmospheric CO2 concentrations of 370 and 550 mu mol mol(-1). The hourly weather data, soil parameters and the irrigation and fertilizer treatments of the Free-Air Carbon Dioxide Enrichment wheat experiment in Arizona (1992-1993) were used to drive the model. The simulation results were tested against field measurements with special emphasis on the period between anthesis and maturity. A model integrating leaf photosynthesis and stomatal conductance was scaled to canopy level in order to be used in the wheat growth model. The simulated intercellular CO2 concentration, C-i, was determined from the ratio of C-i to the CO2 concentration at the leaf surface, C-s, the leaf-to-air specific humidity deficit and a possibly unfulfilled transpiration demand, After anthesis, the measured assimilation rates of the flag leaves decreased more rapidly than their stomatal conductances, leading to a rise in the C-i/C-s ratio. In order to describe this observation, an empirical model approach was developed which took into account the leaf nitrogen content for the calculation of the C-i/C-s ratio. Simulation results obtained with the new model version were in good agreement with the measurements. If changes in the C-i/C-s ratio in accordance with the decrease in leaf nitrogen content during leaf senescence were not considered in the model, simulations revealed an underestimation of the daily canopy transpiration of up to 20% and a decrease in simulated seasonal canopy transpiration by 10%. The measured reduction in the seasonal sum of canopy transpiration and soil evaporation owing to CO2 enrichment, in comparison, was only about 5%. (C) 1999 Elsevier Science B.V. All rights reserved.
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CSIRO Agr & Food, Private Bag 5, Wembley, WA 6913, Australia
Univ Melbourne, Fac Vet & Agr Sci, Creswick, Vic 3363, AustraliaCSIRO Agr & Food, Private Bag 5, Wembley, WA 6913, Australia
Houshmandfar, Alireza
Fitzgerald, Glenn J.
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Univ Melbourne, Fac Vet & Agr Sci, Creswick, Vic 3363, Australia
Victoria State Dept Econ Dev Jobs Transport & Res, Agr Victoria, Horsham, Vic 3401, AustraliaCSIRO Agr & Food, Private Bag 5, Wembley, WA 6913, Australia
Fitzgerald, Glenn J.
O'Leary, Garry
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Victoria State Dept Econ Dev Jobs Transport & Res, Agr Victoria, Horsham, Vic 3401, AustraliaCSIRO Agr & Food, Private Bag 5, Wembley, WA 6913, Australia
O'Leary, Garry
Tausz-Posch, Sabine
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Univ Melbourne, Fac Vet & Agr Sci, Creswick, Vic 3363, Australia
Univ Birmingham, Sch Biosci, Birmingham B15 2TT, W Midlands, EnglandCSIRO Agr & Food, Private Bag 5, Wembley, WA 6913, Australia
Tausz-Posch, Sabine
Fletcher, Andrew
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CSIRO Agr & Food, Private Bag 5, Wembley, WA 6913, AustraliaCSIRO Agr & Food, Private Bag 5, Wembley, WA 6913, Australia
Fletcher, Andrew
Tausz, Michael
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Univ Birmingham, Birmingham Inst Forest Res, Birmingham B15 2TT, W Midlands, England
Univ Melbourne, Dept Ecosyst & Forest Sci, Creswick, Vic 3363, AustraliaCSIRO Agr & Food, Private Bag 5, Wembley, WA 6913, Australia
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German Res Ctr Food Chem, D-85748 Garching, Germany
Hans Dieter Belitz Inst Cereal Res, D-85748 Garching, GermanyFed Res Inst Rural Areas, Johann Heinrich von Thunen Inst, Inst Biodiversity, D-38116 Braunschweig, Germany
Wieser, Herbert
Manderscheid, Remy
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Fed Res Inst Rural Areas, Johann Heinrich von Thunen Inst, Inst Biodiversity, D-38116 Braunschweig, GermanyFed Res Inst Rural Areas, Johann Heinrich von Thunen Inst, Inst Biodiversity, D-38116 Braunschweig, Germany
Manderscheid, Remy
Erbs, Martin
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Fed Res Inst Rural Areas, Johann Heinrich von Thunen Inst, Inst Biodiversity, D-38116 Braunschweig, GermanyFed Res Inst Rural Areas, Johann Heinrich von Thunen Inst, Inst Biodiversity, D-38116 Braunschweig, Germany
Erbs, Martin
Weigel, Hans-Joachim
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Fed Res Inst Rural Areas, Johann Heinrich von Thunen Inst, Inst Biodiversity, D-38116 Braunschweig, GermanyFed Res Inst Rural Areas, Johann Heinrich von Thunen Inst, Inst Biodiversity, D-38116 Braunschweig, Germany