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- W2071330776 abstract "From concurrent data of stomatal conductance of sunlit leaves (Ci; mm s−1), leaf water potential (ψ; m), and net radiation (Rn; W m−2) we derive the empirical relationship: Cl=(0.986+0.025Rn)11+(ψ−230.8)5.51 Stomatal conductances calculated using the above equation are compared with an independent data set. Canopy resistance derived from the above equation is used in a plant water balance equation to simulate diurnal evaporation fluxes for three days, and we compare the calculated fluxes with lysimeter observations for well-watered and water-stressed wheat. Canopy temperatures are additionally obtained from an energy balance equation and compared with infrared radiometer observations. Regression analysis of simulated and observed evaporation fluxes yields a correlation coefficient of 0.98 and a standard error of estimate of about 37 W m−2; while for the canopy temperatures the correlation coefficient is 0.98 and the standard error of estimates 1.04°C. Variation of canopy net photosynthesis with insolation, and leaf area index are also simulated and compared with observations." @default.
- W2071330776 created "2016-06-24" @default.
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- W2071330776 date "1985-11-01" @default.
- W2071330776 modified "2023-10-16" @default.
- W2071330776 title "An empirical model for stomatal resistance of field-grown wheat" @default.
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- W2071330776 doi "https://doi.org/10.1016/0168-1923(85)90066-8" @default.
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