Increased atmospheric concentrations of carbon dioxide (CO2) will benefit the yield of most crops. Two free air CO2 enrichment (FACE) meta-analyses have shown increases in yield of between 0 and 73% for C3 crops. Despite this large range, few crop modelling studies quantify the uncertainty inherent in the parameterisation of crop growth and development. We present a novel perturbed-parameter method of crop model simulation, which uses some constraints from observations, that does this. The model used is the groundnut (i.e. peanut; Arachis hypogaea L.) version of the general large-area model for annual crops (GLAM). The conclusions are of relevance to C3 crops in general. The increases in yield simulated by GLAM for doubled CO2 were between ...
Rising atmospheric CO2 concentrations ([CO2]) are expected to enhance photosynthesis and reduce crop...
Several crop models may be used to simulate the effects of elevated CO2 on crop productivity. Yet no...
Several crop models may be used to simulate the effects of elevated CO2 on crop productivity. Yet no...
Increased atmospheric concentrations of carbon dioxide (CO2) will benefit the yield of most crops. T...
This study assesses the ability of 21 crop models to capture the impact of elevated CO2 concentratio...
Elevated atmospheric CO2 concentrations ([CO2]) cause direct changes in crop physiological processes...
Background - Process-based ecophysiological crop models are pivotal in assessing responses of crop p...
AbstractClimatic changes and elevated atmospheric CO2 concentrations will affect crop growth and pro...
Many modelling studies examine the impacts of climate change on crop yield, but few explore either t...
International audiencePlant responses to rising atmospheric carbon dioxide (CO2) concentrations, tog...
Climatic changes and elevated atmospheric CO2 concentrations will affect crop growth and production ...
The impacts of climate change on crop productivity are often assessed using simulations from a numer...
The impacts of climate change on crop productivity are often assessed using simulations from a numer...
Methods and Results Given the incertitudes on the climate change impacts on C4 crops, projections of...
Rising atmospheric CO2 concentrations ([CO2]) are expected to enhance photosynthesis and reduce crop...
Several crop models may be used to simulate the effects of elevated CO2 on crop productivity. Yet no...
Several crop models may be used to simulate the effects of elevated CO2 on crop productivity. Yet no...
Increased atmospheric concentrations of carbon dioxide (CO2) will benefit the yield of most crops. T...
This study assesses the ability of 21 crop models to capture the impact of elevated CO2 concentratio...
Elevated atmospheric CO2 concentrations ([CO2]) cause direct changes in crop physiological processes...
Background - Process-based ecophysiological crop models are pivotal in assessing responses of crop p...
AbstractClimatic changes and elevated atmospheric CO2 concentrations will affect crop growth and pro...
Many modelling studies examine the impacts of climate change on crop yield, but few explore either t...
International audiencePlant responses to rising atmospheric carbon dioxide (CO2) concentrations, tog...
Climatic changes and elevated atmospheric CO2 concentrations will affect crop growth and production ...
The impacts of climate change on crop productivity are often assessed using simulations from a numer...
The impacts of climate change on crop productivity are often assessed using simulations from a numer...
Methods and Results Given the incertitudes on the climate change impacts on C4 crops, projections of...
Rising atmospheric CO2 concentrations ([CO2]) are expected to enhance photosynthesis and reduce crop...
Several crop models may be used to simulate the effects of elevated CO2 on crop productivity. Yet no...
Several crop models may be used to simulate the effects of elevated CO2 on crop productivity. Yet no...