This chapter presents some of the available modelling techniques to predict stomatal conductance at leaf and canopy level, the key driver of the transpiration component in the evapotranspiration process of vegetated surfaces. The process-based models reported, are able to predict fast variations of stomatal conductance and the related transpiration and evapotranspiration rates, e.g. at hourly scale. This high–time resolution is essential for applications which couple the transpiration process with carbon assimilation or air pollutants uptake by plants. In these cases, the big-leaf approach, together with the resistive analogy which simulates the gas-exchange between vegetation and atmosphere, is a simple but valid example of a process-b...
Stomatal conductance (gs) is a key variable in Earth system models as it regulates the transfer of c...
The establishment of an accurate stomatal conductance (gs) model in responding to CO2 enrichment und...
Stomatal conductance (gs) affects the fluxes of carbon, energy and water between the vegetated land ...
This chapter presents some of the available modelling techniques to predict stomatal conductance at ...
Models of vegetation function are widely used to predict the effects of climate change on carbon, wa...
The dual-source Shuttleworth-Wallace model has been widely used to estimate and partition crop evapo...
Water use efficiency (WUE) is considered as a determinant of yield under stress and a component of c...
International audienceStomata play a central role in surface-atmosphere exchange by controlling the ...
The dual-source Shuttleworth-Wallace model has been widely used to estimate and partition crop evapo...
Representation of stomatal physiology in models of plant-atmosphere gas exchange is minimal, and dir...
<div><p>The dual-source Shuttleworth-Wallace model has been widely used to estimate and partition cr...
Stomatal conductance influences both photosynthesis and transpiration, thereby coupling the carbon a...
Stomata play a key role in plant adaptation to changing environmental conditions as they control bot...
Stomatal conductance (gs) affects the fluxes of carbon, energy and water between the vegetated land ...
Stomatal conductance (gs) is a key variable in Earth system models as it regulates the transfer of c...
Stomatal conductance (gs) is a key variable in Earth system models as it regulates the transfer of c...
The establishment of an accurate stomatal conductance (gs) model in responding to CO2 enrichment und...
Stomatal conductance (gs) affects the fluxes of carbon, energy and water between the vegetated land ...
This chapter presents some of the available modelling techniques to predict stomatal conductance at ...
Models of vegetation function are widely used to predict the effects of climate change on carbon, wa...
The dual-source Shuttleworth-Wallace model has been widely used to estimate and partition crop evapo...
Water use efficiency (WUE) is considered as a determinant of yield under stress and a component of c...
International audienceStomata play a central role in surface-atmosphere exchange by controlling the ...
The dual-source Shuttleworth-Wallace model has been widely used to estimate and partition crop evapo...
Representation of stomatal physiology in models of plant-atmosphere gas exchange is minimal, and dir...
<div><p>The dual-source Shuttleworth-Wallace model has been widely used to estimate and partition cr...
Stomatal conductance influences both photosynthesis and transpiration, thereby coupling the carbon a...
Stomata play a key role in plant adaptation to changing environmental conditions as they control bot...
Stomatal conductance (gs) affects the fluxes of carbon, energy and water between the vegetated land ...
Stomatal conductance (gs) is a key variable in Earth system models as it regulates the transfer of c...
Stomatal conductance (gs) is a key variable in Earth system models as it regulates the transfer of c...
The establishment of an accurate stomatal conductance (gs) model in responding to CO2 enrichment und...
Stomatal conductance (gs) affects the fluxes of carbon, energy and water between the vegetated land ...