Stomatal conductance (gs) is a key variable in Earth system models as it regulates the transfer of carbon and water between the terrestrial biosphere and the lower atmosphere. Various approaches have been developed that aim for a simple representation of stomatal regulation applicable at the global scale. These models differ, among others, in their response to atmospheric humidity, which induces stomatal closure in a dry atmosphere. In this study, we compared the widely used empirical Ball-Berry and Leuning stomatal conductance models to an alternative empirical approach, an optimization-based approach, and a semi mechanistic hydraulic model. We evaluated these models using evapotranspiration (ET) and gross primary productivity (GPP) obser...
Stomatal conductance (gs) is a key land-surface attribute as it links transpiration, the dominant co...
Current land surface schemes in weather and climate models make use of the so-called coupled photosy...
This chapter presents some of the available modelling techniques to predict stomatal conductance at ...
Stomatal conductance (gs) is a key variable in Earth system models as it regulates the transfer of c...
Stomatal conductance (gs) affects the fluxes of carbon, energy and water between the vegetated land ...
Stomatal conductance (gs) affects the fluxes of carbon, energy and water between the vegetated land ...
Models of vegetation function are widely used to predict the effects of climate change on carbon, wa...
The establishment of an accurate stomatal conductance (gs) model in responding to CO2 enrichment und...
Climate change is expected to lead to increases in drought frequency and severity, with deleterious ...
Stomata play a key role in plant adaptation to changing environmental conditions as they control bot...
Climate change is expected to lead to increases in drought frequency and severity, with deleterious ...
Not AvailableClimate change is expected to lead to increases in drought frequency and severity, with...
Land surface models (LSMs) typically use empirical functions to represent vegetation responses to so...
Stomatal conductance (gs) is a key land-surface attribute as it links transpiration, the dominant co...
Current land surface schemes in weather and climate models make use of the so-called coupled photosy...
This chapter presents some of the available modelling techniques to predict stomatal conductance at ...
Stomatal conductance (gs) is a key variable in Earth system models as it regulates the transfer of c...
Stomatal conductance (gs) affects the fluxes of carbon, energy and water between the vegetated land ...
Stomatal conductance (gs) affects the fluxes of carbon, energy and water between the vegetated land ...
Models of vegetation function are widely used to predict the effects of climate change on carbon, wa...
The establishment of an accurate stomatal conductance (gs) model in responding to CO2 enrichment und...
Climate change is expected to lead to increases in drought frequency and severity, with deleterious ...
Stomata play a key role in plant adaptation to changing environmental conditions as they control bot...
Climate change is expected to lead to increases in drought frequency and severity, with deleterious ...
Not AvailableClimate change is expected to lead to increases in drought frequency and severity, with...
Land surface models (LSMs) typically use empirical functions to represent vegetation responses to so...
Stomatal conductance (gs) is a key land-surface attribute as it links transpiration, the dominant co...
Current land surface schemes in weather and climate models make use of the so-called coupled photosy...
This chapter presents some of the available modelling techniques to predict stomatal conductance at ...