We tested, compared and modified three models of stomatal conductance at the leaf level in a forest ecosystem where drought stress is a major factor controlling forest productivity. The models were tested against 2 years (1999 and 2000) of leaf-level measurements on ponderosa pine (Pinus ponderosa Dougl. ex Laws.) growing in the Mediterranean climate of California, USA. The Ball, Woodrow and Berry (1987) (BWB) model was modified to account for soil water stress. Among the models, results of the modified BWB model were in the closest agreement with observations (r(2) = 0.71). The Jarvis (1976) model showed systematic simulation errors related to vapor pressure deficit (r(2) = 0.65). Results of the Williams, Rastetter, Fernandes et at. (1996)...
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...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...
Modeling stomatal conductance is a key element in predicting tree growth and water use at the stand ...
Stomata regulate CO2 uptake for photosynthesis and water loss through transpiration. The approaches ...
Drought strongly influences terrestrial C cycling via its effects on plant H2O and CO2 exchange. How...
© 2017 Elsevier B.V. Drought strongly influences terrestrial C cycling via its effects on plant H2O ...
Not AvailableClimate change is expected to lead to increases in drought frequency and severity, with...
A model was developed earlier describing conductance for three conifers (Picea engelmannii Parry ex ...
Coupled photosynthesis–stomatal conductance (A–gs) models are commonly used in ecosystem models to r...
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...
We examined physiological parameter tradeoffs in modeling stomatal control of transpiration from a n...
The weather patterns of the west side of the Sierra Nevada Mountains (cold, wet winters and hot, dry...
Models disagree on how to represent effects of drought stress on plant gas exchange. Some models ass...
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...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...
Modeling stomatal conductance is a key element in predicting tree growth and water use at the stand ...
Stomata regulate CO2 uptake for photosynthesis and water loss through transpiration. The approaches ...
Drought strongly influences terrestrial C cycling via its effects on plant H2O and CO2 exchange. How...
© 2017 Elsevier B.V. Drought strongly influences terrestrial C cycling via its effects on plant H2O ...
Not AvailableClimate change is expected to lead to increases in drought frequency and severity, with...
A model was developed earlier describing conductance for three conifers (Picea engelmannii Parry ex ...
Coupled photosynthesis–stomatal conductance (A–gs) models are commonly used in ecosystem models to r...
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...
We examined physiological parameter tradeoffs in modeling stomatal control of transpiration from a n...
The weather patterns of the west side of the Sierra Nevada Mountains (cold, wet winters and hot, dry...
Models disagree on how to represent effects of drought stress on plant gas exchange. Some models ass...
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...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...