Our objective is to describe a multi-layer model of C3-canopy processes that effectively simulates hourly CO2 and latent energy (LE) fluxes in a mixed deciduous Quercus-Acer (oak-maple) stand in central Massachusetts, USA. The key hypothesis governing the biological component of the model is that stomatal conductance (g(s)) is varied so that daily carbon uptake per unit of foliar nitrogen is maximized within the limitations of canopy water availability. The hydraulic system is modelled as an analogue to simple electrical circuits in parallel, including a separate soil hydraulic resistance, plant resistance and plant capacitance for each canopy layer. Stomatal opening is initially controlled to conserve plant water stores and delay the onset...
Models of vegetation function are widely used to predict the effects of climate change on carbon, wa...
Models of vegetation function are widely used to predict the effects of climate change on carbon, wa...
The ecosystem carbon (C) and nitrogen (N) processes and the C-coupled energy and water dynamics were...
Our objective is to describe a multi-layer model of C3-canopy processes that effectively simulates h...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...
• 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 ...
A big-leaf model of C3-canopy mass and energy exchange was used to predict hourly CO2 and O3 uptake ...
A big-leaf model of C3-canopy mass and energy exchange was used to predict hourly CO2 and O3 uptake ...
Stomatal conductance influences both photosynthesis and transpiration, thereby coupling the carbon a...
Models of vegetation function are widely used to predict the effects of climate change on carbon, wa...
Models of vegetation function are widely used to predict the effects of climate change on carbon, wa...
The ecosystem carbon (C) and nitrogen (N) processes and the C-coupled energy and water dynamics were...
Our objective is to describe a multi-layer model of C3-canopy processes that effectively simulates h...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...
• SPAC model to predict forest water consumption under wet and dry conditions.• Interactions and fee...
• 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 ...
A big-leaf model of C3-canopy mass and energy exchange was used to predict hourly CO2 and O3 uptake ...
A big-leaf model of C3-canopy mass and energy exchange was used to predict hourly CO2 and O3 uptake ...
Stomatal conductance influences both photosynthesis and transpiration, thereby coupling the carbon a...
Models of vegetation function are widely used to predict the effects of climate change on carbon, wa...
Models of vegetation function are widely used to predict the effects of climate change on carbon, wa...
The ecosystem carbon (C) and nitrogen (N) processes and the C-coupled energy and water dynamics were...