A model of the daily carbon balance of a black spruce/feathermoss boreal forest ecosystem was developed and results compared to preliminary data from the 1994 BOREAS field campaign in northem Manitoba, Canada. The model, driven by daily weather conditions, simulated daily soil climate status (temperature and moisture profiles), spruce photosynthesis and respiration, moss photosynthesis and respiration, and litter decomposition. Model agreement with preliminary field data was good for net ecosystem exchange (NEE), capturing both the asymmetrical seasonality and short-term variability. During the growing season simulated daily NEE ranged from -4 g C m-2 d-1 (carbon uptake by ecosystem) to + 2 g C m-2 d-1 (carbon flux to atmosphere), with fluc...
International audienceA better understanding of the coupling between photosynthesis and carbon alloc...
International audienceA better understanding of the coupling between photosynthesis and carbon alloc...
The response of net ecosystem productivity (NEP) and evaporation in a boreal aspen (Populus tremuloi...
A model of the daily carbon balance of a black spruce/feathermoss boreal forest ecosystem was develo...
A model of the daily carbon balance of a black spruce/feathermoss boreal forest ecosystem was develo...
A model of the daily carbon balance of a black spruce/feathermoss boreal forest ecosystem was develo...
A model of the daily carbon balance of a black spruce/feathermoss boreal forest ecosystem was develo...
A model of the daily carbon balance of a black spruce/feathermoss boreal forest ecosystem was develo...
A process-based, general ecosystem model (BIOME–BGC) was used to simulate daily gross primary produc...
The Spruce and Moss Model (SPAM) was designed to simulate the daily carbon balance of a black spruce...
There is some uncertainty whether net ecosystem productivity (NEP) of boreal black spruce forests is...
There is some uncertainty whether net ecosystem productivity (NEP) of boreal black spruce forests is...
The BOREAS TE-19 team developed a model called the Spruce and Moss Model (SPAM) designed to simulate...
OME--BGC) was used to simulate daily gross primary produc-tion, maintenance and heterotrophic respir...
There is much uncertainty about the net carbon (C) exchange of boreal forest ecosystems, although th...
International audienceA better understanding of the coupling between photosynthesis and carbon alloc...
International audienceA better understanding of the coupling between photosynthesis and carbon alloc...
The response of net ecosystem productivity (NEP) and evaporation in a boreal aspen (Populus tremuloi...
A model of the daily carbon balance of a black spruce/feathermoss boreal forest ecosystem was develo...
A model of the daily carbon balance of a black spruce/feathermoss boreal forest ecosystem was develo...
A model of the daily carbon balance of a black spruce/feathermoss boreal forest ecosystem was develo...
A model of the daily carbon balance of a black spruce/feathermoss boreal forest ecosystem was develo...
A model of the daily carbon balance of a black spruce/feathermoss boreal forest ecosystem was develo...
A process-based, general ecosystem model (BIOME–BGC) was used to simulate daily gross primary produc...
The Spruce and Moss Model (SPAM) was designed to simulate the daily carbon balance of a black spruce...
There is some uncertainty whether net ecosystem productivity (NEP) of boreal black spruce forests is...
There is some uncertainty whether net ecosystem productivity (NEP) of boreal black spruce forests is...
The BOREAS TE-19 team developed a model called the Spruce and Moss Model (SPAM) designed to simulate...
OME--BGC) was used to simulate daily gross primary produc-tion, maintenance and heterotrophic respir...
There is much uncertainty about the net carbon (C) exchange of boreal forest ecosystems, although th...
International audienceA better understanding of the coupling between photosynthesis and carbon alloc...
International audienceA better understanding of the coupling between photosynthesis and carbon alloc...
The response of net ecosystem productivity (NEP) and evaporation in a boreal aspen (Populus tremuloi...