The LPJ-GUESS dynamic vegetation model uniquely combines an individual- and patch-based representation of vegetation dynamics with ecosystem biogeochemical cycling from regional to global scales. We present an updated version that includes plant and soil N dynamics, analysing the implications of accounting for C–N interactions on predictions and performance of the model. Stand structural dynamics and allometric scaling of tree growth suggested by global databases of forest stand structure and development were well reproduced by the model in comparison to an earlier multi-model study. Accounting for N cycle dynamics improved the goodness of fit for broadleaved forests. N limitation associated with low N-mineralisation rates reduces productiv...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
Recently a considerable amount of effort has been put into quantifying how interactions of the carbo...
The carbon cycle strongly interacts with the nitrogen cycle. Several observations show that the effe...
The LPJ-GUESS dynamic vegetation model uniquely combines an individual- and patch-based representati...
Global scale dynamic vegetation models simulate the global C cycle and atmosphere-vegetation interac...
The nature of future climate change will depend on anthropogenic emissions of CO2, as well as climat...
Recently a considerable amount of effort has been put into quantifying how interactions of the carbo...
Projections of future changes in land carbon (C) storage using biogeochemical models depend on accur...
International audienceNitrogen limitation of ecosystem productivity is ubiquitous, and it is thought...
Understanding the degree to which nitrogen (N) availability limits land carbon (C) uptake under glob...
We use the terrestrial ecosystem model (TEM), a process-based model, to investigate how interactions...
The response of the forest carbon balance to changes in nitrogen (N) deposition is uncertain, partly...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
Recently a considerable amount of effort has been put into quantifying how interactions of the carbo...
The carbon cycle strongly interacts with the nitrogen cycle. Several observations show that the effe...
The LPJ-GUESS dynamic vegetation model uniquely combines an individual- and patch-based representati...
Global scale dynamic vegetation models simulate the global C cycle and atmosphere-vegetation interac...
The nature of future climate change will depend on anthropogenic emissions of CO2, as well as climat...
Recently a considerable amount of effort has been put into quantifying how interactions of the carbo...
Projections of future changes in land carbon (C) storage using biogeochemical models depend on accur...
International audienceNitrogen limitation of ecosystem productivity is ubiquitous, and it is thought...
Understanding the degree to which nitrogen (N) availability limits land carbon (C) uptake under glob...
We use the terrestrial ecosystem model (TEM), a process-based model, to investigate how interactions...
The response of the forest carbon balance to changes in nitrogen (N) deposition is uncertain, partly...
Nitrogen (N) cycle dynamics and N deposition play an important role in determining the terrestrial b...
Recently a considerable amount of effort has been put into quantifying how interactions of the carbo...
The carbon cycle strongly interacts with the nitrogen cycle. Several observations show that the effe...