The Ent Terrestrial Biosphere Model (Ent TBM) is a mixed-canopy dynamic global vegetation model developed specifically for coupling with land surface hydrology and general circulation models (GCMs). This study describes the leaf phenology submodel implemented in the Ent TBM version 1.0.1.0.0 coupled to the carbon allocation scheme of the Ecosystem Demography (ED) model. The phenology submodel adopts a combination of responses to temperature (growing degree days and frost hardening), soil moisture (linearity of stress with relative saturation) and radiation (light length). Growth of leaves, sapwood, fine roots, stem wood and coarse roots is updated on a daily basis. We evaluate the performance in reproducing observed leaf seasonal growth as ...
The Lund-Potsdam-Jena Dynamic Global Vegetation Model (LPJ) combines process-based, large-scale repr...
[1] Vegetation affects the climate by modifying the energy, momentum, and hydrologic balance of the ...
Seasonal changes in plant leaf area have a substantial impact on global climate. The presence of lea...
The Multi-Layer Canopy Model (MLCan) is a vegetation model created to capture plant responses to env...
Phenology, by controlling the seasonal activity of vegetation on the land surface, plays a fundament...
Phenology, by controlling the seasonal activity of vegetation on the land surface, plays a fundament...
Understanding the environmental and biotic drivers of respiration at the ecosystem level is a prereq...
International audienceAbstract. Plant phenology plays a fundamental role in land–atmosphere interact...
Existing dynamic global vegetation models (DGVMs) have a limited ability in reproducing phenology an...
Vegetation plays an important role in regulating global carbon cycles and is a key component of the ...
The Lund-Potsdam-Jena Dynamic Global Vegetation Model (LPJ) combines process-based, large-scale repr...
[1] Vegetation affects the climate by modifying the energy, momentum, and hydrologic balance of the ...
Seasonal changes in plant leaf area have a substantial impact on global climate. The presence of lea...
The Multi-Layer Canopy Model (MLCan) is a vegetation model created to capture plant responses to env...
Phenology, by controlling the seasonal activity of vegetation on the land surface, plays a fundament...
Phenology, by controlling the seasonal activity of vegetation on the land surface, plays a fundament...
Understanding the environmental and biotic drivers of respiration at the ecosystem level is a prereq...
International audienceAbstract. Plant phenology plays a fundamental role in land–atmosphere interact...
Existing dynamic global vegetation models (DGVMs) have a limited ability in reproducing phenology an...
Vegetation plays an important role in regulating global carbon cycles and is a key component of the ...
The Lund-Potsdam-Jena Dynamic Global Vegetation Model (LPJ) combines process-based, large-scale repr...
[1] Vegetation affects the climate by modifying the energy, momentum, and hydrologic balance of the ...
Seasonal changes in plant leaf area have a substantial impact on global climate. The presence of lea...