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Publications by Kim Naudts
Accounting for Forest Age in the Tile-Based Dynamic Global Vegetation Model JSBACH4 (4.20p7; Git Feature/Forests) &Amp;ndash; A Land Surface Model for the ICON-ESM
Related publications
Improved Simulation of Fire–vegetation Interactions in the Land Surface Processes and eXchanges Dynamic Global Vegetation Model (LPX-Mv1)
Geoscientific Model Development
Earth
Simulation
Planetary Sciences
Modeling
Review of &Amp;#171; A Process-Based Sphagnum Plant-Functional-Type Model for Implementation in the TRIFFID Dynamic Global Vegetation Model &Amp;#187;, by R. Coppell Et Al., Submitted to Geoscientific Model Development.
Growing Temperate Shrubs Over Arid and Semiarid Regions in the Community Land Model-Dynamic Global Vegetation Model
Global Biogeochemical Cycles
Planetary Change
Environmental Chemistry
Atmospheric Science
Global
Environmental Science
A Dynamic Global Vegetation Model for Use With Climate Models: Concepts and Description of Simulated Vegetation Dynamics
Global Change Biology
Planetary Change
Environmental Chemistry
Global
Ecology
Environmental Science
A Dynamic Global Model for Planktonic Foraminifera
Biogeosciences Discussions
Earth-Surface Processes
Ecology
Systematics
Evolution
Behavior
Smaller Global and Regional Carbon Emissions From Gross Land Use Change When Considering Sub-Grid Secondary Land Cohorts in a Global Dynamic Vegetation Model
GEM/POPs: A Global 3-D Dynamic Model for Semi-Volatile Persistent Organic Pollutants &Ndash; 1. Model Description and Evaluations
Atmospheric Chemistry and Physics Discussions
Atmospheric Science
Planetary Science
Space
On the Representativeness of UTOPIA Land Surface Model for Creating a Database of Surface Layer, Vegetation and Soil Variables in Piedmont Vineyards, Italy
Applied Sciences (Switzerland)
Instrumentation
Materials Science
Fluid Flow
Engineering
Computer Science Applications
Process Chemistry
Transfer Processes
Technology
Assessing the Influence of Soil Freeze-Thaw Cycles on Catchment Water Storage &Amp;ndash; Flux &Amp;ndash; Age Interactions Using a Tracer-Aided Ecohydrological Model