International audienceCorrect representation of seasonal leaf dynamics is crucial for terrestrial biosphere models (TBMs), but many such models cannot accurately reproduce observations of leaf onset and senescence. Here we optimised the phenology-related parameters of the ORCHIDEE TBM using satellite-derived Normalized Difference Vegetation Index data (MODIS NDVI v5) that are linearly related to the model fAPAR. We found the misfit between the observations and the model decreased after optimisation for all bo-real and temperate deciduous plant functional types, primarily due to an earlier onset of leaf senescence. The model bias was only partially reduced for tropical deciduous trees and no improvement was seen for natural C4 grasses. Spati...
International audienceAtmospheric CO 2 drives most of the greenhouse effect increase. One major unce...
Abstract An empirical model calibration approach is presented that aims to approximate missing biosp...
International audienceAtmospheric CO 2 drives most of the greenhouse effect increase. One major unce...
International audienceCorrect representation of seasonal leaf dynamics is crucial for terrestrial bi...
International audienceCorrect representation of seasonal leaf dynamics is crucial for terrestrial bi...
International audienceCorrect representation of seasonal leaf dynamics is crucial for terrestrial bi...
International audienceCorrect representation of seasonal leaf dynamics is crucial for terrestrial bi...
International audienceCorrect representation of seasonal leaf dynamics is crucial for terrestrial bi...
International audienceCorrect representation of seasonal leaf dynamics is crucial for terrestrial bi...
Correct representation of seasonal leaf dynamics is crucial for terrestrial biosphere models (TBMs),...
Vegetation phenology regulates many ecosystem processes and is an indicator of the biological respon...
Vegetation phenology regulates many ecosystem processes and is an indicator of the biological respon...
Vegetation phenology regulates many ecosystem processes and is an indicator of the biological respon...
International audienceAtmospheric CO 2 drives most of the greenhouse effect increase. One major unce...
International audienceAtmospheric CO 2 drives most of the greenhouse effect increase. One major unce...
International audienceAtmospheric CO 2 drives most of the greenhouse effect increase. One major unce...
Abstract An empirical model calibration approach is presented that aims to approximate missing biosp...
International audienceAtmospheric CO 2 drives most of the greenhouse effect increase. One major unce...
International audienceCorrect representation of seasonal leaf dynamics is crucial for terrestrial bi...
International audienceCorrect representation of seasonal leaf dynamics is crucial for terrestrial bi...
International audienceCorrect representation of seasonal leaf dynamics is crucial for terrestrial bi...
International audienceCorrect representation of seasonal leaf dynamics is crucial for terrestrial bi...
International audienceCorrect representation of seasonal leaf dynamics is crucial for terrestrial bi...
International audienceCorrect representation of seasonal leaf dynamics is crucial for terrestrial bi...
Correct representation of seasonal leaf dynamics is crucial for terrestrial biosphere models (TBMs),...
Vegetation phenology regulates many ecosystem processes and is an indicator of the biological respon...
Vegetation phenology regulates many ecosystem processes and is an indicator of the biological respon...
Vegetation phenology regulates many ecosystem processes and is an indicator of the biological respon...
International audienceAtmospheric CO 2 drives most of the greenhouse effect increase. One major unce...
International audienceAtmospheric CO 2 drives most of the greenhouse effect increase. One major unce...
International audienceAtmospheric CO 2 drives most of the greenhouse effect increase. One major unce...
Abstract An empirical model calibration approach is presented that aims to approximate missing biosp...
International audienceAtmospheric CO 2 drives most of the greenhouse effect increase. One major unce...