Remote sensing is an interesting tool for monitoring crop production, energy exchanges and mass exchanges between the soil, the biosphere and the atmosphere. The aim of the Alpilles-ReSeDA program was the development of such techniques combining remote sensing data, and soil and vegetation process models. This article focuses on SVAT models (Soil-Vegetation-Atmosphere Transfer models) which may be used for monitoring energy and mass exchanges by using assimilation of remote sensing data procedures. As a first step, we decided to implement a model comparison experiment with the aim of analyzing the relationships between the models' complexity, validity and potential for assimilating remote sensing data. This experiment involved the definitio...
Abstract: This article assesses the potentially powerful combination of remotely sensed data and soi...
International audienceModels simulating the seasonal growth of vegetation have been recently coupled...
DOI: 10.1016/j.hydrol.2003.10.003International audienceThe reliability of model predictions used in ...
Remote sensing is an interesting tool for monitoring crop production, energy exchanges and mass exch...
Remote sensing is an interesting tool for monitoring crop production, energy exchanges and mass exch...
International audienceThe Simple Soil-Plant-Atmosphere Transfer - Remote Sensing (SiSPAT-RS) model w...
International audienceSoil-Vegetation-Atmosphere Transfer Models (SVAT) and Crop Simulation Models d...
Vegetation canopy functioning can be studied combining both Soil-Vegetation-Atmosphere Transfer (SVA...
In the framework of the Alpilles-ReSeDA experiment [12], a coupled canopy functioning and SVAT model...
This study investigates the use of high-spatial, low-temporal scale visible remote sensing data for ...
support: CD-ROMInternational audienceA model, coupling the STICS crop growth model, the ISBA SVAT mo...
Abstract: This article assesses the potentially powerful combination of remotely sensed data and soi...
International audienceModels simulating the seasonal growth of vegetation have been recently coupled...
DOI: 10.1016/j.hydrol.2003.10.003International audienceThe reliability of model predictions used in ...
Remote sensing is an interesting tool for monitoring crop production, energy exchanges and mass exch...
Remote sensing is an interesting tool for monitoring crop production, energy exchanges and mass exch...
International audienceThe Simple Soil-Plant-Atmosphere Transfer - Remote Sensing (SiSPAT-RS) model w...
International audienceSoil-Vegetation-Atmosphere Transfer Models (SVAT) and Crop Simulation Models d...
Vegetation canopy functioning can be studied combining both Soil-Vegetation-Atmosphere Transfer (SVA...
In the framework of the Alpilles-ReSeDA experiment [12], a coupled canopy functioning and SVAT model...
This study investigates the use of high-spatial, low-temporal scale visible remote sensing data for ...
support: CD-ROMInternational audienceA model, coupling the STICS crop growth model, the ISBA SVAT mo...
Abstract: This article assesses the potentially powerful combination of remotely sensed data and soi...
International audienceModels simulating the seasonal growth of vegetation have been recently coupled...
DOI: 10.1016/j.hydrol.2003.10.003International audienceThe reliability of model predictions used in ...