Vegetation radiative transfer models (RTMs) are important tools to understand biosphere-atmosphere interactions. The four-stream theory has been successfully applied to solve the radiative transfer problems in homogeneous canopies for both incident solar radiation, thermal and fluorescence emission since 1984. In this note, we describe the development of a unified radiative transfer theory for optical scattering, thermal and fluorescence emission in multi-layer vegetation canopy, and provide a detailed mathematical derivation for the fluxes inside and leaving the canopy. This theory can be used to develop vegetation models for remote sensing applications and plant physiological processes, such as photosynthesis and transpiration. It can als...
This paper review the problem of radiation transfer in geophysical media, comparing the particular i...
Earth observations collected by remote sensors provide unique information to our ever-growing knowle...
This work reports on the two-stream radiative transfer in a horizontally homogeneous turbid vegetati...
We provide the Matlab code and testing dataset for a unified radiative transfer theory for optical s...
Foliage and soil temperatures are key variables for assessing the exchanges of turbulent heat fluxes...
Foliage and soil temperatures are key variables for assessing the exchanges of turbulent heat fluxes...
In this thesis the work of the author on the modelling of radiative transfer in vegetation canopies ...
In this thesis the work of the author on the modelling of radiative transfer in vegetation canopies ...
Accurate estimates of albedos are required in climate modeling. Accurate and simple schemes for radi...
This paper presents the model SCOPE (Soil Canopy Observation, Photochemistry and Energy fluxes), whi...
In modeling the canopy reflectance of row-planted crops, neglecting horizontal radiative transfer ma...
In the paper i.e., a refined four-stream radiative transfer model for row planted crops, the equatio...
This paper presents the model SCOPE (Soil Canopy Observation, Photochemistry and Energy fluxes), whi...
This paper presents the model SCOPE (Soil Canopy Observation, Photochemistry and Energy fluxes), whi...
The process of radiative transfer over vegetated areas has a profound impact on energy, water, and c...
This paper review the problem of radiation transfer in geophysical media, comparing the particular i...
Earth observations collected by remote sensors provide unique information to our ever-growing knowle...
This work reports on the two-stream radiative transfer in a horizontally homogeneous turbid vegetati...
We provide the Matlab code and testing dataset for a unified radiative transfer theory for optical s...
Foliage and soil temperatures are key variables for assessing the exchanges of turbulent heat fluxes...
Foliage and soil temperatures are key variables for assessing the exchanges of turbulent heat fluxes...
In this thesis the work of the author on the modelling of radiative transfer in vegetation canopies ...
In this thesis the work of the author on the modelling of radiative transfer in vegetation canopies ...
Accurate estimates of albedos are required in climate modeling. Accurate and simple schemes for radi...
This paper presents the model SCOPE (Soil Canopy Observation, Photochemistry and Energy fluxes), whi...
In modeling the canopy reflectance of row-planted crops, neglecting horizontal radiative transfer ma...
In the paper i.e., a refined four-stream radiative transfer model for row planted crops, the equatio...
This paper presents the model SCOPE (Soil Canopy Observation, Photochemistry and Energy fluxes), whi...
This paper presents the model SCOPE (Soil Canopy Observation, Photochemistry and Energy fluxes), whi...
The process of radiative transfer over vegetated areas has a profound impact on energy, water, and c...
This paper review the problem of radiation transfer in geophysical media, comparing the particular i...
Earth observations collected by remote sensors provide unique information to our ever-growing knowle...
This work reports on the two-stream radiative transfer in a horizontally homogeneous turbid vegetati...