International audienceA clear-sky method to estimate the photosynthetically active radiation (PAR) at the surface level in cloudless atmospheres is presented and validated. It uses a fast and accurate approximation adopted in several radiative transfer models, known as the k-distribution method and the correlated-k approximation, which gives a set of fluxes accumulated over 32 established wavelength intervals. A resampling technique, followed by a summation, are applied over the wavelength range [0.4, 0.7] µm in order to retrieve the PAR fluxes. The method uses as inputs the total column contents of ozone and water vapor, and optical properties of aerosols provided by the Copernicus Atmosphere Monitoring Service. To validate the method, its...
An approach was developed using the IRS P4 Ocean Colour Monitor (OCM) for the estimation of Photosyn...
The primary productivity of a plant community can be modeled as the product of the amount of photosy...
In this study, we report on the performance of satellite-based photosynthetically available radiatio...
A clear–sky method to estimate the photosynthetically active radiation (PAR) at the surface le...
International audienceThe k-distribution method and the correlated-k approximation of Kato et al. (1...
International audiencePhotosynthetically Active Radiation (PAR) is a determinant part of surface sol...
International audienceThis communication is a step further in the comparison of several methods to a...
International audienceA new method has been developed to estimate the global and direct solar irradi...
A new method to estimate aerosol radiative forcing (ARF) on photosynthetically active radiation (PAR...
In comprehensive studies of radiation climate, remote sensing of the environment, radiation regime o...
International audienceThis paper assesses several methods for the retrieval of Photosynthetically Ac...
International audienceThis communication deals with the assessment of the Photosynthetically Active ...
Most weather forecasting models are not able to accurately reproduce the great variability existing ...
Photosynthetic photon flux density (PPFD: µmol m<sup>−2</sup> s<sup...
Photosynthetically Active Radiation (PAR) is a fundamental parameter for developing plant productivi...
An approach was developed using the IRS P4 Ocean Colour Monitor (OCM) for the estimation of Photosyn...
The primary productivity of a plant community can be modeled as the product of the amount of photosy...
In this study, we report on the performance of satellite-based photosynthetically available radiatio...
A clear–sky method to estimate the photosynthetically active radiation (PAR) at the surface le...
International audienceThe k-distribution method and the correlated-k approximation of Kato et al. (1...
International audiencePhotosynthetically Active Radiation (PAR) is a determinant part of surface sol...
International audienceThis communication is a step further in the comparison of several methods to a...
International audienceA new method has been developed to estimate the global and direct solar irradi...
A new method to estimate aerosol radiative forcing (ARF) on photosynthetically active radiation (PAR...
In comprehensive studies of radiation climate, remote sensing of the environment, radiation regime o...
International audienceThis paper assesses several methods for the retrieval of Photosynthetically Ac...
International audienceThis communication deals with the assessment of the Photosynthetically Active ...
Most weather forecasting models are not able to accurately reproduce the great variability existing ...
Photosynthetic photon flux density (PPFD: µmol m<sup>−2</sup> s<sup...
Photosynthetically Active Radiation (PAR) is a fundamental parameter for developing plant productivi...
An approach was developed using the IRS P4 Ocean Colour Monitor (OCM) for the estimation of Photosyn...
The primary productivity of a plant community can be modeled as the product of the amount of photosy...
In this study, we report on the performance of satellite-based photosynthetically available radiatio...