A fast instrument simulator is developed to simulate the observations made in cloudy atmospheres by the Visible Infrared Imaging Radiometer Suite (VIIRS). The correlated k distribution technique is used to compute the transmissivities associated with absorbing atmospheric gases. The bulk scattering properties of ice clouds are based on the ice model used for the Moderate Resolution Imaging Spectroradiometer Collection 6 ice cloud products, and those ofwater clouds are computedwith the Lorenz-Mie theory. Two fast radiative transfer models based on precomputed ice cloud look-up tables are used for the VIIRS solar and infrared channels. The accuracy and efficiency of the fast simulator are quantified in comparison with a combination of the rig...
Fast radiative transfer codes have been developed for simulating the outgoing radiance (and correspo...
Fast radiative transfer codes have been developed for simulating the outgoing radiance (and correspo...
A fast infrared radiative transfer model (FIRTM2) appropriate for application to both single-layered...
A fast instrument simulator is developed to simulate the observations made in cloudy atmospheres by ...
A fast instrument simulator is developed to simulate the observations made in cloudy atmospheres by ...
A fast instrument simulator is developed to simulate the observations made in cloudy atmospheres by ...
A fast instrument simulator is developed to simulate the observations made in cloudy atmospheres by ...
Clouds cover at least two thirds of the Earth at any given time. Clouds play a large role in the Ear...
This dissertation consists of three parts, each of them, progressively, contributing to the problem ...
This dissertation consists of three parts, each of them, progressively, contributing to the problem ...
This paper shows that radiometer channel radiances for cloudy atmospheric conditions can be simulate...
Fast radiative transfer codes have been developed for simulating the outgoing radiance (and correspo...
Fast radiative transfer codes have been developed for simulating the outgoing radiance (and correspo...
Fast radiative transfer codes have been developed for simulating the outgoing radiance (and correspo...
Fast radiative transfer codes have been developed for simulating the outgoing radiance (and correspo...
Fast radiative transfer codes have been developed for simulating the outgoing radiance (and correspo...
Fast radiative transfer codes have been developed for simulating the outgoing radiance (and correspo...
A fast infrared radiative transfer model (FIRTM2) appropriate for application to both single-layered...
A fast instrument simulator is developed to simulate the observations made in cloudy atmospheres by ...
A fast instrument simulator is developed to simulate the observations made in cloudy atmospheres by ...
A fast instrument simulator is developed to simulate the observations made in cloudy atmospheres by ...
A fast instrument simulator is developed to simulate the observations made in cloudy atmospheres by ...
Clouds cover at least two thirds of the Earth at any given time. Clouds play a large role in the Ear...
This dissertation consists of three parts, each of them, progressively, contributing to the problem ...
This dissertation consists of three parts, each of them, progressively, contributing to the problem ...
This paper shows that radiometer channel radiances for cloudy atmospheric conditions can be simulate...
Fast radiative transfer codes have been developed for simulating the outgoing radiance (and correspo...
Fast radiative transfer codes have been developed for simulating the outgoing radiance (and correspo...
Fast radiative transfer codes have been developed for simulating the outgoing radiance (and correspo...
Fast radiative transfer codes have been developed for simulating the outgoing radiance (and correspo...
Fast radiative transfer codes have been developed for simulating the outgoing radiance (and correspo...
Fast radiative transfer codes have been developed for simulating the outgoing radiance (and correspo...
A fast infrared radiative transfer model (FIRTM2) appropriate for application to both single-layered...