The spherical harmonics discrete ordinate method for plane-parallel data assimilation (SHDOMPPDA) model is an unpolarized plane-parallel radiative transfer forward model, with corresponding tangent linear and adjoint models, suitable for use in assimilating cloudy sky visible and infrared radiances. It is derived from the spherical harmonics discrete ordinate method plane-parallel (SHDOMPP, also described in this article) version of the spherical harmonics discrete ordinate method (SHDOM) model for three-dimensional atmospheric radiative transfer. The inputs to the SHDOMPPDA forward model are profiles of pressure, temperature, water vapor, and mass mixing ratio and number concentration for a number of hydrometeor species. Hydrometeor optica...
The 4DCLOUDS project was established to gain a more accurate understanding of the role clouds play i...
We conducted modeling work in radiative transfer and cloud microphysics. Our work in radiative trans...
In the independent pixel approximation (IPA), radiative transfer computations involving cloudy scene...
Linearizations of the spherical harmonic discrete ordinate method (SHDOM) by means of a forward and ...
A spectral acceleration approach for the spherical harmonics discrete ordinate method (SHDOM) is des...
A spectral acceleration approach for the spherical harmonics discrete ordinate method (SHDOM) is des...
parameterization: application to cloudy atmospheres computed from plane-parallel and 3D Monte Carlo ...
The multi-dimensional scalar Spherical Harmonics Discrete Ordinate Method (SHDOM) is extended to the...
The delta-four-stream polarized (vector) thermal radiative transfer has been formulated and numerica...
A multilevel spectral radiative transfer model is used to develop simple but accurate parameterizati...
Radiation is the ultimate source of energy that drives our weather and climate. It is also the funda...
A contemporary radiation parameterization scheme has been implemented in the University of Californi...
A computationally efficient and accurate forward radiative transfer model and its adjoint are needed...
A rigorous and modular Monte Carlo radiative transfer model MCRT has been developed to compute radia...
Nowadays the solar power is one of the most appreciate renewable energies in the world. In order to ...
The 4DCLOUDS project was established to gain a more accurate understanding of the role clouds play i...
We conducted modeling work in radiative transfer and cloud microphysics. Our work in radiative trans...
In the independent pixel approximation (IPA), radiative transfer computations involving cloudy scene...
Linearizations of the spherical harmonic discrete ordinate method (SHDOM) by means of a forward and ...
A spectral acceleration approach for the spherical harmonics discrete ordinate method (SHDOM) is des...
A spectral acceleration approach for the spherical harmonics discrete ordinate method (SHDOM) is des...
parameterization: application to cloudy atmospheres computed from plane-parallel and 3D Monte Carlo ...
The multi-dimensional scalar Spherical Harmonics Discrete Ordinate Method (SHDOM) is extended to the...
The delta-four-stream polarized (vector) thermal radiative transfer has been formulated and numerica...
A multilevel spectral radiative transfer model is used to develop simple but accurate parameterizati...
Radiation is the ultimate source of energy that drives our weather and climate. It is also the funda...
A contemporary radiation parameterization scheme has been implemented in the University of Californi...
A computationally efficient and accurate forward radiative transfer model and its adjoint are needed...
A rigorous and modular Monte Carlo radiative transfer model MCRT has been developed to compute radia...
Nowadays the solar power is one of the most appreciate renewable energies in the world. In order to ...
The 4DCLOUDS project was established to gain a more accurate understanding of the role clouds play i...
We conducted modeling work in radiative transfer and cloud microphysics. Our work in radiative trans...
In the independent pixel approximation (IPA), radiative transfer computations involving cloudy scene...