Based on the single-scattering optical properties that are pre-computed using an improve geometric optics method, the bulk mass absorption coefficient, single-scattering albedo, and asymmetry factor of ice particles have been parameterized as a function of the mean effective particle size of a mixture of ice habits. The parameterization has been applied to compute fluxes for sample clouds with various particle size distributions and assumed mixtures of particle habits. Compared to the parameterization for a single habit of hexagonal column, the solar heating of clouds computed with the parameterization for a mixture of habits is smaller due to a smaller cosingle-scattering albedo. Whereas the net downward fluxes at the TOA and surface are l...
To provide a better representation of natural ice clouds, a novel ice cloud model is developed by as...
A revised approach to cloud microphysical processes in a commonly used bulk microphysics parameteriz...
The interpretation of satellite-observed radiances to derive cloud optical depth and effective parti...
[1] The relative importance of ice clouds in the climate system is highly uncertain. Measurements of...
[1] The relative importance of ice clouds in the climate system is highly uncertain. Measurements of...
The aspect ratio (AR) of a nonspherical ice particle is identified as the key microphysical paramete...
A new parameterization of single scattering properties has been developed for mid latitude cirrus cl...
International audienceA data set of approximately 60,000 airborne measurements of angular scattering...
We present a novel ice cloud optical property parameterization based on a two-habit ice cloud model ...
Parameterizations of single scattering properties currently used in cloud resolving and general circ...
The representation of mixed-phase cloud optical properties in models is a critical problem in cloud ...
In this study, various ice particle habits are investigated in conjunction with inferring the optic...
A data library is developed containing the scattering, absorption, and polarization properties of ic...
Understanding the scattering properties of complex ice particles is essential to understanding the r...
A multilevel spectral radiative transfer model is used to develop simple but accurate parameterizati...
To provide a better representation of natural ice clouds, a novel ice cloud model is developed by as...
A revised approach to cloud microphysical processes in a commonly used bulk microphysics parameteriz...
The interpretation of satellite-observed radiances to derive cloud optical depth and effective parti...
[1] The relative importance of ice clouds in the climate system is highly uncertain. Measurements of...
[1] The relative importance of ice clouds in the climate system is highly uncertain. Measurements of...
The aspect ratio (AR) of a nonspherical ice particle is identified as the key microphysical paramete...
A new parameterization of single scattering properties has been developed for mid latitude cirrus cl...
International audienceA data set of approximately 60,000 airborne measurements of angular scattering...
We present a novel ice cloud optical property parameterization based on a two-habit ice cloud model ...
Parameterizations of single scattering properties currently used in cloud resolving and general circ...
The representation of mixed-phase cloud optical properties in models is a critical problem in cloud ...
In this study, various ice particle habits are investigated in conjunction with inferring the optic...
A data library is developed containing the scattering, absorption, and polarization properties of ic...
Understanding the scattering properties of complex ice particles is essential to understanding the r...
A multilevel spectral radiative transfer model is used to develop simple but accurate parameterizati...
To provide a better representation of natural ice clouds, a novel ice cloud model is developed by as...
A revised approach to cloud microphysical processes in a commonly used bulk microphysics parameteriz...
The interpretation of satellite-observed radiances to derive cloud optical depth and effective parti...