Recent cirrus cloud modeling studies have involved the application of a time-dependent, two dimensional Eulerian model, with generalized cloud microphysical parameterizations drawn from experimental findings. For computing the ice versus vapor phase changes, the ice mass content is linked to the maintenance of a relative humidity with respect to ice (RHI) of 105 percent; ice growth occurs both with regard to the introduction of new particles and the growth of existing particles. In a simplified cloud model designed to investigate the basic role of various physical processes in the growth and maintenance of cirrus clouds, these parametric relations are justifiable. In comparison, the one dimensional cloud microphysical model recently applied...
Motivated by the need to study the climatic impact of aerosol-related cirrus cloud changes, a physic...
Cirrus ice crystals are produced heterogeneously on ice-nucleating particles (INPs) and homogeneousl...
This work presents a new physically based parameterization of cirrus cloud formation for use in larg...
For application to Global Climate Models, large scale numerical models of cirrus cloud formation and...
This study develops an advanced physically-based parameterization of heterogeneous ice nucleation in...
This study develops an advanced physically-based parameterization of heterogeneous ice nucleation in...
A new microphysical cirrus model to simulate ice crystal nucleation, depositional growth, and gravi...
A new microphysical cirrus model to simulate ice crystal nucleation, depositional growth, and gravi...
A new microphysical cirrus model to simulate ice crystal nucleation, depositional growth, and gravi...
A new microphysical cirrus model to simulate ice crystal nucleation, depositional growth, and gravi...
Abstract 24 This work presents a new physically-based parameterization of cirrus cloud formation for...
[1] Motivated by the need to study the climatic impact of aerosol-related cirrus cloud changes, a ph...
A new microphysical cirrus model to simulate ice crystal nucleation, depositional growth, and gravit...
A parametrization of cirrus clouds formed by homogeneous nucleation is improved so that it can be us...
[1] A physically based parameterization of cirrus cloud formation by heterogeneous freezing is devel...
Motivated by the need to study the climatic impact of aerosol-related cirrus cloud changes, a physic...
Cirrus ice crystals are produced heterogeneously on ice-nucleating particles (INPs) and homogeneousl...
This work presents a new physically based parameterization of cirrus cloud formation for use in larg...
For application to Global Climate Models, large scale numerical models of cirrus cloud formation and...
This study develops an advanced physically-based parameterization of heterogeneous ice nucleation in...
This study develops an advanced physically-based parameterization of heterogeneous ice nucleation in...
A new microphysical cirrus model to simulate ice crystal nucleation, depositional growth, and gravi...
A new microphysical cirrus model to simulate ice crystal nucleation, depositional growth, and gravi...
A new microphysical cirrus model to simulate ice crystal nucleation, depositional growth, and gravi...
A new microphysical cirrus model to simulate ice crystal nucleation, depositional growth, and gravi...
Abstract 24 This work presents a new physically-based parameterization of cirrus cloud formation for...
[1] Motivated by the need to study the climatic impact of aerosol-related cirrus cloud changes, a ph...
A new microphysical cirrus model to simulate ice crystal nucleation, depositional growth, and gravit...
A parametrization of cirrus clouds formed by homogeneous nucleation is improved so that it can be us...
[1] A physically based parameterization of cirrus cloud formation by heterogeneous freezing is devel...
Motivated by the need to study the climatic impact of aerosol-related cirrus cloud changes, a physic...
Cirrus ice crystals are produced heterogeneously on ice-nucleating particles (INPs) and homogeneousl...
This work presents a new physically based parameterization of cirrus cloud formation for use in larg...