The humidity of the mid troposphere has a significant effect on the development of deep convection. Dry layers (dry intrusions) can inhibit deep convection through the effect of a thermal inversion resulting from radiation and due to the reduction in buoyancy resulting from entrainment. Recent observations have shown that the sensitivity of cloud top height to changes in mid-tropospheric humidity can be larger than straightforward “parcel dilution” would lead us to expect. Here, we investigate how aerosol effects on cloud development and microphysics are coupled to the effects of mid-tropospheric dry air. The two effects are coupled because the buoyancy loss through entrainment depends on droplet evaporation, so is controlled both by the en...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
A recent parcel model study (Reutter et al., 2009) showed three deterministic regimes of initial clo...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
The humidity of the mid troposphere has a significant effect on the development of deep convection. ...
The effect of mid-tropospheric moisture on convective cloud development has been studied extensively...
Mechanisms through which atmospheric aerosols affect cloud microphysics, dynamics and precipitation ...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
Aerosols and especially their effect on clouds are one of the key components of the climate system a...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
Understanding aerosol effects on deep convective clouds and the derived effects on the radiation bud...
Understanding aerosol effects on deep convective clouds and the derived effects on the radiation bud...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/95546/1/jgrd14296.pd
Abstract. Recent simulations of deep convection with a spectral microphysics cloud model show that a...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
A recent parcel model study (Reutter et al., 2009) showed three deterministic regimes of initial clo...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
The humidity of the mid troposphere has a significant effect on the development of deep convection. ...
The effect of mid-tropospheric moisture on convective cloud development has been studied extensively...
Mechanisms through which atmospheric aerosols affect cloud microphysics, dynamics and precipitation ...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
Aerosols and especially their effect on clouds are one of the key components of the climate system a...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
Understanding aerosol effects on deep convective clouds and the derived effects on the radiation bud...
Understanding aerosol effects on deep convective clouds and the derived effects on the radiation bud...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/95546/1/jgrd14296.pd
Abstract. Recent simulations of deep convection with a spectral microphysics cloud model show that a...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
A recent parcel model study (Reutter et al., 2009) showed three deterministic regimes of initial clo...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...