Motivated by recent discussions concerning differences of convective dynamics in polluted and pristine environments, the so-called convective invigoration in particular, this paper provides an analysis of factors affecting convective updraft buoyancy, such as the in-cloud supersaturation, condensate and precipitation loading, and entrainment. We use the deep convective period from simulations of daytime convection development over land discussed in our previous publications. An entraining parcel framework is used in the theoretical analysis. We show that for the specific case considered here, finite (positive) supersaturation noticeably reduces pseudo-adiabatic parcel buoyancy and cumulative convective available potential energy (cCAPE) in ...
The diurnal cycle of convection over land is investigated by a cloud-resolving model simulation. Thr...
It is well known that stratospheric humidity is primarily controlled by freeze drying (ice crystal g...
In this work high-resolution numerical simulation (Large-Eddie Simulation, LES) has been used to stu...
Moist convection drives much of the circulation and precipitation in Earth's atmosphere, especially ...
Downdrafts are an integral part of the convective cycle, and have been observed and documented for m...
The scaling of updraught velocities over a wide range of surface temperatures is investigated in sim...
Three configurations of a bulk microphysics scheme in conjunction with a detailed bin scheme are imp...
The role of convective scale downdrafts has been examined, using the NCAR-CAM3.0 aqua-planet config...
The humidity of the mid troposphere has a significant effect on the development of deep convection. ...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
Recent work has produced a theory for tropical convective available potential energy (CAPE) that hig...
[1] Convective available potential energy (CAPE) is shown to increase rapidly with warming in simula...
International audienceRecently, a new conceptual framework for deep convection scheme triggering and...
This paper presents results from 240-member ensemble simulations of aerosol indirect effects on trop...
The diurnal cycle of convection over land is investigated by a cloud-resolving model simulation. Thr...
It is well known that stratospheric humidity is primarily controlled by freeze drying (ice crystal g...
In this work high-resolution numerical simulation (Large-Eddie Simulation, LES) has been used to stu...
Moist convection drives much of the circulation and precipitation in Earth's atmosphere, especially ...
Downdrafts are an integral part of the convective cycle, and have been observed and documented for m...
The scaling of updraught velocities over a wide range of surface temperatures is investigated in sim...
Three configurations of a bulk microphysics scheme in conjunction with a detailed bin scheme are imp...
The role of convective scale downdrafts has been examined, using the NCAR-CAM3.0 aqua-planet config...
The humidity of the mid troposphere has a significant effect on the development of deep convection. ...
The impact of aerosols on ice- and mixed-phase processes in deep convective clouds remains highly un...
Recent work has produced a theory for tropical convective available potential energy (CAPE) that hig...
[1] Convective available potential energy (CAPE) is shown to increase rapidly with warming in simula...
International audienceRecently, a new conceptual framework for deep convection scheme triggering and...
This paper presents results from 240-member ensemble simulations of aerosol indirect effects on trop...
The diurnal cycle of convection over land is investigated by a cloud-resolving model simulation. Thr...
It is well known that stratospheric humidity is primarily controlled by freeze drying (ice crystal g...
In this work high-resolution numerical simulation (Large-Eddie Simulation, LES) has been used to stu...