A fully coupled regional climate system model (CNRM-RCSM4) has been used over the Mediterranean region to investigate the direct and semi-direct effects of aerosols, but also their role in the radiation–atmosphere–ocean interactions through multi-annual ensemble simulations (2003–2009) with and without aerosols and ocean–atmosphere coupling. Aerosols have been taken into account in CNRM-RCSM4 through realistic interannual monthly AOD climatologies. An evaluation of the model has been achieved, against various observations for meteorological parameters, and has shown the ability of CNRM-RCSM4 to reproduce the main patterns of the Mediterranean climate despite some biases in sea surface temperature (SST), radiation and cloud cover. The result...
The direct radiative effect (DRE) during 20 intense and widespread dust outbreaks, which affected th...
The all-sky direct radiative effect by anthropogenic aerosol (DRE<sub>a</sub>) is calcul...
A desert dust episode in June 2007 and its radiative effects on the energy budget have been studied ...
International audienceThe present work aims at better understanding regional climate–aerosol interac...
The present study investigates the radiative effects of dust aerosols in the Mediterranean region du...
Abstract. The regional climate model RegCM3 coupled with a radiatively active aerosol model with onl...
For the first time, the direct radiative effect (DRE) of aerosols on solar radiation is computed ove...
International audienceThis study investigates, through regional climate modelling, the surface mass ...
Since the 1980s anthropogenic aerosols have been considerably reduced in Europe and the Mediterranea...
The regional climate model RegCM3 coupled with a radiatively active aerosol model with online feedba...
International audienceAerosols interact with clouds through radiative and microphysical mechanisms i...
International audienceAerosols affect atmospheric dynamics through their direct and semi-direct effe...
The direct radiative effect (DRE) during 20 intense and widespread dust outbreaks, which affected th...
The all-sky direct radiative effect by anthropogenic aerosol (DRE<sub>a</sub>) is calcul...
A desert dust episode in June 2007 and its radiative effects on the energy budget have been studied ...
International audienceThe present work aims at better understanding regional climate–aerosol interac...
The present study investigates the radiative effects of dust aerosols in the Mediterranean region du...
Abstract. The regional climate model RegCM3 coupled with a radiatively active aerosol model with onl...
For the first time, the direct radiative effect (DRE) of aerosols on solar radiation is computed ove...
International audienceThis study investigates, through regional climate modelling, the surface mass ...
Since the 1980s anthropogenic aerosols have been considerably reduced in Europe and the Mediterranea...
The regional climate model RegCM3 coupled with a radiatively active aerosol model with online feedba...
International audienceAerosols interact with clouds through radiative and microphysical mechanisms i...
International audienceAerosols affect atmospheric dynamics through their direct and semi-direct effe...
The direct radiative effect (DRE) during 20 intense and widespread dust outbreaks, which affected th...
The all-sky direct radiative effect by anthropogenic aerosol (DRE<sub>a</sub>) is calcul...
A desert dust episode in June 2007 and its radiative effects on the energy budget have been studied ...