Since the 1980s anthropogenic aerosols have been considerably reduced in Europe and the Mediterranean area. This decrease is often considered as the likely cause of the brightening effect observed over the same period. This phenomenon is however hardly reproduced by global and regional climate models. Here we use an original approach based on reanalysis‐driven coupled regional climate system modeling to show that aerosol changes explain 81 ± 16% of the brightening and 23 ± 5% of the surface warming simulated for the period 1980–2012 over Europe. The direct aerosol effect is found to dominate in the magnitude of the simulated brightening. The comparison between regional simulations and homogenized ground‐based observations reveals that obser...
We examine the simulated future change of the North Atlantic winter climate influenced by anthropoge...
The evolution of different renewable energy resources under different climate change scenarios is a ...
Ship emissions contribute substantially to atmospheric pollution over the summertime Mediterranean r...
Since the 1980s anthropogenic aerosols have been considerably reduced in Europe and the Mediterranea...
Substantial changes in anthropogenic aerosols and precursor gas emissions have occurred over recent ...
An increasing trend in surface solar radiation (solar brightening) has been observed over Europe sin...
Substantial changes in anthropogenic aerosols and precursor gas emissions have occurred over recent ...
Across Europe anthropogenic emissions have changed substantially over recent decades, due in part to...
International audienceThis study investigates, through regional climate modelling, the surface mass ...
International audienceAerosols play an important role in Europe and the Mediterranean area where dif...
International audienceThe present work aims at better understanding regional climate–aerosol interac...
A fully coupled regional climate system model (CNRM-RCSM4) has been used over the Mediterranean regi...
In recent decades, trends in photovoltaic (PV) technology deployment have shown an overall increase ...
Numerical model scenarios of future climate depict a global increase in temperatures and changing pr...
This study investigates changes in extreme temperature and precipitation events under different futu...
We examine the simulated future change of the North Atlantic winter climate influenced by anthropoge...
The evolution of different renewable energy resources under different climate change scenarios is a ...
Ship emissions contribute substantially to atmospheric pollution over the summertime Mediterranean r...
Since the 1980s anthropogenic aerosols have been considerably reduced in Europe and the Mediterranea...
Substantial changes in anthropogenic aerosols and precursor gas emissions have occurred over recent ...
An increasing trend in surface solar radiation (solar brightening) has been observed over Europe sin...
Substantial changes in anthropogenic aerosols and precursor gas emissions have occurred over recent ...
Across Europe anthropogenic emissions have changed substantially over recent decades, due in part to...
International audienceThis study investigates, through regional climate modelling, the surface mass ...
International audienceAerosols play an important role in Europe and the Mediterranean area where dif...
International audienceThe present work aims at better understanding regional climate–aerosol interac...
A fully coupled regional climate system model (CNRM-RCSM4) has been used over the Mediterranean regi...
In recent decades, trends in photovoltaic (PV) technology deployment have shown an overall increase ...
Numerical model scenarios of future climate depict a global increase in temperatures and changing pr...
This study investigates changes in extreme temperature and precipitation events under different futu...
We examine the simulated future change of the North Atlantic winter climate influenced by anthropoge...
The evolution of different renewable energy resources under different climate change scenarios is a ...
Ship emissions contribute substantially to atmospheric pollution over the summertime Mediterranean r...