The Last Interglacial (LIG; ca. 125 ka) is a period of interest for climate research as it is the most recent period of the Earth's history when the boreal climate was warmer than at present. Previous research, based on models and geological evidence, suggests that the LIG may have featured enhanced patterns of ocean storminess, but this remains hotly debated. Here, we apply state-of-the-art climate and hydrodynamic modeling to simulate changes in sea level extremes caused by storm surges, under LIG and pre-industrial climate forcings. Significantly higher seasonal LIG sea level extremes emerge for coastlines along northern Australia, the Indonesian archipelago, much of northern and eastern Africa, the Mediterranean Sea, the Gulf of Saint L...
Climate models, simulating the effect of plausible future emission concentrations (scenarios), descr...
We investigate hydrology during a past climate slightly warmer than the present: the last interglaci...
Any increase in flood frequency or severity due to sea level rise or changes in storminess would adv...
The Last Interglacial (LIG; ca. 125 ka) is a period of interest for climate research as it is the mo...
The Last Interglacial (LIG; ca. 125 ka) is a period of interest for climate research as it is the mo...
Results from the simulation of Last Interglacial (Eemian) climate with climate model CESM1.2. Variab...
Numerical simulations allow us to gain a comprehensive understanding of the underlying mechanisms of...
The last extended time period when climate may have been warmer than today was during the Last Inter...
We investigate hydrology during a past climate slightly warmer than the present: the Last Interglaci...
Results from the simulation of pre-industrial climate with climate model CESM1.2. Variables are: sea...
International audienceClimate simulations of the Eemian interglacial and the last glacial inception ...
Numerical simulations allow us to gain a comprehensive understanding of the underlying mechanisms of...
International audienceLarge-scale atmospheric patterns are examined on orbital timescales using the ...
Climate models, simulating the effect of plausible future emission concentrations (scenarios), descr...
We investigate hydrology during a past climate slightly warmer than the present: the last interglaci...
Any increase in flood frequency or severity due to sea level rise or changes in storminess would adv...
The Last Interglacial (LIG; ca. 125 ka) is a period of interest for climate research as it is the mo...
The Last Interglacial (LIG; ca. 125 ka) is a period of interest for climate research as it is the mo...
Results from the simulation of Last Interglacial (Eemian) climate with climate model CESM1.2. Variab...
Numerical simulations allow us to gain a comprehensive understanding of the underlying mechanisms of...
The last extended time period when climate may have been warmer than today was during the Last Inter...
We investigate hydrology during a past climate slightly warmer than the present: the Last Interglaci...
Results from the simulation of pre-industrial climate with climate model CESM1.2. Variables are: sea...
International audienceClimate simulations of the Eemian interglacial and the last glacial inception ...
Numerical simulations allow us to gain a comprehensive understanding of the underlying mechanisms of...
International audienceLarge-scale atmospheric patterns are examined on orbital timescales using the ...
Climate models, simulating the effect of plausible future emission concentrations (scenarios), descr...
We investigate hydrology during a past climate slightly warmer than the present: the last interglaci...
Any increase in flood frequency or severity due to sea level rise or changes in storminess would adv...