Data are from a series of time-slice simulations using the Community Earth System Model (CESM) v1.2.2 run on the HLRN supercomputing systems. This configuration uses a coupled atmosphere, ocean, land, and sea-ice model to simulate many facets of climate at relatively high resolution (approx. 1° in the ocean and sea ice, 1.9° latitude by 2.5° longitude in the land and atmosphere). A baseline preindustrial control simulation was integrated under constant 1850 solar and greenhouse gas conditions for 2500 years. Time slice simulations corresponding to key insolation minima and maxima during the Marine Isotope Stage 11 (MIS-11) interglacial were branched from year 1500 of this simulation and run for 1000 additional years under the new forcing co...
The coupled global atmosphere-ocean-vegetation model ECBilt-CLIO-VECODE is used to perform transient...
Driven primarily by variations in the earth's axis wobble, tilt, and orbit eccentricity, our pl...
Preindustrial (PI) simulations of the Community Climate System Model version 3 (CCSM3) at two resolu...
State-of-the-art climate models were used to simulate climate conditions in Europe during Greenland ...
Using the Community Climate System Model version 3 (CCSM3) including a dynamic global vegetation mod...
Monthly sea surface temperature (SST), aerosol optical depth (AOD), precipitation (PRECIP), and Meri...
Understanding climate variability from millennial to glacial–interglacial time scales remains challe...
The Atlantic thermohaline circulation (THC) is an important part of the earth’s climate system. Prev...
Abstract High-resolution global climate modeling holds the promise of capturing planetary-scale clim...
Three 30 year long simulations have been performed with a T42 atmosphere model, in which the sea-sur...
Output from a set of 5 equilibrium global climate simulations of the early Holocene period run with ...
The study of surface-atmosphere interactions has begun with studies of the effect of altering the oc...
Orbital forcing does not only exert direct insolation effects, but also alters climate indirectly th...
We apply GENMOM, a coupled atmosphere–ocean climate model, to simulate eight equilibrium time slices...
Abstract Three new equilibrium mid‐Pliocene (MP) simulations are implemented with the Community Clim...
The coupled global atmosphere-ocean-vegetation model ECBilt-CLIO-VECODE is used to perform transient...
Driven primarily by variations in the earth's axis wobble, tilt, and orbit eccentricity, our pl...
Preindustrial (PI) simulations of the Community Climate System Model version 3 (CCSM3) at two resolu...
State-of-the-art climate models were used to simulate climate conditions in Europe during Greenland ...
Using the Community Climate System Model version 3 (CCSM3) including a dynamic global vegetation mod...
Monthly sea surface temperature (SST), aerosol optical depth (AOD), precipitation (PRECIP), and Meri...
Understanding climate variability from millennial to glacial–interglacial time scales remains challe...
The Atlantic thermohaline circulation (THC) is an important part of the earth’s climate system. Prev...
Abstract High-resolution global climate modeling holds the promise of capturing planetary-scale clim...
Three 30 year long simulations have been performed with a T42 atmosphere model, in which the sea-sur...
Output from a set of 5 equilibrium global climate simulations of the early Holocene period run with ...
The study of surface-atmosphere interactions has begun with studies of the effect of altering the oc...
Orbital forcing does not only exert direct insolation effects, but also alters climate indirectly th...
We apply GENMOM, a coupled atmosphere–ocean climate model, to simulate eight equilibrium time slices...
Abstract Three new equilibrium mid‐Pliocene (MP) simulations are implemented with the Community Clim...
The coupled global atmosphere-ocean-vegetation model ECBilt-CLIO-VECODE is used to perform transient...
Driven primarily by variations in the earth's axis wobble, tilt, and orbit eccentricity, our pl...
Preindustrial (PI) simulations of the Community Climate System Model version 3 (CCSM3) at two resolu...