Articles | Volume 5, issue 2
https://doi.org/10.5194/cp-5-245-2009
© Author(s) 2009. This work is distributed under
the Creative Commons Attribution 3.0 License.Mechanisms and time scales of glacial inception simulated with an Earth system model of intermediate complexity
Related subject area
Subject: Ice Dynamics | Archive: Modelling only | Timescale: Milankovitch
Last glacial inception trajectories for the Northern Hemisphere from coupled ice and climate modelling
Using ice-flow models to evaluate potential sites of million year-old ice in Antarctica
Greenland ice sheet model parameters constrained using simulations of the Eemian Interglacial
Simulation of the last glacial cycle with a coupled climate ice-sheet model of intermediate complexity
Clim. Past, 17, 397–418,
2021Clim. Past, 9, 2335–2345,
2013Clim. Past, 7, 381–396,
2011Clim. Past, 6, 229–244,
2010Cited articles
Andrews, J. T. and Mahaffy, M. A. W.: Growth rate of the Laurentide ice sheet and sea level lowering (with emphasis on the 115000 BP sea level low), Quaternary Res., 6, 167–183, 1976.
Archer, D. and Ganopolski, A.: A movable trigger: Fossil fuel CO2 and the onset of the next glaciation, Geochem. Geophy. Geosy., 6, 1525–2027, 2005.
Berger, A.: Long-term variations of daily insolation and Quaternary climatic change, J. Atmos. Sci., 35, 2362–2367, 1978.
Brovkin, V., Ganopolski, A., Claussen, M., Kubatzki, C., and Petoukhov, V.: Modelling climate response to histrocial land cover change, Global Ecol. Biogeogr., 8, 509–517, 1999.
Brovkin, V., Bendtsen, J., Claussen, M., Ganopolski, A., Kubatzki, C., Petoukhov, V., and Andreev, A.: Carbon cycle, vegetation, and climate dynamics in the Holocene: Experiments with the CLIMBER-2 model, Global Biogeochem. Cy., 16, 1139, https://doi.org/10.1029/2001GB001662, 2002.