Simulating the amplification of orbital forcing by ocean feedbacks in the last glaciation
- 29 March 2001
- journal article
- research article
- Published by Springer Nature in Nature
- Vol. 410 (6828) , 570-574
- https://doi.org/10.1038/35069044
Abstract
According to Milankovitch theory, the lower summer insolation at high latitudes about 115,000 years ago allowed winter snow to persist throughout summer, leading to ice-sheet build-up and glaciation1. But attempts to simulate the last glaciation using global atmospheric models have failed to produce this outcome when forced by insolation changes only2,3,4,5. These results point towards the importance of feedback effects—for example, through changes in vegetation or the ocean circulation—for the amplification of solar forcing6,7,8,9. Here we present a fully coupled ocean–atmosphere model of the last glaciation that produces a build-up of perennial snow cover at known locations of ice sheets during this period. We show that ocean feedbacks lead to a cooling of the high northern latitudes, along with an increase in atmospheric moisture transport from the Equator to the poles. These changes agree with available geological data10,11,12,13,14,15 and, together, they lead to an increased delivery of snow to high northern latitudes. The mechanism we present explains the onset of glaciation—which would be amplified by changes in vegetation—in response to weak orbital forcing.Keywords
This publication has 26 references indexed in Scilit:
- Changes in Meridional Temperature and Salinity Gradients in the North Atlantic Ocean (30°–72°N) during the Last Interglacial PeriodPaleoceanography and Paleoclimatology, 1999
- Possible role of atmosphere‐biosphere interactions in triggering the Last GlaciationGeophysical Research Letters, 1996
- Role of orbitally induced changes in tundra area in the onset of glaciationNature, 1996
- Sensitivity Studies of Northern Hemisphere Glaciation Using an Atmospheric General Circulation ModelJournal of Climate, 1995
- The Response to Orbital Perturbations in an Atmospheric Model Coupled to a Slab OceanJournal of Climate, 1994
- Modelling of palaeoclimates: examples from the recent pastPhilosophical Transactions Of The Royal Society B-Biological Sciences, 1993
- Sensitivity of glaciation to initial snow cover, CO2, snow albedo, and oceanic roughness in the NCAR CCMClimate Dynamics, 1990
- Can Milankovitch orbital variations initiate the growth of ice sheets in a general circulation model?Journal of Geophysical Research: Atmospheres, 1989
- Response of global deep-water circulation to Earth's climatic change 135,000–107,000 years agoNature, 1985
- Orbital forcing of the inception of the Laurentide ice sheet?Nature, 1983