Neoproterozoic ‘snowball Earth’ simulations with a coupled climate/ice-sheet model
Top Cited Papers
- 1 May 2000
- journal article
- research article
- Published by Springer Nature in Nature
- Vol. 405 (6785) , 425-429
- https://doi.org/10.1038/35013005
Abstract
Ice sheets may have reached the Equator in the late Proterozoic era (600–800 Myr ago), according to geological and palaeomagnetic studies, possibly resulting in a ‘snowball Earth’. But this period was a critical time in the evolution of multicellular animals, posing the question of how early life survived under such environmental stress. Here we present computer simulations of this unusual climate stage with a coupled climate/ice-sheet model. To simulate a snowball Earth, we use only a reduction in the solar constant compared to present-day conditions and we keep atmospheric CO2 concentrations near present levels. We find rapid transitions into and out of full glaciation that are consistent with the geological evidence. When we combine these results with a general circulation model, some of the simulations result in an equatorial belt of open water that may have provided a refugium for multicellular animals.Keywords
This publication has 40 references indexed in Scilit:
- The late proterozoic glacial eraPublished by Elsevier ,2003
- The Neoproterozoic climatic paradox: Equatorial palaeolatitude for Marinoan glaciation near sea level in South AustraliaPublished by Elsevier ,1999
- A Neoproterozoic Snowball EarthScience, 1998
- OVERVIEW: Neoproterozoic-Paleozoic geography and tectonics: Review, hypothesis, environmental speculationGSA Bulletin, 1997
- Molecular Evidence for Deep Precambrian Divergences Among Metazoan PhylaScience, 1996
- Possible new evidence for the origin of metazoans prior to 1 Ga: Sediment-filled tubes from the Mesoproterozoic Allamoore Formation, Trans-Pecos TexasGeology, 1995
- Earth's glacial record and its tectonic settingEarth-Science Reviews, 1993
- Latest Proterozoic stratigraphy and Earth historyNature, 1992
- Did the Breakout of Laurentia Turn Gondwanaland Inside-Out?Science, 1991
- Pre-Pleistocene glaciation on Earth: Implications for climatic history of MarsIcarus, 1982