ABSENCE OF A RUNAWAY ICE-ALBEDO FEEDBACK IN THE NEOPROTEROZOIC
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dc.contributor.author | Poulsen Ch.J. | |
dc.date.accessioned | 2022-01-03T07:02:42Z | |
dc.date.available | 2022-01-03T07:02:42Z | |
dc.date.issued | 2003 | |
dc.identifier | https://www.elibrary.ru/item.asp?id=7675142 | |
dc.identifier.citation | Geology, 2003, 31, 6, 473 | |
dc.identifier.issn | 0091-7613 | |
dc.identifier.uri | https://repository.geologyscience.ru/handle/123456789/34133 | |
dc.description.abstract | A runaway ice-albedo feedback at low latitudes has been proposed as an essential mechanism for achieving an ice-covered Earth. Previous simulations of the Neoproterozoic climate using a coupled ocean-atmosphere model have failed to trigger this feedback, but have also not simulated sea ice equatorward of 30° . To directly test for a runaway ice-albedo feedback, a 1000 yr simulation of the Neoproterozoic using a coupled ocean- atmosphere general circulation model was completed with sea ice specified to 10° latitude. In this experiment, low-latitude sea-surface temperatures remain above freezing, inhibiting sea-ice advance toward the equator. An ice-free ocean is maintained by a low latent-heat flux to the atmosphere and low ocean-heat transport from low latitudes. A Neoproterozoic climate with low-latitude sea ice is not stable. Once the sea-ice specification was released, allowing sea ice to melt, the sea-ice margin retreated poleward of 45° latitude. These climate simulations demonstrate the resilience of Earth's climate and emphasize the extreme conditions required to initiate a “ hard” snowball Earth. | |
dc.subject | paleoclimate | |
dc.subject | general circulation models | |
dc.subject | ice ages | |
dc.subject | oceans | |
dc.subject | Neoproterozoic | |
dc.title | ABSENCE OF A RUNAWAY ICE-ALBEDO FEEDBACK IN THE NEOPROTEROZOIC | |
dc.type | Статья | |
dc.subject.age | Precambrian::Proterozoic::Neoproterozoic | |
dc.subject.age | Докембрий::Протерозой::Неопротерозойская | ru |
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