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Temperature-driven global sea-level variability in the Common Era
Journal article   Peer reviewed

Temperature-driven global sea-level variability in the Common Era

Robert E. Kopp, Andrew C. Kemp, Klaus Bittermann, Benjamin P. Horton, Jeffrey P. Donnelly, W. Roland Gehrels, Carling C. Hay, Jerry X. Mitrovica, Eric Morrow and Stefan Rahmstorf
Proceedings of the National Academy of Sciences, Vol.113(11), pp.E1434-E1441
2016
DOI:
https://doi.org/10.7282/T3V126W3

Abstract

Sea level Common Era Late Holocene Climate Ocean
We assess the relationship between temperature and global sea-level (GSL) variability over the Common Era through a statistical metaanalysis of proxy relative sea-level reconstructions and tide-gauge data. GSL rose at 0.1 ± 0.1 mm/y (2σ) over 0–700 CE. A GSL fall of 0.2 ± 0.2 mm/y over 1000–1400 CE is associated with ∼0.2 °C global mean cooling. A significant GSL acceleration began in the 19th century and yielded a 20th century rise that is extremely likely (probability P≥0.95) faster than during any of the previous 27 centuries. A semiempirical model calibrated against the GSL reconstruction indicates that, in the absence of anthropogenic climate change, it is extremely likely (P=0.95) that 20th century GSL would have risen by less than 51% of the observed 13.8±1.5 cm. The new semiempirical model largely reconciles previous differences between semiempirical 21st century GSL projections and the process model-based projections summarized in the Intergovernmental Panel on Climate Change’s Fifth Assessment Report.
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Kopp2016 - PNAS - Common Era3.03 MB
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http://dx.doi.org/10.1073/pnas.1517056113View
Proceedings of the National Academy of Sciences
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