Articles | Volume 8, issue 3
https://doi.org/10.5194/esd-8-849-2017
https://doi.org/10.5194/esd-8-849-2017
Research article
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25 Sep 2017
Research article | Highlight paper |  | 25 Sep 2017

An explanation for the different climate sensitivities of land and ocean surfaces based on the diurnal cycle

Axel Kleidon and Maik Renner

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Cited articles

Bennett, W. B., Wang, J., and Bras, R. L.: Estimation of Global Ground Heat Flux, J. Hydrometeorol., 9, 744–759, 2008.
Boer, G. J.: The ratio of land to ocean temperature change under global warming, Clim. Dyn., 37, 2253–2270, https://doi.org/10.1007/s00382-011-1112-3, 2011.
Bristow, K. L. and Campbell, G. S.: On the relationship between incoming solar radiation and daily maximum and minimum temperature, Agric. For. Meteor., 31, 159–166, 1984.
Budyko, M. I.: The Effect of Solar Radiation Variations on the Climate of the Earth, Tellus, 21, 611–619, 1969.
Byrne, M. P. and O'Gorman, P. A.: Land–Ocean Warming Contrast over a Wide Range of Climates: Convective Quasi-Equilibrium Theory and Idealized Simulations, J. Climate, 26, 4000–4016, https://doi.org/10.1175/JCLI-D-12-00262.1, 2013.
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Short summary
We provide an explanation why land temperatures respond more strongly to global warming than ocean temperatures, a robust finding in observations and models that has so far not been understood well. We explain it by the different ways by which ocean and land surfaces buffer the strong variation in solar radiation and demonstrate this with a simple, physically based model. Our explanation also illustrates why nighttime temperatures warm more strongly, another robust finding of global warming.
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