African hydroclimate during the early Eocene from the DeepMIP simulations

The early Eocene (similar to 56-48 Myr ago) is characterized by high CO2 estimates (1,200-2,500 ppmv) and elevated global temperatures (similar to 10 degrees C-16 degrees C higher than modern). However, the response of the hydrological cycle during the early Eocene is poorly constrained, especially in regions with sparse data coverage (e.g., Africa). Here, we present a study of African hydroclimate during the early Eocene, as simulated by an ensemble of state-of-the-art climate models in the Deep-time Model Intercomparison Project (DeepMIP). A comparison between the DeepMIP pre-industrial simulations and modern observations suggests that model biases are model- and geographically dependent, however, these biases are reduced in the model ensemble mean. A comparison between the Eocene simulations and the pre-industrial suggests that there is no obvious wetting or drying trend as the CO2 increases. The results suggest that changes to the land sea mask (relative to modern) in the models may be responsible for the simulated increases in precipitation to the north of Eocene Africa. There is an increase in precipitation over equatorial and West Africa and associated drying over northern Africa as CO2 rises. There are also important dynamical changes, with evidence that anticyclonic low-level circulation is replaced by increased south-westerly flow at high CO2 levels. Lastly, a model-data comparison using newly compiled quantitative climate estimates from paleobotanical proxy data suggests a marginally better fit with the reconstructions at lower levels of CO2.

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Related Dataset #1 : Paleobotanical precipitation estimates used in Williams et al.: African hydroclimate monsoon during the early Eocene from the DeepMIP simulations, Paleoceanography and Paleoclimatology, 2022

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Author Williams, C. J.
Lunt, D. J.
Salzmann, U.
Reichgelt, T.
Inglis, G. N.
Greenwood, D. R.
Chan, W.
Abe-Ouchi, A.
Donnadieu, Y.
Hutchinson, D. K.
Boer, A. M.
Ladant, J.
Morozova, P. A.
Niezgodzki, I.
Knorr, G.
Steinig, S.
Zhang, Z.
Zhu, Jiang
Huber, M.
Otto-Bliesner, Bette
Publisher UCAR/NCAR - Library
Publication Date 2022-05-01T00:00:00
Digital Object Identifier (DOI) Not Assigned
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Topic Category geoscientificInformation
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Metadata Date 2025-07-11T16:03:42.339885
Metadata Record Identifier edu.ucar.opensky::articles:25423
Metadata Language eng; USA
Suggested Citation Williams, C. J., Lunt, D. J., Salzmann, U., Reichgelt, T., Inglis, G. N., Greenwood, D. R., Chan, W., Abe-Ouchi, A., Donnadieu, Y., Hutchinson, D. K., Boer, A. M., Ladant, J., Morozova, P. A., Niezgodzki, I., Knorr, G., Steinig, S., Zhang, Z., Zhu, Jiang, Huber, M., Otto-Bliesner, Bette. (2022). African hydroclimate during the early Eocene from the DeepMIP simulations. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d7n01b7p. Accessed 09 August 2025.

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