Constraining clouds and convective parameterizations in a climate model using paleoclimate data

Cloud and convective parameterizations strongly influence uncertainties in equilibrium climate sensitivity. We provide a proof-of-concept study to constrain these parameterizations in a perturbed parameter ensemble of the atmosphere-only version of the Goddard Institute for Space Studies Model E2.1 simulations by evaluating model biases in the present-day runs using multiple satellite climatologies and by comparing simulated delta O-18 of precipitation (delta O-18(p)), known to be sensitive to parameterization schemes, with a global database of speleothem delta O-18 records covering the Last Glacial Maximum (LGM), mid-Holocene (MH) and pre-industrial (PI) periods. Relative to modern interannual variability, paleoclimate simulations show greater sensitivity to parameter changes, allowing for an evaluation of model uncertainties over a broader range of climate forcing and the identification of parts of the world that are parameter sensitive. Certain simulations reproduced absolute delta O-18(p) values across all time periods, along with LGM and MH delta O-18(p) anomalies relative to the PI, better than the default parameterization. No single set of parameterizations worked well in all climate states, likely due to the non-stationarity of cloud feedbacks under varying boundary conditions. Future work that involves varying multiple parameter sets simultaneously with coupled ocean feedbacks will likely provide improved constraints on cloud and convective parameterizations.

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Author Ramos, R. D.
LeGrande, A. N.
Griffiths, M. L.
Elsaesser, G. S.
Litchmore, D. T.
Tierney, J. E.
Pausata, F. S. R.
Nusbaumer, J.
Publisher UCAR/NCAR - Library
Publication Date 2022-08-06T00:00:00
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Topic Category geoscientificInformation
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Metadata Date 2023-08-18T18:18:18.709570
Metadata Record Identifier edu.ucar.opensky::articles:25626
Metadata Language eng; USA
Suggested Citation Ramos, R. D., LeGrande, A. N., Griffiths, M. L., Elsaesser, G. S., Litchmore, D. T., Tierney, J. E., Pausata, F. S. R., Nusbaumer, J.. (2022). Constraining clouds and convective parameterizations in a climate model using paleoclimate data. UCAR/NCAR - Library. http://n2t.net/ark:/85065/d72n5614. Accessed 20 November 2024.

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