How well do integrated assessment models represent non-CO2 radiative forcing?

Publication date

2015-09-07

Authors

Harmsen, Jan Hartger MathijsORCID 0000-0001-6755-1569ISNI 0000000436397046
van Vuuren, Detlef P.ORCID 0000-0003-0398-2831ISNI 0000000040910093
van den Berg, MaartenORCID 0000-0001-9649-7995ISNI 000000049233156X
Hof, AndriesORCID 0000-0002-7568-5038ISNI 0000000390278972
Hope, Chris
Krey, Volker
Lamarque, Jean Francois
Marcucci, Adriana
Shindell, Drew T.
Schaeffer, Michiel

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Article
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Abstract

This study aims to create insight in how Integrated Assessment Models (IAMs) perform in describing the climate forcing by non-CO<inf>2</inf> gases and aerosols. The simple climate models (SCMs) included in IAMs have been run with the same prescribed anthropogenic emission pathways and compared to analyses with complex earth system models (ESMs) in terms of concentration and radiative forcing levels. In our comparison, particular attention was given to the short-lived forcers' climate effects. In general, SCMs show forcing levels within the expert model ranges. However, the more simple SCMs seem to underestimate forcing differences between baseline and mitigation scenarios because of omission of ozone, black carbon and/or indirect methane forcing effects. Above all, results also show that among IAMs there is a significant spread (0.74 W/m<sup>2</sup> in 2100) in non-CO<inf>2</inf> forcing projections for a 2.6 W/m<sup>2</sup> mitigation scenario, mainly due to uncertainties in the indirect effects of aerosols. This has large implications for determining optimal mitigation strategies among IAMs with regard to required CO<inf>2</inf> forcing targets and policy costs.

Keywords

Global and Planetary Change, Atmospheric Science, SDG 13 - Climate Action

Citation

Harmsen, M J H M, van Vuuren, D P, van Den Berg, M, Hof, A F, Hope, C, Krey, V, Lamarque, J F, Marcucci, A, Shindell, D T & Schaeffer, M 2015, 'How well do integrated assessment models represent non-CO 2 radiative forcing?', Climatic Change, vol. 133, no. 4, pp. 565-582. https://doi.org/10.1007/s10584-015-1485-0