English

Multivariate Estimations of Equilibrium Climate Sensitivity from Short Transient Warming Simulations

Atmospheric and Oceanic Physics 2021-02-04 v1

Abstract

One of the most used metrics to gauge the effects of climate change is the equilibrium climate sensitivity, defined as the long-term (equilibrium) temperature increase resulting from instantaneous doubling of atmospheric CO2_2. Since global climate models cannot be fully equilibrated in practice, extrapolation techniques are used to estimate the equilibrium state from transient warming simulations. Because of the abundance of climate feedbacks - spanning a wide range of temporal scales - it is hard to extract long-term behaviour from short-time series; predominantly used techniques are only capable of detecting the single most dominant eigenmode, thus hampering their ability to give accurate long-term estimates. Here, we present an extension to those methods by incorporating data from multiple observables in a multi-component linear regression model. This way, not only the dominant but also the next-dominant eigenmodes of the climate system are captured, leading to better long-term estimates from short, non-equilibrated time series.

Keywords

Cite

@article{arxiv.2010.00845,
  title  = {Multivariate Estimations of Equilibrium Climate Sensitivity from Short Transient Warming Simulations},
  author = {Robbin Bastiaansen and Henk A. Dijkstra and Anna S. von der Heydt},
  journal= {arXiv preprint arXiv:2010.00845},
  year   = {2021}
}

Comments

Main Text (10 pages, 4 figures) plus Supporting Information (36 pages, 18 figures, 1 table)

R2 v1 2026-06-23T18:57:36.218Z