EGU24-1008, updated on 08 Mar 2024
https://doi.org/10.5194/egusphere-egu24-1008
EGU General Assembly 2024
© Author(s) 2024. This work is distributed under
the Creative Commons Attribution 4.0 License.

Statistical properties for a spatially heteregeneous one-dimensional energy balance model perturbed by additive noise

Gianmarco Del Sarto1,2 and Franco Flandoli3
Gianmarco Del Sarto and Franco Flandoli
  • 1Scuola Normale Superiore, Scuola Normale Superiore, Classe di Scienze, Italy (gianmarco.delsarto@sns.it)
  • 2IUSS Pavia - School for Advanced Studies, IUSS Pavia - School for Advanced Studies, Pavia, Italy (gianmarco.delsarto@iusspavia.it)
  • 3Scuola Normale Superiore, Scuola Normale Superiore, Classe di Scienze, Italy (franco.flandoli@sns.it)

A one-dimensional energy balance model (1D-EBM) is a simplified climate model that describes the evolution of Earth's temperature based on the planet's energy budget.

In this study, we examine a 1D-EBM that incorporates a parameter representing the impact of carbon dioxide on the energy balance. Based on empirical studies showing that bistability may occur in Earth's tropics, we consider the planet's ongoing radiation to be latitude-dependent, presenting bistability in low-latitude regions but not in high-latitude ones. This local bistability does not lead to a bifurcation in the entire system, in addition to the classical saddle-node bifurcations between Snowball Earth and the present climate.

We focus on investigating the statistical properties of the system when the model is perturbed with additive noise. Our work is a step towards a clearer understanding of the dynamics in a spatially heterogeneous setting.

How to cite: Del Sarto, G. and Flandoli, F.: Statistical properties for a spatially heteregeneous one-dimensional energy balance model perturbed by additive noise, EGU General Assembly 2024, Vienna, Austria, 14–19 Apr 2024, EGU24-1008, https://doi.org/10.5194/egusphere-egu24-1008, 2024.