The Role of Sea-ice Processes on the Probability of AMOC Transitions

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: van Westen, René M., Jacques-Dumas, Valérian, Boot, Amber A., Dijkstra, Henk A.
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866916103336230912
author van Westen, René M.
Jacques-Dumas, Valérian
Boot, Amber A.
Dijkstra, Henk A.
author_facet van Westen, René M.
Jacques-Dumas, Valérian
Boot, Amber A.
Dijkstra, Henk A.
contents Recent simulations performed with the Community Earth System Model (CESM) have suggested a crucial role of sea-ice processes in AMOC hysteresis behaviour under varying surface freshwater forcing. Here, we further investigate this issue using additional CESM simulations and a novel conceptual ocean-sea-ice box model. The CESM simulations show that the presence of sea ice gives rise to the existence of statistical equilibrium states with a weak AMOC strength. This is confirmed in the conceptual model, which captures the same AMOC hysteresis behaviour as in the CESM simulation and where steady states are computed versus forcing parameters. In the conceptual model, transition probabilities between the different equilibrium states are determined using rare event techniques. The transition probabilities from a strong AMOC state to a weak AMOC state increase when considering sea-ice processes and indicate that sea ice promotes these transitions. On the other hand, sea ice strongly reduces the probabilities of the reverse transition from a weak AMOC state to a strong AMOC state and this implies that sea ice also limits AMOC recovery. The results here indicate that sea-ice processes play a dominant role in AMOC hysteresis width and influence transition probabilities between the different equilibrium states.
format Preprint
id arxiv_https___arxiv_org_abs_2401_12615
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The Role of Sea-ice Processes on the Probability of AMOC Transitions
van Westen, René M.
Jacques-Dumas, Valérian
Boot, Amber A.
Dijkstra, Henk A.
Geophysics
Recent simulations performed with the Community Earth System Model (CESM) have suggested a crucial role of sea-ice processes in AMOC hysteresis behaviour under varying surface freshwater forcing. Here, we further investigate this issue using additional CESM simulations and a novel conceptual ocean-sea-ice box model. The CESM simulations show that the presence of sea ice gives rise to the existence of statistical equilibrium states with a weak AMOC strength. This is confirmed in the conceptual model, which captures the same AMOC hysteresis behaviour as in the CESM simulation and where steady states are computed versus forcing parameters. In the conceptual model, transition probabilities between the different equilibrium states are determined using rare event techniques. The transition probabilities from a strong AMOC state to a weak AMOC state increase when considering sea-ice processes and indicate that sea ice promotes these transitions. On the other hand, sea ice strongly reduces the probabilities of the reverse transition from a weak AMOC state to a strong AMOC state and this implies that sea ice also limits AMOC recovery. The results here indicate that sea-ice processes play a dominant role in AMOC hysteresis width and influence transition probabilities between the different equilibrium states.
title The Role of Sea-ice Processes on the Probability of AMOC Transitions
topic Geophysics
url https://arxiv.org/abs/2401.12615