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Stabilising millennial oscillations in large-scale ocean circulation with a delayed feedback due to a circumpolar current

delete2025-06-01
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Andrew Keane *
A
Alexandre de Almeida Prado Pohl
H
Henk A. Dijkstra
A
Andy Ridgwell
DOI:10.1016/j.physd.2025.134680delete
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Abstract

Abstract

En 中文
The global ocean circulation plays a pivotal role in the regulation of the Earth's climate. The specific pattern and strength of circulation also determines how carbon and nutrients are cycled and via the resulting distribution of dissolved oxygen, where habitats suitable for marine animals occur. However, evidence from both geological data and models suggests that state transitions in circulation patterns have occurred in the past. Understanding the controls on marine environmental conditions and biodiversity requires a full appreciation of the nature and drivers of such transitions. Here we present stable millennial oscillations of meridional overturning circulation in an Earth system model of intermediate complexity, cGENIE, that appear to only occur in the presence of a circumpolar current. To demonstrate that a circumpolar current can act as a driver of stable oscillations, we adapt a simple ocean box model to include a delayed feedback to represent the effect of a circumpolar current on meridional overturning circulation. We investigate the millennial oscillatory solutions that arise in the box model by bifurcation analysis and show that the model can reproduce the same bifurcation structure observed in the Earth system model. Our results provide new insights into the nature of oscillations that could have occurred under certain continental configurations in the geological past, and also highlight the potential influence of the changing Antarctic circumpolar current speed on the stability of the Atlantic meridional overturning circulation.
Keywords:
Delay dynamics
Bifurcation analysis
Ocean circulation
Oscillation
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Physica D - Nonlinear Phenomena
IF:
2.9
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389
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1.5W

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