Most Likely Noise-Induced Overturning Circulation Collapse in a 2D Boussinesq Fluid Model

Fuente: arXiv
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Auteurs principaux: Soons, Jelle, Grafke, Tobias, Dijkstra, Henk A.
Format: Preprint
Publié: 2024
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author Soons, Jelle
Grafke, Tobias
Dijkstra, Henk A.
author_facet Soons, Jelle
Grafke, Tobias
Dijkstra, Henk A.
contents There is a reasonable possibility that the present-day Atlantic Meridional Overturning Circulation is in a bi-stable regime and hence it is relevant to compute probabilities and pathways of noise-induced transitions between the stable equilibrium states. Here, the most probable transition pathway of a noise-induced collapse of the northern overturning circulation in a spatially-continuous two-dimensional model with surface temperature and stochastic salinity forcings is directly computed using Large Deviation Theory (LDT). This pathway reveals the fluid dynamical mechanisms of such a collapse. Paradoxically it starts off with a strengthening of the northern overturning circulation before a short but strong salinity pulse induces a second overturning cell. The increased atmospheric energy input of this two-cell configuration cannot be mixed away quickly enough, leading to the collapse of the northern overturning cell and finally resulting in a southern overturning circulation. Additionally, the approach allows us to compare the probability of this collapse under different parameters in the deterministic part of the salinity surface forcing, which quantifies the increase in collapse probability as the bifurcation point of the system is approached.
format Preprint
id arxiv_https___arxiv_org_abs_2408_14235
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Most Likely Noise-Induced Overturning Circulation Collapse in a 2D Boussinesq Fluid Model
Soons, Jelle
Grafke, Tobias
Dijkstra, Henk A.
Atmospheric and Oceanic Physics
Fluid Dynamics
There is a reasonable possibility that the present-day Atlantic Meridional Overturning Circulation is in a bi-stable regime and hence it is relevant to compute probabilities and pathways of noise-induced transitions between the stable equilibrium states. Here, the most probable transition pathway of a noise-induced collapse of the northern overturning circulation in a spatially-continuous two-dimensional model with surface temperature and stochastic salinity forcings is directly computed using Large Deviation Theory (LDT). This pathway reveals the fluid dynamical mechanisms of such a collapse. Paradoxically it starts off with a strengthening of the northern overturning circulation before a short but strong salinity pulse induces a second overturning cell. The increased atmospheric energy input of this two-cell configuration cannot be mixed away quickly enough, leading to the collapse of the northern overturning cell and finally resulting in a southern overturning circulation. Additionally, the approach allows us to compare the probability of this collapse under different parameters in the deterministic part of the salinity surface forcing, which quantifies the increase in collapse probability as the bifurcation point of the system is approached.
title Most Likely Noise-Induced Overturning Circulation Collapse in a 2D Boussinesq Fluid Model
topic Atmospheric and Oceanic Physics
Fluid Dynamics
url https://arxiv.org/abs/2408.14235