Javascript must be enabled to continue!
The dynamics of low-latitude sub-surface oceanic jets
View through CrossRef
A complex system of alternating zonal jets has been observed in the low latitude Pacific ocean, both on the equator and extending away into the subtropics. The dynamics of the subtropical jets, which also seem to be associated with strong cross-jet gradients in chemical tracers, may be similar to those of much-studied beta-plane zonal jets, but the effect of longitudinal boundaries, which are present in oceanic cases, on such jets is still puzzling. The forcing mechanism behind this set of oceanic zonal jets and what determines its horizontal and vertical structure are also poorly understood. We consider a beta-plane two-dimensional model with rigid boundary conditions and apply stochastic forcing, which without rigid boundaries would generate zonal jets. The instantaneous flow field is strongly time-dependent, with a large component of stochastically forced basin modes. This seems to disrupt the formation of alternating zonal jets, which, in contrast to the case without rigid boundaries, are observable only in the time-mean field and much weaker than the instantaneous flow. There is some evidence that these apparent time-mean jets are primarily the signature of stochastically forced basin modes rather than genuinely persistent jet-like flows. Adding tracers to the model allows the investigation of the relation between jet structure and the transport and mixing of tracers, and act as an important diagnostic to verify the presence or absence of jets. The instantaneous tracer field in the case with rigid boundaries is highly unsteady and, unlike the doubly periodic case, the jet structure is not manifested in the tracer field. Two-dimensional simulations with simple rigid boundary geometry may overestimate the generation of basin modes relative to the real ocean. Non-uniform damping is applied as a model device to break the interaction between the flow and boundaries and test whether it can inhibit basin modes and hence allow generation of steady zonal jets. With this non-uniform damping, jets present in the zonal mean field become more persistent as our redefined zonostrophy parameter increases, but there exist caveats we need to examine further, such as small ratio of energy in the zonal flow to the total energy as compared to much-studied cases without boundaries.
Title: The dynamics of low-latitude sub-surface oceanic jets
Description:
A complex system of alternating zonal jets has been observed in the low latitude Pacific ocean, both on the equator and extending away into the subtropics.
The dynamics of the subtropical jets, which also seem to be associated with strong cross-jet gradients in chemical tracers, may be similar to those of much-studied beta-plane zonal jets, but the effect of longitudinal boundaries, which are present in oceanic cases, on such jets is still puzzling.
The forcing mechanism behind this set of oceanic zonal jets and what determines its horizontal and vertical structure are also poorly understood.
We consider a beta-plane two-dimensional model with rigid boundary conditions and apply stochastic forcing, which without rigid boundaries would generate zonal jets.
The instantaneous flow field is strongly time-dependent, with a large component of stochastically forced basin modes.
This seems to disrupt the formation of alternating zonal jets, which, in contrast to the case without rigid boundaries, are observable only in the time-mean field and much weaker than the instantaneous flow.
There is some evidence that these apparent time-mean jets are primarily the signature of stochastically forced basin modes rather than genuinely persistent jet-like flows.
Adding tracers to the model allows the investigation of the relation between jet structure and the transport and mixing of tracers, and act as an important diagnostic to verify the presence or absence of jets.
The instantaneous tracer field in the case with rigid boundaries is highly unsteady and, unlike the doubly periodic case, the jet structure is not manifested in the tracer field.
Two-dimensional simulations with simple rigid boundary geometry may overestimate the generation of basin modes relative to the real ocean.
Non-uniform damping is applied as a model device to break the interaction between the flow and boundaries and test whether it can inhibit basin modes and hence allow generation of steady zonal jets.
With this non-uniform damping, jets present in the zonal mean field become more persistent as our redefined zonostrophy parameter increases, but there exist caveats we need to examine further, such as small ratio of energy in the zonal flow to the total energy as compared to much-studied cases without boundaries.
Related Results
Couplage accrétion-éjection dans les microquasars et sources X ultralumineuses
Couplage accrétion-éjection dans les microquasars et sources X ultralumineuses
Dans l'Univers, des processus d'éjection de matière sont observés dans un large éventail de systèmes accrétants ; néanmoins, la formation et la propagation de ces jets sont encore ...
ON THE IMPORTANCE OF VERY LIGHT INTERNALLY SUBSONIC AGN JETS IN RADIO-MODE AGN FEEDBACK
ON THE IMPORTANCE OF VERY LIGHT INTERNALLY SUBSONIC AGN JETS IN RADIO-MODE AGN FEEDBACK
ABSTRACT
Radio-mode active galactic nucleus (AGN) feedback plays a key role in the evolution of galaxy groups and clusters. Its physical origin lies in the kiloparse...
Atmospheric pCO2 sensitivity to the biological pump in the ocean
Atmospheric pCO2 sensitivity to the biological pump in the ocean
In models of the global carbon cycle, the pCO2of the atmosphere is more sensitive to the chemistry of the high‐latitude surface ocean than the tropical ocean. Because sea‐surface n...
Charm Jets
Charm Jets
How did the Universe begin? The Big Bang theory states that the Universe was not the same stars and planets as we see today, but just a very hot liquid called the quark–gluon plasm...
Extraction of jet-medium interaction details through jet substructure for inclusive and gamma-tagged jets
Extraction of jet-medium interaction details through jet substructure for inclusive and gamma-tagged jets
We present a comprehensive study of jet substructure modifications in high-energy heavy-ion collisions using both inclusive jets and γ-tagged jets, based on a multi-stage jet evolu...
Relativistic jets from stellar mass accreting black holes
Relativistic jets from stellar mass accreting black holes
Jets relativistes des trous noirs accrétants de masse stellaire
Les jets relativistes sont des éjections produites par des objets compacts, dont les trous noirs de ...
Experimental and Theoretical Study of Mixing in Low-density Jets
Experimental and Theoretical Study of Mixing in Low-density Jets
Étude expérimentale et théorique du mélange d'un jet léger
L'objectif de cette thèse est d'étudier les mécanismes physiques qui gouvernent l'évolution et le mélange...
Photon tagged jet substructure measurements in pp and PbPb collisions with the CMS detector
Photon tagged jet substructure measurements in pp and PbPb collisions with the CMS detector
Mesures de la sous-structure des jets marqués par des photons dans les collisions pp et PbPb avec le d'etecteur CMS
Cette thèse présente les mesures de la circonfér...

