positive indian ocean dipole events prevent anoxia off the west coast of india
Clicks: 130
ID: 237993
2017
Article Quality & Performance Metrics
Overall Quality
Improving Quality
0.0
/100
Combines engagement data with AI-assessed academic quality
Reader Engagement
Emerging Content
30.0
/100
129 views
30 readers
Trending
AI Quality Assessment
Not analyzed
Mint this article as an NFT
Not yet mintedCreate a permanent, verifiable on-chain record of this article on the Scimatic Network. The NFT is held in your Journament account, and you can withdraw it to your own wallet at any time.
5
SUSD
one-off · no wallet required
Abstract
The seasonal upwelling along the west coast of India
(WCI) brings nutrient-rich, oxygen-poor subsurface waters to the continental
shelf, favoring very low oxygen concentrations in the surface waters during
late boreal summer and fall. This yearly-recurring coastal hypoxia is more
severe during some years, leading to coastal anoxia that has strong impacts
on the living resources. In the present study, we analyze a 1/4° resolution coupled physical–biogeochemical regional oceanic
simulation over the 1960–2012 period to investigate the physical processes
influencing the oxycline interannual variability off the WCI, that being a
proxy for the variability on the shelf in our model. Our analysis indicates
a tight relationship between the oxycline and thermocline variations in this
region on both seasonal and interannual timescales, thereby revealing a
strong physical control of the oxycline variability. As in observations, our
model exhibits a shallow oxycline and thermocline during fall that combines with
interannual variations to create a window of opportunity for coastal anoxic
events. We further demonstrate that the boreal fall oxycline fluctuations
off the WCI are strongly related to the Indian Ocean Dipole (IOD), with an
asymmetric influence of its positive and negative phases. Positive IODs are
associated with easterly wind anomalies near the southern tip of India.
These winds force downwelling coastal Kelvin waves that propagate along the
WCI and deepen the thermocline and oxycline there, thus preventing the
occurrence of coastal anoxia. On the other hand, negative IODs are
associated with WCI thermocline and oxycline anomalies of opposite sign but
of smaller amplitude, so that the negative or neutral IOD phases are
necessary but not the sufficient condition for coastal anoxia. As the IODs
generally start developing in summer, these findings suggest some
predictability to the occurrence of coastal anoxia off the WCI a couple of
months ahead.
| Reference Key |
vallivattathillam2017biogeosciencespositive
Use this key to autocite in the manuscript while using
SciMatic Manuscript Manager or Thesis Manager
|
|---|---|
| Authors | ;P. Vallivattathillam;S. Iyyappan;M. Lengaigne;C. Ethé;J. Vialard;M. Levy;N. Suresh;O. Aumont;L. Resplandy;H. Naik;W. Naqvi |
| Journal | tetrahedron letters |
| Year | 2017 |
| DOI |
10.5194/bg-14-1541-2017
|
| URL | |
| Keywords |
Citations
No citations found. To add a citation, contact the admin at info@scimatic.org
Comments
No comments yet. Be the first to comment on this article.