Oceanic and Atmospheric Drivers of Post-El-Niño Chlorophyll Rebound in the Equatorial Pacific

Title
Oceanic and Atmospheric Drivers of Post-El-Niño Chlorophyll Rebound in the Equatorial Pacific
Author(s)
Lim, Hyung-Gyu; Dunne, John P.; Stock, Charles A.; Ginoux, Paul; John, Jasmin G.
KIOST Author(s)
Lim, Hyung-Gyu(임형규)
Alternative Author(s)
임형규
Publication Year
2023-11-02
Abstract
The El Niño-Southern Oscillation (ENSO) strongly influences phytoplankton in the tropical
Pacific, with El Niño conditions suppressing productivity in the equatorial Pacific (EP) and
placing nutritional stresses on marine ecosystems. The Geophysical Fluid Dynamics
Laboratory's (GFDL) Earth System Model version 4.1 (ESM4.1) captures observed ENSO-
chlorophyll patterns (r = 0.57) much better than GFDL's previous ESM2M (r = 0.23). Most
notably, the observed post-El Niño “chlorophyll rebound” is substantially improved in ESM4.1 (r
= 0.52). We find that an anomalous increase in iron propagation from western Pacific (WP)
subsurface to the cold tongue via the equatorial undercurrent (EUC) and subsequent post-El
Niño surfacing, unresolved in ESM2M, is the primary driver of chlorophyll rebound. We also find
that this chlorophyll rebound is augmented by high post-El Niño dust-iron deposition anomalies
in the eastern EP. This post-El Niño chlorophyll rebound provides a previously unrecognized
source of marine ecosystem resilience independent from the La Niña that sometimes follows.
URI
https://sciwatch.kiost.ac.kr/handle/2020.kiost/44941
Bibliographic Citation
2023년도 한국해양학회 추계학술대회, 2023
Publisher
한국해양학회
Type
Conference
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