Impact of the deep chlorophyll maximum in the equatorial pacific as revealed in a coupled ocean GCM‐ecosystem model
Q Shi, RH Zhang, F Tian - Journal of Geophysical Research …, 2023 - Wiley Online Library
A coupled ocean general circulation model (OGCM)‐ocean ecosystem model is used to
investigate the effects of the deep chlorophyll maximum (DCM) on the ocean state in the …
investigate the effects of the deep chlorophyll maximum (DCM) on the ocean state in the …
Western North Pacific tropical cyclone activity modulated by phytoplankton feedback under global warming
The effects of bio-optical feedback through chlorophyll on future tropical cyclone (TC) activity
are not well understood. Here we use Earth system model simulations with the …
are not well understood. Here we use Earth system model simulations with the …
A new hybrid coupled model of atmosphere, ocean physics, and ocean biogeochemistry to represent biogeophysical feedback effects in the tropical Pacific
RH Zhang, F Tian, X Wang - Journal of Advances in Modeling …, 2018 - Wiley Online Library
Multiple processes are involved in modulating the El Niño‐Southern Oscillation (ENSO) in
the tropical Pacific, and these processes are neither well‐represented nor well‐understood …
the tropical Pacific, and these processes are neither well‐represented nor well‐understood …
How does the phytoplankton-light feedback affect marine N2O inventory?
The phytoplankton-light feedback (PLF) depicts how phytoplankton biomass interacts with
the downwelling shortwave radiation entering the ocean. Considering the PLF allows …
the downwelling shortwave radiation entering the ocean. Considering the PLF allows …
Impact of chlorophyll shading on the Peruvian upwelling system
The influence of chlorophyll shading on ocean dynamics has been usually disregarded in
eastern boundary upwelling systems modeling studies in spite of their very high primary …
eastern boundary upwelling systems modeling studies in spite of their very high primary …
Ocean chlorophyll as a precursor of ENSO: an earth system modeling study
Ocean chlorophyll concentration, a proxy for phytoplankton, is strongly influenced by internal
ocean dynamics such as those associated with El Niño–Southern Oscillation (ENSO) …
ocean dynamics such as those associated with El Niño–Southern Oscillation (ENSO) …
Oceanic and atmospheric drivers of post‐El‐Niño chlorophyll rebound in the equatorial Pacific
Abstract The El Niño‐Southern Oscillation (ENSO) strongly influences phytoplankton in the
tropical Pacific, with El Niño conditions suppressing productivity in the equatorial Pacific …
tropical Pacific, with El Niño conditions suppressing productivity in the equatorial Pacific …
A positive feedback onto ENSO due to tropical instability wave (TIW)‐induced chlorophyll effects in the Pacific
F Tian, RH Zhang, X Wang - Geophysical Research Letters, 2019 - Wiley Online Library
Tropical instability waves (TIWs) induce large physical and biological perturbations, which
have a feedback onto the tropical Pacific climate and ecosystem. However, the extent to …
have a feedback onto the tropical Pacific climate and ecosystem. However, the extent to …
Ocean chlorophyll-induced heating feedbacks on ENSO in a coupled ocean physics–biology model forced by prescribed wind anomalies
RH Zhang, F Tian, X Wang - Journal of Climate, 2018 - journals.ametsoc.org
Ocean biology components affect the vertical redistribution of incoming solar radiation in the
upper ocean of the tropical Pacific and can significantly modulate El Niño–Southern …
upper ocean of the tropical Pacific and can significantly modulate El Niño–Southern …
[HTML][HTML] Freshwater flux and ocean chlorophyll produce nonlinear feedbacks in the tropical Pacific
RH Zhang, F Tian, AJ Busalacchi, X Wang - Journal of Climate, 2019 - journals.ametsoc.org
Freshwater Flux and Ocean Chlorophyll Produce Nonlinear Feedbacks in the Tropical Pacific
in: Journal of Climate Volume 32 Issue 7 (2019) Jump to Content Jump to Main Navigation …
in: Journal of Climate Volume 32 Issue 7 (2019) Jump to Content Jump to Main Navigation …