Climate modeling groups nowadays develop earth system models (ESMs) by incorporating biogeochemical processes in their climate models. The ESMs, however, often show substantial bias in simulated marine biogeochemistry which can potentially introduce an undesirable bias in physical ocean fields through biogeophysical interactions. This study examines how and how much the chlorophyll bias in a state-of-the-art ESM affects the mean and seasonal cycle of tropical Pacific sea-surface temperature (SST). The ESM used in the present study shows a sizeable positive bias in the simulated tropical chlorophyll. We found that the correction of the chlorophyll bias can reduce the ESM's intrinsic cold SST mean bias in the equatorial Pacific. The biol...
International audienceWe examine six different coupled climate model simulations to determine the oc...
The tropical Pacific Ocean is a climatically important region, home to El Niño and the Southern Osci...
The relationship between oceanic phytoplankton and climate variability has been given increasing att...
The influence of chlorophyll spatial patterns and variability on the tropical Pacific climate is inv...
The goal of this study is to study the influence of phytoplankton on the tropical Pacific climate. A...
The bio-physical feedback process between the marine ecosystem and the tropical climate system is in...
The influence of phytoplankton on the seasonal cycle and the mean global climate is investigated in ...
This study explores the influence of phytoplankton on the tropical Pacific heat budget. A hybrid cou...
Based on a long-term simulation of an ocean-biogeochemical coupled model, we investigate the biogeoc...
We study the effect of ocean biology on tropical surface temperatures using a simplified coupled atm...
The impacts of natural atmospheric variability and anthropogenic climate change on the spatial distr...
Sea surface temperature (SST) controls surface fluxes of heat and moisture and so helps determine th...
The influence of phytoplankton on the seasonal cycle and the mean global climate is investigated in ...
Marine phytoplankton play a central role in supporting life in the oceans and profoundly affect glob...
Understanding large, slow biological changes in the oceans has been hindered by a lack of spatial co...
International audienceWe examine six different coupled climate model simulations to determine the oc...
The tropical Pacific Ocean is a climatically important region, home to El Niño and the Southern Osci...
The relationship between oceanic phytoplankton and climate variability has been given increasing att...
The influence of chlorophyll spatial patterns and variability on the tropical Pacific climate is inv...
The goal of this study is to study the influence of phytoplankton on the tropical Pacific climate. A...
The bio-physical feedback process between the marine ecosystem and the tropical climate system is in...
The influence of phytoplankton on the seasonal cycle and the mean global climate is investigated in ...
This study explores the influence of phytoplankton on the tropical Pacific heat budget. A hybrid cou...
Based on a long-term simulation of an ocean-biogeochemical coupled model, we investigate the biogeoc...
We study the effect of ocean biology on tropical surface temperatures using a simplified coupled atm...
The impacts of natural atmospheric variability and anthropogenic climate change on the spatial distr...
Sea surface temperature (SST) controls surface fluxes of heat and moisture and so helps determine th...
The influence of phytoplankton on the seasonal cycle and the mean global climate is investigated in ...
Marine phytoplankton play a central role in supporting life in the oceans and profoundly affect glob...
Understanding large, slow biological changes in the oceans has been hindered by a lack of spatial co...
International audienceWe examine six different coupled climate model simulations to determine the oc...
The tropical Pacific Ocean is a climatically important region, home to El Niño and the Southern Osci...
The relationship between oceanic phytoplankton and climate variability has been given increasing att...