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Impact of chlorophyll bias on the tropical Pacific mean climate in an earth system model

  • Hyung Gyu Lim
  • , Jong Yeon Park
  • , Jong Seong Kug*
  • *Corresponding author for this work
  • Pohang University of Science and Technology
  • Princeton University
  • National Oceanic and Atmospheric Administration

Research output: Contribution to journalJournal articlepeer-review

Abstract

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 biologically-induced cold SST bias is strongly affected by seasonally-dependent air–sea coupling strength. In addition, the correction of chlorophyll bias can improve the annual cycle of SST by up to 25%. This result suggests a possible modeling approach in understanding the two-way interactions between physical and chlorophyll biases by biogeophysical effects.

Original languageEnglish
Pages (from-to)2681-2694
Number of pages14
JournalClimate Dynamics
Volume51
Issue number7-8
DOIs
StatePublished - 2018.10.1

Keywords

  • Air–sea coupling
  • Biogeochemical model
  • Biogeophysical feedback
  • Climate model bias
  • CMIP5
  • GFDL-ESM
  • Phytoplankton

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