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April 10, 2026Geophysical Research Letters0 citationsOpen Access

A Dynamical Model of the Tropical Pacific Zonal SST Gradient Change Under Global Warming

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JYJun YingMWMasahiro Watanabe

Key Points

  • The research aims to understand how tropical Pacific SST responds to global warming through a dynamical model.
  • Developed a dynamical air-sea coupled model for the tropical Pacific.
  • Incorporated mechanisms like evaporative damping and changes in the Walker circulation.
  • Selected parameters to simulate the zonal SST gradient response.
  • The model replicates the observed long-term weakening of the zonal SST gradient.
  • Findings indicate the SST gradient change is influenced by the rate of Walker circulation weakening.
  • The eastern Pacific subsurface warming magnitude also affects the zonal SST gradient.

Abstract

Abstract How the tropical Pacific mean‐state sea surface temperature (SST) responds to global warming is an ongoing heated debate, as climate models are flawed and their projections are opposite to the observed zonal gradient strengthening. Here, we build a dynamical tropical Pacific air–sea coupled model that incorporates three key mechanisms of the forced response, the differential evaporative damping, the Pacific Walker circulation (PWC) weakening, and the ocean thermostat, to better understand how the long‐term zonal SST gradient responds to global warming. By choosing suitable parameters, this model can reproduce the long‐term zonal SST gradient weakening seen in climate models, demonstrating its ability to serve as an emulator. We find the sign and magnitude of the zonal SST gradient change depend strongly on the weakening rate of the PWC and the magnitude of the eastern Pacific subsurface warming, providing physical insights into understanding the diversity of the zonal SST gradient change across climate models.

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Cite This Study

Ying et al. (2026) studied this question.

synapsesocial.com/papers/69d893c96c1944d70ce04bb6https://doi.org/10.1029/2025gl120397
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