On Pacific subtropical cell variability over the second half of the twentieth century

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Abstract

The evolution of the Pacific subtropical cells (STC) is presented for the period 1948-2007. Using oceanmodels of different resolutions forced with interannually varying atmospheric forcing datasets, the mechanisms responsible for the observed STC weakening and late recovery during the period of study are analyzed. As a result of the STC weakening (strengthening), warming (cooling) trends are found in the equatorial Pacific sea surface temperatures (SSTs).Model results agree well with observed estimates of STC transport, STC convergence, and equatorial SST anomalies. It is shown that subtropical atmospheric variability is the primary driver of the STC and equatorial SST low-frequency evolution and is responsible for both the slowdown during the second half of the twentieth century and the rebound at the end of the century. Subtropically forced STC variability is identified as amajor player in the generation of equatorial Pacific decadal SST anomalies, pacing tropical Pacific natural climate variability on interdecadal time scales, as observed in historical records. The natural mode of variability has implications for the evolution of equatorial SST in the coming decades under the concomitant effects of climate change.

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APA

Farneti, R., Dwivedi, S., Kucharski, F., Molteni, F., & Griffies, S. M. (2014). On Pacific subtropical cell variability over the second half of the twentieth century. Journal of Climate, 27(18), 7102–7112. https://doi.org/10.1175/JCLI-D-13-00707.1

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