Mechanisms of tropical Pacific decadal variability

气候学 温跃层 罗斯比波 太平洋十年振荡 遥相关 海面温度 地质学 热带大西洋 亚热带 海洋学 环境科学 厄尔尼诺南方涛动 生物 渔业
作者
Antonietta Capotondi,Shayne McGregor,Michael J. McPhaden,Sophie Cravatte,Neil J. Holbrook,Yukiko Imada,Sara C. Sanchez,Janet Sprintall,Malte F. Stuecker,Caroline C. Ummenhofer,Mathias Zeller,Riccardo Farneti,Giorgio Graffino,Shijian Hu,Kristopher B. Karnauskas,Yu Kosaka,Fred Kucharski,Michael Mayer,Bo Qiu,Agus Santoso,Andréa S. Taschetto,Fan Wang,Xuebin Zhang,Ryan M. Holmes,Jing‐Jia Luo,Nicola Maher,Cristian Martínez-Villalobos,Gerald A. Meehl,Rajashree Naha,Niklas Schneider,Samantha Stevenson,Arnold Sullivan,Peter van Rensch,Tongtong Xu
出处
期刊:Nature Reviews Earth & Environment [Nature Portfolio]
卷期号:4 (11): 754-769 被引量:16
标识
DOI:10.1038/s43017-023-00486-x
摘要

Naturally occurring tropical Pacific variations at timescales of 7–70 years — tropical Pacific decadal variability (TPDV) — describe basin-scale sea surface temperature (SST), sea-level pressure and heat content anomalies. Several mechanisms are proposed to explain TPDV, which can originate through oceanic processes, atmospheric processes or as an El Niño/Southern Oscillation (ENSO) residual. In this Review, we synthesize knowledge of these mechanisms, their characteristics and contribution to TPDV. Oceanic processes include off-equatorial Rossby waves, which mediate oceanic adjustment and contribute to variations in equatorial thermocline depth and SST; variations in the strength of the shallow upper-ocean overturning circulation, which exhibit a large anti-correlation with equatorial Pacific SST at interannual and decadal timescales; and the propagation of salinity-compensated temperature (spiciness) anomalies from the subtropics to the equatorial thermocline. Atmospheric processes include midlatitude internal variability leading to tropical and subtropical wind anomalies, which result in equatorial SST anomalies and feedbacks that enhance persistence; and atmospheric teleconnections from Atlantic and Indian Ocean SST variability, which induce winds conducive to decadal anomalies of the opposite sign in the Pacific. Although uncertain, the tropical adjustment through Rossby wave activity is likely a dominant mechanism. A deeper understanding of the origin and spectral characteristics of TPDV-related winds is a key priority. Several mechanisms have been put forward to explain tropical Pacific decadal variability, the contributions of which are debated. This Review outlines the different drivers of tropical Pacific decadal variability, summarizing that tropical pycnocline adjustment to wind forcing and Rossby wave activity is likely the dominant mechanism, albeit with uncertainty.
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