Different Modulations of Arctic Oscillation on Wintertime Sea Surface Temperature Anomalies in the Northeast Pacific

IF 3.8 2区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of Geophysical Research: Atmospheres Pub Date : 2024-09-26 DOI:10.1029/2024JD041360
Jiajie Chen, Ronglin Li, Jiongren Mao, Weihao Yu, Shen Xie, Jiaqi Wei, Hao Huang, Qinyu Liu, Jian Shi
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Abstract

Persistent positive sea surface temperature anomalies (SSTAs) in the mid-latitude Northeast Pacific (NEP), also known as “warm blob” or “marine heatwave,” have substantial ecological and climate effects. This study delves into the spatiotemporal connection between Arctic Oscillation (AO) and SSTAs in the NEP. First, we conduct the lead-lag correlation and maximum covariance analyses to disentangle the closest temporal relationship between October AO and wintertime SSTAs in the NEP. Then, we categorize the years in positive AO (pAO) phase into two groups: positive AO with warm anomaly (pAO&Blob) group and positive AO without warm anomaly (pAO&noBlob) group based on the October AO index and wintertime blob index. Results show that the positive phase of AO in October strongly influences the wintertime warm SSTAs in the NEP through local and remote pathways. The local pathway is contingent upon the longitudinal positioning of AO-related high-pressure anomaly (i.e., anomalous ridge) in the North Pacific. When easterly anomalies prevail at the southern flank of the anomalous ridge over the NEP, they foster warm SSTAs in the NEP. However, different locations of the high-pressure anomalies may impede the NEP warming. Remote pathways indicate the teleconnections triggered by AO-related precipitation increase in Greenland and decrease in East Asia, sustaining the high-pressure anomaly and promoting the anomalous NEP warming. Hence, this study presents new evidence on polar and mid-latitude climate connections, which may provide potential predictability for the warm SSTAs in the NEP.

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北极涛动对东北太平洋冬季海面温度异常的不同影响
中纬度东北太平洋(NEP)持续的正海面温度异常(SSTA)又称 "暖球 "或 "海洋热浪",对生态和气候有重大影响。本研究深入探讨了北极涛动(AO)与东北太平洋 SSTA 之间的时空联系。首先,我们进行了前导-滞后相关分析和最大协方差分析,以厘清 10 月北极涛动与东北太平洋冬季 SSTA 之间最密切的时空关系。然后,根据 10 月 AO 指数和冬季 Blob 指数,将 AO 正相位(pAO)年份分为两组:有暖异常的 AO 正相位(pAO&Blob)组和无暖异常的 AO 正相位(pAO&noBlob)组。结果表明,10 月份的正相位 AO 通过本地和远距离途径强烈影响了 NEP 的冬季暖 SSTA。本地路径取决于北太平洋与 AO 相关的高压异常(即异常脊)的纵向定位。当北太平洋异常海脊南侧盛行偏东异常时,就会在北太平洋形成暖的 SSTA。然而,高压异常的不同位置可能会阻碍北太平洋暖化。远程路径表明,与 AO 相关的格陵兰降水增加和东亚降水减少所引发的远程联系,维持了高压异常并促进了北太平洋异常增暖。因此,本研究提供了极地和中纬度气候联系的新证据,这可能为国家环保局的暖 SSTA 提供了潜在的可预测性。
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来源期刊
Journal of Geophysical Research: Atmospheres
Journal of Geophysical Research: Atmospheres Earth and Planetary Sciences-Geophysics
CiteScore
7.30
自引率
11.40%
发文量
684
期刊介绍: JGR: Atmospheres publishes articles that advance and improve understanding of atmospheric properties and processes, including the interaction of the atmosphere with other components of the Earth system.
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