2014-2021 年俄勒冈州中部近海表层下温度异常现象

IF 3.3 2区 地球科学 Q1 OCEANOGRAPHY Journal of Geophysical Research-Oceans Pub Date : 2024-10-06 DOI:10.1029/2023JC020565
Brandy T. Cervantes, Melanie R. Fewings, Craig M. Risien
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引用次数: 0

摘要

我们利用 1999 年至 2021 年沿历史纽波特水文线在 NH-10 站点 80 米水深的系泊观测数据,计算表层、近表层和底层的水温异常。分析重点是 2014-2016 年和 2019-2020 年大陆架和斜坡海洋热浪(MHW)的次表层时空特征。2014-2016 年秋冬季,当风主要为下沉风时,暖异常现象遍及整个水体,而 2019-2020 年期间,大陆架上的夏秋季异常现象较浅。2016 年末底层 MHW 期间的持续温度异常是 NH-10 时间序列中最大的。对 MHW 和非 MHW 期间风压时间模式的分析表明,上升流有利风的出现会打断暖事件。累积上升流指数和年度春季过渡日期显示,2014 年的春季过渡异常晚,自 1967 年有上升流指数记录以来,只有 5 年的春季过渡较晚。相比之下,2015 年和 2019 年的春季过渡接近气候学平均值 4 月 15 日。在 2016 年和 2020 年,当春季过渡较早后累积上升流减少时,会出现异常变暖现象。
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Subsurface Temperature Anomalies Off Central Oregon During 2014–2021

We use moored observations in 80 m water depth at the NH-10 site along the historic Newport Hydrographic Line from 1999 to 2021 to calculate water temperature anomalies at the surface, near surface, and bottom. Analysis is focused on the subsurface temporal and spatial characteristics of marine heatwaves (MHWs) during 2014–2016 and 2019–2020 on the continental shelf and slope. Warm anomalies extend throughout the water column in fall/winter 2014–2016 when winds are predominantly downwelling-favorable, while the 2019–2020 period is characterized by shallower summer and fall anomalies on the shelf. Sustained temperature anomalies during the bottom MHW in late 2016 are the largest in the NH-10 time series. Analysis of temporal patterns in wind stress during MHW and non-MHW periods shows the onset of upwelling-favorable winds interrupts warm events. Indices of cumulative upwelling and annual spring transition dates reveal the spring transition was unusually late in 2014, with only five years with later spring transitions since the upwelling index record began in 1967. In 2015 and 2019, in contrast, spring transition is close to the climatological mean of April 15. In 2016 and 2020, anomalous warming is observed when cumulative upwelling decreases after an early spring transition.

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来源期刊
Journal of Geophysical Research-Oceans
Journal of Geophysical Research-Oceans Earth and Planetary Sciences-Oceanography
CiteScore
7.00
自引率
13.90%
发文量
429
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