Remote effect of tropical south Atlantic sea surface temperature anomalies on April–June accumulated cyclone energy over the western North Pacific

IF 2.5 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Environmental Research Communications Pub Date : 2024-07-12 DOI:10.1088/2515-7620/ad62c5
Jinjie Song, P. Klotzbach, Na Wei, Yihong Duan
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Abstract

Global processes and their teleconnections, such as the El Niño-Southern Oscillation (ENSO), have been shown to be a large driver of interannual changes in accumulated cyclone energy (ACE) of western North Pacific (WNP) tropical cyclones (TCs), with higher ACE during El Niño and lower ACE during La Niña. However, it remains uncertain whether interannual changes in WNP TC ACE are modulated by sea surface temperature anomalies (SSTAs) in other oceans. This study finds a significant negative correlation between WNP TC ACE during the early season (April–June) and simultaneous SSTAs over the tropical south Atlantic (TSA) in 1970–2021. On average, in warm TSA years, basinwide April–June ACE is significantly lower, with significant ACE decreases mainly occurring over the region spanning 5°–30°N, 115°–150°E. This is a result of reduced TC frequency, intensity and duration, due to a remote modulation of WNP environmental conditions by TSA SSTAs. In warm TSA years, there are significant decreases in 700–500-hPa relative humidity, 850-hPa relative vorticity and 200-hPa divergence and significant increases in 850–200-hPa vertical wind shear over the portion of the WNP with significant ACE reductions. These environmental changes can be linked to an anomalous Walker circulation induced by TSA SSTAs.
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热带南大西洋海面温度异常对北太平洋西部 4-6 月累积气旋能量的远程影响
厄尔尼诺-南方涛动(ENSO)等全球过程及其远缘联系已被证明是北太平洋西部热带气旋累积气旋能量(ACE)年际变化的主要驱动因素,厄尔尼诺期间 ACE 较高,而拉尼娜期间 ACE 较低。然而,WNP 热带气旋 ACE 的年际变化是否受其他大洋海面温度异常(SSTA)的调节仍不确定。本研究发现,1970-2021 年期间,初季(4 月至 6 月)的 WNP 热带气旋环流与热带南大西洋(TSA)上同时出现的 SSTA 之间存在明显的负相关。平均而言,在温暖的 TSA 年,全流域 4-6 月的 ACE 显著降低,ACE 的显著降低主要发生在北纬 5°-30°、东经 115°-150°的区域。这是由于 TSA SSTA 对 WNP 环境条件的远距离调节,导致热带气旋频率、强度和持续时间减少的结果。在暖TSA年,700-500 hPa相对湿度、850 hPa相对涡度和200 hPa辐散显著下降,在ACE显著减少的部分WNP上空,850-200 hPa垂直风切变显著增加。这些环境变化可能与 TSA SSTA 引发的异常沃克环流有关。
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来源期刊
Environmental Research Communications
Environmental Research Communications ENVIRONMENTAL SCIENCES-
CiteScore
3.50
自引率
0.00%
发文量
136
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