Impact of the winter Arctic sea ice anomaly on the following summer tropical cyclone genesis frequency over the western North Pacific

被引:0
|
作者
Shangfeng Chen
Wen Chen
Bin Yu
Liang Wu
Lin Chen
Zhibo Li
Hasi Aru
Jingliang Huangfu
机构
[1] Chinese Academy of Sciences,Center for Monsoon System Research, Institute of Atmospheric Physics
[2] Yunnan University,Department of Atmospheric Sciences
[3] University of Chinese Academy of Sciences,College of Earth and Planetary Sciences
[4] Environment and Climate Change Canada,Climate Research Division
[5] Nanjing University of Information Science and Technology,Key Laboratory of Meteorological Disaster, Ministry of Education/Collaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters
[6] Peking University,Department of Atmospheric and Oceanic Sciences, Laboratory for Climate and Ocean
来源
Climate Dynamics | 2023年 / 61卷
关键词
Arctic sea ice; Tropical Cyclone; Western North Pacific; Atmospheric wave train; Wind-evaporation-SST feedback; Vertical wind shear;
D O I
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中图分类号
学科分类号
摘要
This study examines the impact of the winter Arctic sea ice concentration (ASIC) anomaly on the succedent summer tropical cyclone genesis frequency (TCGF) over the western North Pacific (WNP) and provides a new insight into the underlying physical mechanisms. There is a significant time-lagged relation between winter ASIC anomalies over Greenland-Barents-Kara (GBK) seas and the following summer TCGF over the southeastern part of the WNP. This delayed association is attributable to large-scale circulation anomalies and the air-sea interaction processes over the North Pacific induced by the winter ASIC anomalies. Specifically, a higher winter ASIC over the GBK seas induces an atmospheric wave train that propagates southeastward to the North Pacific. The associated cyclonic anomaly over the mid-latitude North Pacific is accompanied by southwesterly wind anomalies over the subtropics and results in sea surface temperature (SST) warming by reducing upward surface heat fluxes. This SST warming is maintained and further extends southward to the tropical Pacific in the following summer via a wind-evaporation-SST feedback, which in turn forces overlying atmospheric circulation via a Gill-type atmospheric response, including a pair of cyclonic and anticyclonic anomalies in the low- and upper-level troposphere, respectively, over the WNP. These atmospheric anomalies favor TC genesis over the southeastern part of the WNP by decreasing the vertical wind shear and increasing the convection, low-level vorticity and humidity. The above processes apply to the years when lower ASIC winters are followed by decreased TC genesis over the southeastern part of the WNP except for opposite signs of SST and atmospheric circulation anomalies. This study suggests that the winter ASIC anomaly over the GBK seas is a potential predictor for the prediction of the WNP TCGF in the following summer.
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页码:3971 / 3988
页数:17
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