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A Climatological Perspective on Extratropical Synoptic-Scale Transient Eddy Activity Response to Western Pacific Tropical Cyclones
作者姓名:Yao HA  Zhong ZHONG  Haikun ZHAO  Yimin ZHU  Yao YAO  Yijia HU
作者单位:College of Meteorology and Oceanography;Jiangsu Collaborative Innovation Center for Climate Change and School of Atmospheric Sciences;Key Laboratory of Meteorological Disaster of Ministry of Education
基金项目:sponsored jointly by the National Key Basic Research Program(2018YFC1505905);National Natural Science Foundation of China(Grant Nos.41975090,41922033,41675077,and 42005025);Scientific Research Program of National University of Defense Technology(18/19-QNCXJ);the Jiangsu Collaborative Innovation Center for Climate Change in Nanjing University;the Jiangsu Collaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters。
摘    要:An observational study focusing on the contribution of tropical cyclones(TCs)that form over the western North Pacific(WNP)to the synoptic-scale transient eddy activity(STEA)over the North Pacific during the boreal autumn and early winter in the period 1979–2019 is presented in this paper.Statistical results show that WNP TCs entering the midlatitudinal North Pacific provide significant positive effects on the pentad mean strength of STEA,which is primarily concentrated over the Kuroshio/Oyashio Extensions(KOE)and regions from east of Japan to 160°W in the lower and midto-upper troposphere,respectively.TC intensity is highly indicative of the subsequent STEA with a correlation coefficient of 0.37/0.33/0.45 at 300 hPa/500 hPa/850 hPa exceeding the 99%confidence level for the period 1979–2019.The strength of STEA in the upper troposphere associated with TCs presents a more significant linear growth with TC intensity than that at the mid-to-lower levels after the cyclones enter the KOE region,suggesting that the impact of TCs on STEA gradually increases with height.Further analyses reveal that the contribution of TCs accounts for 4%–6%of the total STEA change over the KOE region during the late autumn and early winter.In addition,the influence of TCs on STEA experienced an interdecadal decrease from the early 2000 s through the early 2010 s.

关 键 词:Synoptic-scale  transient  eddy  activity  tropical  cyclone  North  Pacific  Kuroshio/Oyashio  Extensions  mid-latitudinal  atmospheric  motion

A Climatological Perspective on Extratropical Synoptic-Scale Transient Eddy Activity Response to Western Pacific Tropical Cyclones
Yao HA,Zhong ZHONG,Haikun ZHAO,Yimin ZHU,Yao YAO,Yijia HU.A Climatological Perspective on Extratropical Synoptic-Scale Transient Eddy Activity Response to Western Pacific Tropical Cyclones[J].Advances in Atmospheric Sciences,2022,39(2):333-343.
Authors:Yao HA  Zhong ZHONG  Haikun ZHAO  Yimin ZHU  Yao YAO  Yijia HU
Abstract:An observational study focusing on the contribution of tropical cyclones (TCs) that form over the western North Pacific (WNP) to the synoptic-scale transient eddy activity (STEA) over the North Pacific during the boreal autumn and early winter in the period 1979–2019 is presented in this paper. Statistical results show that WNP TCs entering the mid-latitudinal North Pacific provide significant positive effects on the pentad mean strength of STEA, which is primarily concentrated over the Kuroshio/Oyashio Extensions (KOE) and regions from east of Japan to 160°W in the lower and mid-to-upper troposphere, respectively. TC intensity is highly indicative of the subsequent STEA with a correlation coefficient of 0.37/0.33/0.45 at 300 hPa/500 hPa/850 hPa exceeding the 99% confidence level for the period 1979–2019. The strength of STEA in the upper troposphere associated with TCs presents a more significant linear growth with TC intensity than that at the mid-to-lower levels after the cyclones enter the KOE region, suggesting that the impact of TCs on STEA gradually increases with height. Further analyses reveal that the contribution of TCs accounts for 4%–6% of the total STEA change over the KOE region during the late autumn and early winter. In addition, the influence of TCs on STEA experienced an interdecadal decrease from the early 2000s through the early 2010s.
Keywords:Synoptic-scale transient eddy activity  tropical cyclone  North Pacific  Kuroshio/Oyashio Extensions  mid-latitudinal atmospheric motion
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