论文检索
期刊
全部知识仓储预印本开放期刊机构
高级检索

Interdecadal Variations of ENSO Impacts over the Indo-Northwest Pacific Region and the Related MechanismsOACSTPCD

Interdecadal Variations of ENSO Impacts over the Indo-Northwest Pacific Region and the Related Mechanisms

英文摘要

Owing to limited observations,it remains unknown whether the impact of El Niño-Southern Oscillation(ENSO)on the Indian Ocean-Northwest Pacific(IO-NWP)climate showed decadal changes in the early 20th century.Using multi-source reanalysis and hindcast datasets from the ECMWF and NOAA extending back to 1901,this study in-vestigates interdecadal variations of the impact of ENSO on the IO-NWP climate from 1901 to 2009.It is found that the influence of ENSO on the IO-NWP climate shows"strong-weak-strong"interdecadal change during 1901-2009.This is characterized by much weaker Indian Ocean sea surface temperature(SST)warming and a weaker NWP sub-tropical anticyclone(NWPSA)in the following summer of El Nino during 1946-1967,compared with those in the other two periods(1901-1945 and 1968-2009).Analyses of the datasets indicate that the interdecadal variation is mainly associated with the change in ENSO amplitude.In contrast to the period of 1946-1967,a greater SST vari-ance occurred in the central-eastern equatorial Pacific during 1901-1945 and 1968-2009.A stronger El Nino tends to generate more significant anticyclonic anomalies over the southeast Indian Ocean through teleconnection.The northwesterly anomalies to the south of the anticyclone weaken the southeast trade winds and warm the south Indian Ocean SST via wind-evaporation-SST feedback,and the positive south Indian Ocean SST anomalies trigger west-ward-propagating oceanic Rossby waves to induce stronger warming of the southwest Indian Ocean,leading to a sig-nificant asymmetric wind pattern across the equator in spring.The profound northeastward winds on the north side weaken the southwest monsoon,leading to a"second warming"over the north Indian Ocean in summer,which an-chors the eastward-propagating warm Kelvin waves and results in a stronger NWPSA by inducing surface diver-gence and suppressing deep convection.

Hongxia LAN;Jing MA;Haiming XU;Jingjia LUO

Collaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters(CIC-FEMD)/Key Laboratory of Meteorological Dis-aster,Ministry of Education/Joint International Research Laboratory of Climate and Environment Change(KLME/ILCEC),Nanjing University of Information Science & Technology,Nanjing 210044||School of Atmospheric Sciences,Nanjing University of Information Science & Technology,Nanjing 210044

ENSO;Indo-Northwest Pacific;Northwest Pacific subtropical anticyclone;decadal changes

《气象学报(英文版)》 2024 (002)

235-248 / 14

Supported by the National Key Research and Development Program of China(2020YFA0608000)and National Natural Science Foundation of China(42088101 and 42030605).

10.1007/s13351-024-3114-1

评论

下载量:0
点击量:0