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Distinctive Precursory Air–Sea Signals between Regular and Super El Ni os 被引量:4

Distinctive Precursory Air–Sea Signals between Regular and Super El Ni os
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摘要 Statistically different precursory air–sea signals between a super and a regular El Ni no group are investigated, using observed SST and rainfall data, and oceanic and atmospheric reanalysis data. The El Ni no events during 1958–2008 are first separated into two groups: a super El Ni no group(S-group) and a regular El Ni no group(R-group). Composite analysis shows that a significantly larger SST anomaly(SSTA) tendency appears in S-group than in R-group during the onset phase[April–May(0)], when the positive SSTA is very small. A mixed-layer heat budget analysis indicates that the tendency difference arises primarily from the difference in zonal advective feedback and the associated zonal current anomaly(u).This is attributed to the difference in the thermocline depth anomaly(D) over the off-equatorial western Pacific prior to the onset phase, as revealed by three ocean assimilation products. Such a difference in D is caused by the difference in the wind stress curl anomaly in situ, which is mainly regulated by the anomalous SST and precipitation over the Maritime Continent and equatorial Pacific. Statistically different precursory air–sea signals between a super and a regular El Ni no group are investigated, using observed SST and rainfall data, and oceanic and atmospheric reanalysis data. The El Ni no events during 1958–2008 are first separated into two groups: a super El Ni no group(S-group) and a regular El Ni no group(R-group). Composite analysis shows that a significantly larger SST anomaly(SSTA) tendency appears in S-group than in R-group during the onset phase[April–May(0)], when the positive SSTA is very small. A mixed-layer heat budget analysis indicates that the tendency difference arises primarily from the difference in zonal advective feedback and the associated zonal current anomaly(u).This is attributed to the difference in the thermocline depth anomaly(D) over the off-equatorial western Pacific prior to the onset phase, as revealed by three ocean assimilation products. Such a difference in D is caused by the difference in the wind stress curl anomaly in situ, which is mainly regulated by the anomalous SST and precipitation over the Maritime Continent and equatorial Pacific.
出处 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2016年第8期996-1004,共9页 大气科学进展(英文版)
基金 jointly supported by the China National 973 Project(Grant No.2015CB453200) a Jiangsu Province project(Grant No.BK20150062) the NSFC(Grant Nos.41475084 41376002 and 41530426) the ONR(Grant No.N00014-16-12260) the International Pacific Research Center sponsored by JAMSTEC
关键词 super El Ni no precursory air–sea signals thermocline depth anomaly ENSO super El Ni no precursory air–sea signals thermocline depth anomaly ENSO
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  • 1郑飞,朱江,Rong-Hua ZHANG,周广庆.Improved ENSO Forecasts by Assimilating Sea Surface Temperature Observations into an Intermediate Coupled Model[J].Advances in Atmospheric Sciences,2006,23(4):615-624. 被引量:17
  • 2王竹溪,特殊函数概论,1979年
  • 3Toshio Yamagata.On the recent development of simple, coupled ocean-atmosphere models of ENSO[J]. Journal of the Oceanographical Society of Japan . 1986 (4)
  • 4Bhalme,H. N. and S. K.Jadhav (1984) , The southern oscillation and its relation to the monsoon rainfall, J. Journal of Climatology .
  • 5Rasmusson,E. M. and T. H.Carpenter (1983) , The relationship between eastern equatorial Pacific sea surface temperatures and rainfall over India and SriLanka. Monthly Weather Review .
  • 6Lau. K. M. and P. H.Chan (1986) , The 40-50 day oscillation and the El Nino / Southern Oscillation: A new perspective, Bull.Amer. Journal of the Meteorological Society of Japan .
  • 7Lau. K. M. and P. H.Chan (1988) , Interannual and intraseasonal variations of tropical convection, A possible link between the 30-50 day oscillation and ENSO, J. Atmospheric Science .
  • 8Dr. G. B. Pant,Shri B. Parthasarathy.Some aspects of an association between the southern oscillation and indian summer monsoon[J]. Archives for Meteorology, Geophysics, and Bioclimatology Series B . 1981 (3)
  • 9WANG Lu,YANG Haijun.The Role of Atmospheric Teleconnection in the Subtropical Thermal Forcing on the Equatorial Pacific[J].Advances in Atmospheric Sciences,2014,31(4):985-994. 被引量:1

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