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1.
热带太平洋西风异常对ENSO事件发生的作用   总被引:6,自引:5,他引:6  
傅云飞  黄荣辉 《大气科学》1996,20(6):641-654
本文从观测资料对80年代两次ENSO事件产生过程中,热带太平洋西风异常及其对赤道中、东太平洋表层海温增暖的作用进行了分析和比较。分析结果表明:在这两次ENSO事件的产生过程中,赤道西太平洋上空均有较大的西风异常,并且它由赤道西太平洋向赤道中、东太平洋传播,随着西风异常从西向东传播,赤道中、东太平洋的表层相继增温。分析还表明,1982/1983年ENSO事件发生过程中,热带太平洋西风异常的强度要比1986/1987年热带太平洋西风异常强得多,这使得1982/1983 ENSO事件的强度比1986/1987_ENSO事件强得多。为了说明热带西太平洋西风异常对赤道中、东太平洋ENSO事件发生的作用,本文还利用IAP太平洋环流模式对西风异常在ENSO事件产生过程中的作用进行了数值模拟。模拟的结果说明了热带太平洋的西风异常对赤道太平洋暖水的向东传播和赤道中、东太平洋的增温起了很重要作用,这与观测事实分析一致。  相似文献   

2.
利用NCEP/NCAR逐日风场及英国气象局逐月海表温度资料,研究了对流层高低层风场季内振荡强度季节变化特征,探讨了其年际及年代际异常特征与海表温度异常的关系。热带印度洋、热带西太平洋是高低层风场季内振荡终年均活跃的区域。对流层高低层风场季内振荡强度异常与海表温度异常均不存在确定的局地关系。风场季内振荡能量异常与海表温度异常在年代际尺度上具有良好对应关系,20世纪70年代中后期以来,赤道东太平洋海温异常升高,Walker环流减弱,导致亚洲区域季风季内振荡强度减弱,赤道太平洋区域200hPa(850hPa)风场季内振荡在赤道东太平洋增强(减弱),在印度洋东南部—印尼—中西太平洋的暖池区域减弱(增强),促进了ElNino事件的增强。对流层高低层风场季内振荡强度年际异常与ElNino事件关系密切,这一特征在低层(850hPa)风场表现更显著。在事件发展初期,热带中西太平洋区域850hPa风场季内振荡异常增强并东移,事件发生之后这些区域能量减弱。大气季内振荡可能是ElNino事件的激发因素。  相似文献   

3.
傅云飞  黄荣辉 《大气科学》1997,21(4):485-492
本文通过观测资料分析和数值模拟,对80年代两次ENSO事件产生过程中,东亚西风异常活动对热带西太平洋西风爆发及ENSO发生的作用进行了研究。资料分析结果表明,热带西太平洋低层西风异常的发生,与东亚低层西风异常向南向东传播有关。数值模拟结果表明,东亚低层西风异常向南向东传播至赤道附近,然后继续向东传播,可以在赤道中、东太平洋产生El Ni?o现象。相关分析结果表明,东亚西风异常向南传播过程中,欧亚大陆有欧亚遥相关环流形势与之配合,使得赤道西太平洋西风异常猛烈发展,并且随着西风异常东传,从而造成强的 El Ni?o 事件发生。  相似文献   

4.
近几年来我国学者在对ENSO循环机理方面提出了一些新看法.研究表明,ENSO实质上是主要由东亚季风异常引起的赤道西太平洋异常纬向风所驱动的热带太平洋次表层海温异常的年际循环.ENSO的真正源在西太平洋暖池,暖池正(负)SOTA沿赤道温跃层(斜温层)东传到东太平洋,便导致ElNino/La Nina的爆发;在暖池正(负)SOTA沿赤道温跃层东传的同时,有负(正)SOTA沿10°N和10°S纬度带向西传播,从而构成SOTA的循环;而热带太平洋SOTA循环的驱动者是赤道西太平洋的异常纬向风.ENSO事件的发生,往往引起全球大气环流和世界许多地区的气候异常,导致一些国家和地区多雨洪涝,另外一些国家和地区高温少雨和严重干旱.  相似文献   

5.
第一部分(Zhang et al.,2001)的资料分析表明,El Nino事件发生之前在赤道中东太平洋存在着显著的异常经向风应力辐合.为了分析这种超前的辐合经向风应力距平在其后的ElNino事件发生中的动力作用,本文利用简单热带海洋动力学模式,从动力学上研究了热带海洋对关于赤道辐合的理想经向风应力强迫的响应,指出赤道东太平洋出现在El Nino事件之前的辐合经向风应力异常有利于El Nino事件的发生.辐合的经向风应力强迫作用于热带海洋,会激发出西传的Rossby波,使得赤道附近的海洋混合层变厚.由于耗散的影响,最大的增厚区位于强迫区域.当这个强迫作用于赤道东太平洋时,这将有利于E1 Nino事件发生;另一方面,Rossby波响应在赤道及其附近使得表层海水向西流动,中东太平洋表层水的不断向西输送有利于表层水在西太平洋堆积,为后来暖事件的发生累积能量.  相似文献   

6.
采用1948—2012年NCEP/NCAR月平均再分析资料和CAM3.0大气环流模式,探讨了南亚高压(SAH)强度年代际变化及其与热带、副热带海温的关系。 (1) SAH呈显著年代际变化,以1970年代末期为界,之前强度偏弱;之后强度增强、面积扩大、东西扩展,冬季西侧扩展程度大于东侧,夏季则相反。(2) 与SAH强度年代际变化相对应,1970年代末期以后,热带、副热带辐散风分量表现为显著的两个上升区和三个下沉区。两个上升区一个位于东太平洋,另一个随季节变化位置有所改变,冬季位于印度洋,夏季位于南海-西太平洋海域;三个主要下沉区分别位于非洲中北部、亚洲东部和中太平洋地区。(3) 与SAH强度年代际变化相对应,夏季低层涡旋风分量在南海-西太平洋地区表现为异常气旋性环流,冬季低层涡旋风分量在印度洋表现为异常气旋性环流,而在赤道中太平洋则呈现异常反气旋性环流。(4) 数值试验表明:SAH年代际变化与热带、副热带海温关系密切,冬季印度洋海温起作用较大,夏季则是南海-西太平洋海温起作用较大,另外东太平洋海温也起了一定作用。  相似文献   

7.
根据实际应用中统计预报对相关系数的基本要求,利用相关分析探讨了用赤道东太平洋海温预测西太平洋热带气旋年际变化的可行性。同时,利用谱分析方法探讨了这种预报的有效性和局限性。主要结论是:用区域(5°N—5°S,90—150°W)的平均海温预测西太平洋热带气旋的年际变化,效果比使用赤道东太平洋海温好,用前者可预测西太平洋中区各类热带气旋的年际变化,用后者只能预测西太平洋全区及中区热带气旋总体的年际变化,对达到热带风暴或台风的热带气旋的年际变化则分别是勉强能或不能预测;用赤道东太平洋海温无法预测南海热带气旋的年际变化;用赤道东太平洋海温预测西太平洋热带气旋活动实际上只对年际变化中的ENSO(3—5年)周期及准二年周期有效。  相似文献   

8.
根据实际应用中统计预报对相关系数的基本要求,利用相关分析探讨了用赤道东太平洋海温预测西太平洋热带气旋年际变化的可行性。同时,利用谱分析方法探讨了这种预报的有效性和局限性。主要结论是:用区域(5°N—5°S,90—150°W)的平均海温预测西太平洋热带气旋的年际变化,效果比使用赤道东太平洋海温好,用前者可预测西太平洋中区各类热带气旋的年际变化,用后者只能预测西太平洋全区及中区热带气旋总体的年际变化,对达到热带风暴或台风的热带气旋的年际变化则分别是勉强能或不能预测;用赤道东太平洋海温无法预测南海热带气旋的年际变化;用赤道东太平洋海温预测西太平洋热带气旋活动实际上只对年际变化中的ENSO(3—5年)周期及准二年周期有效。  相似文献   

9.
关于ENSO本质的进一步研究   总被引:28,自引:5,他引:23  
基于ENSO是热带太平洋海气相互作用产物的科学观点,一系列的分析研究表明:赤道太平洋次表层海温异常(SOTA)有明显的年际变化(循环),并且与ENSO发生密切相关;ENSO的真正源区在赤道西太平洋暖池,赤道西太平洋暖池正(负)SOTA沿赤道温跃层东传到东太平洋,导致El Nino(La Nina)的爆发;在暖池正(负)SOTA沿赤道温跃层东传的同时,将有负(正)SOTA沿10°N和10°S两个纬度带向西传播,从而构成SOTA的循环;热带太平洋SOTA年际循环的驱动者主要是由异常东亚季风所引起的赤道西太平洋纬向风的异常.进而,可以提出关于ENSO本质的一种新理论,即ENSO实质上主要是由异常东亚季风引起的赤道西太平洋异常纬向风所驱动的热带太平洋次表层海温距平的年际循环.    相似文献   

10.
利用1964~1993年NCEP/NCAR再分析风应力资料和中国科学院大气物理研究所发展的14层热带太平洋环流模式(OGCM),对热带太平洋与El Ni~no有关的年际变化进行了研究。首先,分析了西太平洋暖池次表层海温异常(SOTA)与Ni~no 3区海表温度异常(SSTA)的年际变化关系,发现在El Ni~no事件之前,暖池的次表层海温都有明显正异常出现,它的东传导致了El Ni~no的发生,并且SOTA的传播随纬度变化,沿赤道东传,在赤道外西传。然后,选取了20世纪70年代和80年代两次最强的El Ni~no事件讨论了引起这种机制的可能原因———西风异常的作用。最后,对1964~1993所有的El Ni~no年的风场、次表层海温和海表温度的异常进行了综合分析。  相似文献   

11.
Complex Singular Value Decomposition(CSVD)analysis technique was applied to study theQuasi Four year Oscillation(QFO)of air sea interaction and its coupled pattern evolution duringdifferent phases.Results show that:(1)CSVD method can better reveal phase relation betweentwo physical fields:(2)Not only northerly anomalies from Northern Hemisphere but alsosoutherly anomalies from Southern Hemisphere contribute to EI Nino.They converge in westernequatorial Pacific,leading to outburst of strong equatorial westerly anomalies,and result in strongEl Nino event onset:(3)An abnormal subtropical anticyclone circulation appears overnorthwestern Pacific while El Nino developing.It favors transitions from the warm SST(EINino)to the cold SST(La Nina),just as the tropical westerly anomalies produced by abnormalcyclone during a decaying La Nina.which encourage the development of El Nino:(4)Thewesterly anomalies in equatorial Pacific are mainly induced by eastward abnormal subtropicalcyclone pairs,which are located in north and south Pacific respectively,and are not the eastwardwesterly anomalies from equatorial Indian Ocean.  相似文献   

12.
Complex Singular Value Decomposition(CSVD)analysis technique was applied to study the Quasi Four year Oscillation(QFO)of air sea interaction and its coupled pattern evolution during different phases.Results show that:(1)CSVD method can better reveal phase relation between two physical fields:(2)Not only northerly anomalies from Northern Hemisphere but also southerly anomalies from Southern Hemisphere contribute to EI Nino.They converge in western equatorial Pacific,leading to outburst of strong equatorial westerly anomalies,and result in strong El Nino event onset:(3)An abnormal subtropical anticyclone circulation appears over northwestern Pacific while El Nino developing.It favors transitions from the warm SST(EINino)to the cold SST(La Nina),just as the tropical westerly anomalies produced by abnormal cyclone during a decaying La Nina.which encourage the development of El Nino:(4)The westerly anomalies in equatorial Pacific are mainly induced by eastward abnormal subtropical cyclone pairs,which are located in north and south Pacific respectively,and are not the eastward westerly anomalies from equatorial Indian Ocean.  相似文献   

13.
大气季节内振荡的活动与El Nino   总被引:13,自引:1,他引:13  
用广东省47个测站1954-1990年各月的平均气温、降水、日照时数的标准化资料分别作按时间点分解的主分量分析,取其前6个主分量作为各测站的气候特征量,用相关系数-重心法作聚类分析,作出各月、全年综合要素的气候分区。结果表明:(1)将广东各月分为有较显著差异的5个区,则冬半年(10-翌年4月)各月的分区形式较类似且规律性明显,夏半年(5-9月)各月的分区逐月变化明显,且分区形式差别较大。(2)若用6个自然季节的平均气温、降水、日照时数标准化资料分别作主分量分析,各取前3个主分量作为全年气候分区的特征量,则广东全年的气候区可分为东南沿海、西南沿海、西北内陆3个区。  相似文献   

14.
应用NMC 17年热带格点风及OLR资料,对比分析了厄尼诺年与反厄尼诺年热带环流的差异,发现厄尼诺现象使多年平均位于西太平洋上的最强盛的对流加热区东移到中太平洋,太平洋热带地区东西向对流加热梯度减弱,造成中东太平洋上的Walker环流及西太平洋与印度洋上的反Walker环流场比常年减弱;同时,厄尼诺现象也使中东太平洋地区经向反Hadley环流及美洲大陆上空的Hadley环流减弱。  相似文献   

15.
The mechanism of the locking of the E1 Nino event onset phase to boreal spring (from April to June) in an intermediate coupled ocean-atmosphere model is investigated. The results show that the seasonal variation of the zonal wind anomaly over the equatorial Pacific associated with the seasonal variation of the ITCZ is the mechanism of the locking in the model. From January to March of the E1 Nino year, the western wind anomaly over the western equatorial Pacific can excite the downwelling Kelvin wave that propagates eastward to the eastern and middle Pacific by April to June. From April to December of the year before the E1 Nifio year, the eastern wind anomaly over the equatorial Pacific forces the downwelling Rossby waves that modulate the ENSO cycle. The modulation and the reflection at the western boundary modulate the time of the transition from the cool to the warm phase to September of the year before the E1 Nifio year and cause the strongest downwelling Kelvin wave from the reflected Rossby waves at the western boundary to arrive in the middle and eastern equatorial Pacific by April to June of the E1 Nino year. The superposition of these two kinds of downwelling Kelvin waves causes the El Nino event to tend to occur from April to June.  相似文献   

16.
1. Introduction The observed facts show that the ENSO cycle has obvious phase-locking and oscillates irregularly (An and Wang, 2001; Kaplan et al., 1998). Based on Zibiak and Cane's (1987) model (hereafter, the Z-C model) and simple, coupled ocean-atmosph…  相似文献   

17.
两类ENSO事件前期的热带太平洋海温距平场   总被引:7,自引:2,他引:7  
分析了1956年以来两类ENSO事件热带太平洋海温距平场的特征。结果指出,东部型ElNino事件前期为LaNina事件年,热带中东太平洋为强的海温负距平,东部型LaNina事件前期为ElNino事件年,热带中不太平洋为强的海温正距平,中部型ElNino事件前期热带中西太平洋多为明显的海温正距平,中部型LaNina事件前期热带东太平洋多为明显的海渐负距平。两类ENSO事件前期海温距平场特殊基本相反。  相似文献   

18.
B. Wang  S. An 《Climate Dynamics》2002,18(6):475-486
This study explains why a number of El Nino properties (period, amplitude, structure, and propagation) have changed in a coherent manner since the late 1970s and why these changes had almost concurred with the Pacific decadal climate shift. Evidence is presented to show that from the pre-shift (1961-1975) to the post-shift (1981-1995) epoch, significant changes in the tropical Pacific are found in the surface winds and temperature, whereas changes in the thermocline are uncertain. Numerical experiments with the Cane and Zebiak model demonstrate that the decadal changes in the surface winds qualitatively reproduce the observed coherent changes in El Nino properties. The fundamental factor that altered the model's El Nino is the decadal changes of the background equatorial winds and associated upwelling. The annual cycle is also necessary for the mean state to modulate El Nino. From the pre- to post-shift epoch, the changes in the background winds and upwelling modify the structure of the coupled mode (eastward displacement of the equatorial westerly anomalies) by reallocating anomalous atmospheric heating and SST gradient along the equator. This structural change amplifies the ENSO cycle and prolongs the oscillation period by enhancing the coupled instability and delaying transitions from a warm to a cold state or vice versa. The changes in the mean currents and upwelling reduce the effect of the zonal temperature advection while enhance that of the vertical advection; thus, the prevailing westward propagation is replaced by eastward propagation or standing oscillation. Our results suggest a critical role of the atmospheric bridge that rapidly conveys the influences of extratropical decadal variations to the tropics, and the possibility that the Pacific climate shift might have affected El Nino properties in the late 1970s by changing the background tropical winds and the associated equatorial upwelling.  相似文献   

19.
In the summers of 2003 and 2007, eastern China suffered similar climate disasters with severe flooding in the Huaihe River valley and heat waves in the southern Yangtze River delta and South China. Using SST data and outgoing longwave radiation (OLR) data from NOAA along with reanalysis data from NCEP/NCAR, the 2002/03 and 2006/07 El Nino episodes in the central Pacific and their delayed impacts on the following early summertime climate anomalies of eastern China were analyzed. The possible physical progresses behaved as follows: Both of the moderate El Nino episodes matured in the central equatorial Pacific during the early winter. The zonal wind anomalies near the sea surface of the west-central equatorial Pacific excited equatorial Kelvin waves propagating eastward and affected the evolution of the El Ni\~no episodes. From spring to early summer, the concurring anomalous easterly winds in the central equatorial Pacific and the end of upwelling Kelvin waves propagating eastward in the western equatorial Pacific, favored the equatorial warm water both of the SST and the subsurface temperature in the western Pacific. These conditions favored the warm state of the western equatorial Pacific in the early summer for both cases of 2003 and 2007. Due to the active convection in the western equatorial Pacific in the early summer and the weak warm SST anomalies in the tropical western Pacific from spring to early summer, the convective activities in the western Pacific warm pool showed the pattern in which the anomalous strong convection only appeared over the southern regions of the tropical western Pacific warm pool, which effects the meridional shift of the western Pacific subtropical high in the summer. The physical progress of the delayed impacts of the El Ni\~no episodes in the central equatorial Pacific and their decaying evolution on the climate anomalies in eastern China were interpreted through the key role of special pattern for the heat convection in the tropical western Pacific warm pool and the response of the western North Pacific anomalous anticyclone.  相似文献   

20.
Using the sea surface temperature and wind anomalies(SSTA and SSWA for short) of the tropical Pacific from January 1970 to December 1989,main spatial patterns of tropical Pacific SSTA and SSWA coupling features in the transform course from the warm phase to the cold phase of El Nino-southern Oscillation(ENSO) cycles are discussed.The main conclusions are as follows:(1)air-sea coupling patterns at the mature stage of El Nino(La Nina) are main spatial ones of tropical Pacific SSWA and SSTA coupling:(2)at the mature stage of El Nino,the interaction of the anticyclonic anomaly wind,generated by the forcing of distinct meridional SSTA gradient in the Northern Hemisphere tropical central Pacific.with the California cold current and SSTA is mainly responsible for weakening of El Nino;(3)the second sea temperature increase along the South American coast in the decaying course of El Nino results from the eastward movement of the weakened positive SSTA in the tropical central-eastern Pacific forced by anomalous west wind stress:(4)La Nina results from the joint effect of Walker circulation,Ekman drift and negative SSTA in the tropical central-eastern Pacific.  相似文献   

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