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1.
位于东亚中纬度上空的东亚高空副热带西风急流是东亚季风环流系统中的重要成员,我国夏季降水雨带的季节内变化受东亚高空副热带西风急流位置季节内异常变化影响。根据1979~2008年中国降水资料、NCEP/NCAR再分析资料以及NOAA ERSST V3月平均海表温度资料,利用统计分析和物理量诊断方法对夏季东亚高空副热带西风急流位置季节内异常的东亚大气环流特征及外强迫信号的物理过程进行了探讨。研究指出:6月东亚高空副热带西风急流位置异常主要受欧亚大陆中高纬东传的Rossby波列位相变化影响,春季北大西洋海温异常是欧亚大陆中高纬度Rossby波列位相变化的最显著的外强迫信号;7月东亚高空副热带西风急流位置异常主要受西太平洋热带向副热带传播的Rossby波列位相变化影响,春季西太平洋热带海温异常是西太平洋热带向副热带传播的Rossby波列位相变化的最显著的外强迫信号;8月东亚高空副热带西风急流位置异常主要受南亚大陆向东亚大陆热带、副热带传播的Rossby波列位相变化影响,春季印度洋海温异常是南亚大陆向东亚大陆热带、副热带传播的Rossby波列位相变化的最显著的外强迫信号。  相似文献   

2.
夏季乌拉尔地区大气环流持续异常的形成与维持   总被引:2,自引:0,他引:2  
从天气尺度瞬变涡旋与时间平均基本气流双向相互作用建立异常型的角度,研究了夏季乌拉尔地区大气环流持续异常的形成与维持,首先基于合成分析,研究了持续异常期间的天气尺度瞬变波活动情况,结果表明:正异常时,在上游地区,从北大西洋中部到西欧沿岸,瞬变活动明显增强。负异常过程时相反,该地区瞬变活动减弱。利用线性正压原始方程模式,研究了在合成正异常基本流及7月气候基本流等两种基本流下,正异常时上游异常瞬变活动对异常建立的贡献。结果表明:正异常时,上游增强的瞬变波活动有利于正异常的建立与维持。利用基于线性正压原始方程模式设计的风暴轴模式,研究了时间平均基本流在组织与调控瞬变活动中所起的作用。结果表明:当乌拉尔地区高压脊发展时,有利于瞬变在上游的北大西洋中部到西欧沿岸地区组织起来。脊发展越强,越有利。结合上述两方面的结果,提出了瞬变与行星波双向相互作用的乌拉尔持续正异常形成和自维持机制。  相似文献   

3.
东亚—北太平洋大气环流和瞬变扰动的年代际变化   总被引:6,自引:2,他引:4  
用NCEP/NCAR再分析资料,分析了东亚—北太平洋大气环流、大气斜压性和天气尺度瞬变扰动活动的年代际变化特征。东亚—北太平洋地区低层大气温度和比湿及高层的西风急流都存在明显的年代际变化。西风年代际异常与大气斜压性年代际异常之间有密切联系。夏季北太平洋北部到西伯利亚高原上空的天气尺度瞬变扰动活动年代际增强,但夏季低层瞬变热力和瞬变水汽强迫的年代际异常对北太平洋中纬度低层平均温度和比湿年代际异常的作用并不显著。冬季,西太平洋西风急流年代际增强与急流下方大气斜压性年代际增加相一致,使该地区瞬变扰动年代际增强,增强的瞬变扰动将更多能量传送给西风气流,巩固了西风急流的年代际异常。年代际尺度上冬季异常的瞬变热力强迫和瞬变水汽强迫对低层大气温度和比湿异常有显著的削弱作用。  相似文献   

4.
2013年12月华东地区发生历史罕见的超过20 d连续重度霾天气过程。本文利用NCEP/NCAR再分析资料、华东地区大气细颗粒浓度资料以及常规气象观测资料对此次天气过程的环流形势、持续机制和前期外强迫因子展开分析。结果表明,此次华东连续重度霾天气和东亚中高纬阻塞高压活动密切相关。2013年12月白令海到鄂霍茨克海阻塞活动加强导致东亚地区天气瞬变扰动异常偏弱,贝加尔湖东侧弱高空脊长时间维持,我国东部地区受弱偏北风影响,大气扩散条件较差,有利于华东本地大气细颗粒物积累和北方霾粒子向华东地区输送。进一步研究表明2013年12月鄂霍茨克海阻塞高压活动偏强可能和前期热带印度洋暖海温异常有关。  相似文献   

5.
陆日宇  黄荣辉 《大气科学》1996,20(2):138-148
本文推导出可以用来讨论大尺度扰动强迫对平均经圈环流作用的变形平均经圈环流变化方程,并利用此方程对北半球冬季4次阻塞高压的形成进行了诊断分析。分析结果表明:由于波动对经圈环流的强迫作用,使高压脊的西部南风加强,而东部北风加强,从而有利于阻塞高压的形成。文中还分别分析了瞬变波及其低频瞬变波部分在阻塞高压形成中对经圈环流的强迫作用,并讨论了低频瞬变波强迫在太平洋和大西洋地区阻塞高压形成的地域差别。  相似文献   

6.
2003年淮河流域致洪暴雨的环流背景及其与大气热源的关系   总被引:19,自引:14,他引:5  
利用NCAR/NCEP的逐日再分析资料和降水资料,分析了2003年夏季淮河流域致洪暴雨的环流背景及其与大气热源的关系.结果表明,2002-2003年的El Nino事件是本次暴雨的前期背景;南海地区的视热源和视水汽汇异常可能是副高偏南维持的重要原因之一.与2003年夏季相比较,6月21日-7月22日淮河流域为正的异常视热源和视水汽汇,并且二者的高值中心与该时段雨量中心位置基本一致.孟加拉湾地区的异常加热源在其西北侧强迫出的高层反气旋性环流有利于南亚高压在青藏高原、江南、华南地区维持,从而使得淮河流域位于高压北侧高空西风急流入口区南侧的上升运动区,有利于淮河流域强降水发生和维持,形成该流域洪涝.  相似文献   

7.
本文采用Plumb三维波活动通量和局地Eliassen-Palm通量诊断方法,利用欧洲中期天气预报中心的逐日再分析资料ERA-Interim,分析了超强厄尔尼诺背景下2016年1月下旬中国南方超级寒潮的动力学机制:瞬变波对大气长波异常的调制。前期2015年12月的北大西洋海表热通量正异常,有助于后期大西洋阻塞形势的维持。大气长波能量沿大圆路径从大西洋阻高经乌拉尔地区向东亚中低纬度传播并在此辐合,导致了乌拉尔阻高和华北横槽的经向结构,更多强冷空气聚集在异常偏南的纬向槽线附近。寒潮爆发前夕,2支瞬变波列活跃在亚欧大陆。北支瞬变波列调制了北方的大气长波,使横槽转竖;南支瞬变波列协同调控了南方的大气长波,使南支印缅槽减弱;两者共同作用,促使冷平流大举南下,直达华南沿海,南方寒潮发生。  相似文献   

8.
应用常规资料、TBB资料和NCEP分析资料,对2007年7月25日发生在湘黔边境的一次梅雨锋大暴雨天气过程进行了分析.结果表明:深厚的高空低槽和副热带高压稳定维持,有利于冷暖空气的辐合和梅雨锋的长时间维持.梅雨锋上不断有中小尺度对流系统产生,这些中小尺度对流系统在受到大尺度强迫作用和梅雨锋自身的强迫抬升作用而发展增强并长时间维持,在暴雨区形成强烈的降水.暴雨区上空具有低层辐合、高层辐散的结构特征,低层的辐合使得涡度往中上层输送,这种耦合形势有利于垂直上升运动和暴雨的维持.积云对流释放的凝结潜热加热对流层中上层大气,引起梅雨锋锋生,维持和促进了垂直上升运动和对流活动.  相似文献   

9.
夏季乌拉尔长阻塞过程及其与热带热力异常关系个例分析   总被引:1,自引:0,他引:1  
2010和1998年均为长江洪涝年,这两年大气环流的一个共同特征是乌拉尔阻塞的频繁发生和异常维持。利用NCEP/NCAR逐日再分析的大气环流资料和向上射出长波辐射资料,对比分析了2010和1998年夏季乌拉尔地区环流持续异常的特征、大尺度环流形势、热带加热背景及其可能影响。结果显示:(1)2010年夏季乌拉尔发生了一次持续正异常过程,该过程是自1948年以来持续时间第二长(共37天)的,其最大异常中心在乌拉尔略偏西,持续时间比1998年的那次过程长(1998年的那次过程持续时间为22天);(2)异常过程期间存在行星波活动异常,2010年的过程行星波活动以2、4波的贡献为主,而1998年为1、2波的贡献为主;(3)异常过程期间,热带对流活动存在显著差异。这可能是它们行星波活动不同的原因;(4)两次异常过程期间,一个共同特点是在苏门答腊西侧的热带印度洋区域存在明显的对流增强。该区域强对流可能激发了类似东亚—太平洋遥相关型的波列向中高纬传播,从而调制行星波活动,再影响乌拉尔位势高度异常的形成和持续维持。  相似文献   

10.
海南2008年秋季持续性暴雨过程的物理机制分析   总被引:2,自引:0,他引:2  
马学款  符娇兰  曹殿斌 《气象》2012,38(7):795-803
利用地面常规与加密自动站降水观测、卫星云图、NCEP FNL全球分析等资料对2008年10月12—14日海南持续暴雨天气过程进行诊断分析。分析表明:热带低压、冷空气以及副热带高压三者的相互作用,导致海南低空出现持续的东(东南)风急流,该急流在海南东部沿海形成的向岸风辐合及地形强迫抬升是MCS的重要触发机制,其暖湿输送作用是暴雨区不稳定能量得以循环建立的主要途径。南海东北风冷涌前沿强辐合、潜热加热以及高空强辐散有利于热带扰动的发展与维持。热带低压与冷空气相互作用导致大气斜压性增强,地转强迫作用与惯性振荡机制使得低压北侧东北风急流加强。东北与东南急流之间的形变与辐合导致持续锋生过程,锋生强迫产生的热力直接环流上升支与低空急流左前侧次级环流上升支是对流系统发展的主要动力触发机制,低空强潜热加热也有利于对流向更高层次发展。  相似文献   

11.
Record-breaking heavy and persistent precipitation occurred over the Yangtze River Valley (YRV) in June-July (JJ) 2020. An observational data analysis has indicated that the strong and persistent rainfall arose from the confluence of southerly wind anomalies to the south associated with an extremely strong anomalous anticyclone over the western North Pacific (WNPAC) and northeasterly anomalies to the north associated with a high-pressure anomaly over Northeast Asia. A further observational and modeling study has shown that the extremely strong WNPAC was caused by both La Ni?a-like SST anomaly (SSTA) forcing in the equatorial Pacific and warm SSTA forcing in the tropical Indian Ocean (IO). Different from conventional central Pacific (CP) El Ni?os that decay slowly, a CP El Ni?o in early 2020 decayed quickly and became a La Ni?a by early summer. This quick transition had a critical impact on the WNPAC. Meanwhile, an unusually large area of SST warming occurred in the tropical IO because a moderate interannual SSTA over the IO associated with the CP El Ni?o was superposed by an interdecadal/long-term trend component. Numerical sensitivity experiments have demonstrated that both the heating anomaly in the IO and the heating anomaly in the tropical Pacific contributed to the formation and maintenance of the WNPAC. The persistent high-pressure anomaly in Northeast Asia was part of a stationary Rossby wave train in the midlatitudes, driven by combined heating anomalies over India, the tropical eastern Pacific, and the tropical Atlantic.  相似文献   

12.
Based on diagnostic analysis of reanalysis data for 58-year, the distribution characteristics of decadal variability in diabatic heating, transient eddy heating and transient eddy vorticity forcing related to the sea surface temperature (SST) anomalies over the North Pacific, as well as their relationship with anomalous atmospheric circulation have been investigated in this paper. A linear baroclinic model(LBM) was used to investigate atmospheric responses to idealized and realistic heat and vorticity forcing anomalies, and then to compare relative roles of different kinds of forcing in terms of geopotential height responses. The results illustrate that the responses of atmospheric height fields to the mid-latitude heating can be either baroclinic or barotropic. The response structure is sensitive to the relative horizontal location of heating with respect to the background jet flow, as well as to the vertical profile of heating. The response to the idealized deep heating over the eastern North Pacific, mimicking the observed heating anomaly, is baroclinic. The atmospheric response to the mid-latitude vorticity forcing is always barotropic, resulting in a geopotential low that is in phase with the forcing. The atmospheric responses to the realistic heat and vorticity forcing show the similar results, suggesting that diabatic heating, transient eddy heating and transient eddy vorticity forcing can all cause atmospheric anomalies and that the vorticity forcing plays a relatively more important role in maintaining the equivalent-barotropic structure of geopotential height anomalies.  相似文献   

13.
Based on diagnostic analysis of reanalysis data for 58-year,the distribution characteristics of decadal variability in diabatic heating,transient eddy heating and transient eddy vorticity forcing related to the sea surface temperature(SST)anomalies over the North Pacific,as well as their relationship with anomalous atmospheric circulation have been investigated in this paper.A linear baroclinic model(LBM)was used to investigate atmospheric responses to idealized and realistic heat and vorticity forcing anomalies,and then to compare relative roles of different kinds of forcing in terms of geopotential height responses.The results illustrate that the responses of atmospheric height fields to the mid-latitude heating can be either baroclinic or barotropic.The response structure is sensitive to the relative horizontal location of heating with respect to the background jet flow,as well as to the vertical profile of heating.The response to the idealized deep heating over the eastern North Pacific,mimicking the observed heating anomaly,is baroclinic.The atmospheric response to the mid-latitude vorticity forcing is always barotropic,resulting in a geopotential low that is in phase with the forcing.The atmospheric responses to the realistic heat and vorticity forcing show the similar results,suggesting that diabatic heating,transient eddy heating and transient eddy vorticity forcing can all cause atmospheric anomalies and that the vorticity forcing plays a relatively more important role in maintaining the equivalent-barotropic structure of geopotential height anomalies.  相似文献   

14.
The present paper selects the northern winter of December 1995–February 1996 for a case study on the impact of sea surface temperature (SST) anomalies on the atmospheric circulation over the North Atlantic and Western Europe. In the Atlantic, the selected winter was characterized by positive SST anomalies over the northern subtropics and east of Newfoundland, and negative anomalies along the US coast. A weak La Niña event developed in the Pacific. The North Atlantic Oscillation (NAO) index was low, precipitation over the Iberian Peninsula and northern Africa was anomalously high, and precipitation over northern Europe was anomalously low. The method of study consists of assessing the sensitivity of ensemble simulations by the UCLA atmospheric general circulation model (UCLA AGCM) to SST anomalies from the observation, which are prescribed either in the World Oceans, the Atlantic Ocean only, or the subtropical North Atlantic only. The results obtained are compared with a control run that uses global, time-varying climatological SST. The ensemble simulations with global and Atlantic-only SST anomalies both produce results that resemble the observations over the North Atlantic and Western Europe. It is suggested that the anomalous behavior of the atmosphere in the selected winter over those regions, therefore, was primarily determined by conditions within the Atlantic basin. The simulated fields in the tropical North Atlantic show anomalous upward motion and lower (upper) level convergence (divergence) in the atmosphere overlying the positive SST anomalies. Consistently, the subtropical jet intensifies and its core moves equatorward, and precipitation increases over northern Africa and southern Europe. The results also suggest that the SST anomalies in the tropical North Atlantic only do not suffice to produce the atmospheric anomalies observed in the basin during the selected winter. The extratropical SST anomalies would provide a key contribution through increased transient eddy activity, which causes an extension of the subtropical jet eastward from the coast of North America.  相似文献   

15.
This study examines the PNA associated atmospheric diabatic heating by linearly isolating the influence of ENSO. The analysis is based on the NCEP–NCAR and ERA-40 reanalyses and a 1,000-year-long integration of the CCCma coupled climate model. Both the vertically integrated and three-dimensional diabatic heating are examined. The Rossby wave sources in association with the PNA are also diagnosed. The PNA-related heating is confined outside the tropics and is dominated by anomalies in the eastern Pacific, with a north–south dipole structure in mid-latitudes and the northern subtropics. The heating anomalies change sign with height in mid-latitudes but have the same sign throughout the troposphere in the northern subtropics. Relatively weak heating anomalies also appear in mid-latitudes, downstream of the heating dipole over North America and the western North Atlantic. The heating anomalies are largely supported by the advections related to the mean state throughout the troposphere, and partially damped by the advections related to the eddy effect, particularly at the upper troposphere over the North Pacific. Broadly similar patterns are seen from the NCEP–NCAR and ERA-40 reanalyses. Yet anomalous heating centers are generally located at relatively lower troposphere for the ERA-40 with respect to the NCEP–NCAR. The tropical heating anomalies are rather weak, remarkably different from those related to ENSO variability. In addition, the Rossby wave source collocates with the atmospheric diabatic forcing in the mid-high latitudes over the PNA sector, and shows no forcing source in the tropics. The results demonstrate possible forcing in the mid-high latitudes, regardless of tropical heating for the PNA teleconnection. The modeled heating and wave forcing anomalies in association with the modeled PNA compare reasonably well with the reanalysis-based estimates, increasing confidence in the observational results. The analysis provides further evidence of the independence of the PNA on ENSO from the diabatic heating point of view.  相似文献   

16.
In this paper,the dynamical evolutions of two types of Arctic Oscillation (AO),the stratospheric (S) and tropospheric (T) types,have been investigated on an intermediate time scale in terms of transient eddy feedback forcing and three-dimensional Rossby wave propagation.S-Type (T-type) events are characterized by an anomalous stratospheric polar vortex that is in phase (out of phase) with its tropospheric counterpart.Approximately onethird of AO events,both positive and negative,are T-type events.For the positive phase of a T-type event,the formation and maintenance of stratospheric positive anomalies over the polar cap are associated with an upward propagation of Rossby wave packets originating from the near-tropopause altitude over northeastern Asia.However,such upward propagating features are not found for S-type events.In the troposphere,transient eddy feedback forcing is primarily responsible for the meridional seesaw structure of both the S-and T-type events,with an additional contribution from Rossby wave propagation.  相似文献   

17.
北极海冰对2008年1月乌拉尔高压异常的影响   总被引:1,自引:1,他引:0  
2008年1月我国南方发生了大范围的雨雪冰冻灾害天气,造成此次灾害的一个重要原因是乌拉尔高压异常的长期维持,而作为下垫面的海洋,2007/2008冬季环北欧海海冰异常偏少。观测资料合成分析表明,乌拉尔山地区出现高压异常与巴伦支海和喀拉海的海冰偏少存在密切对应关系。利用大气环流模式试验研究了(90°W~60°E)区域海冰异常对大气的影响,模拟结果显示海冰对乌拉尔高压异常有正的贡献,线性模式诊断表明天气尺度瞬变波是海冰影响乌拉尔高压异常的一种重要机制。  相似文献   

18.
A strong (weak) East Asian summer monsoon (EASM) is usually concurrent with the tripole pattern of North Atlantic SST anomalies on the interannual timescale during summer, which has positive (negative) SST anomalies in the northwestern North Atlantic and negative (positive) SST anomalies in the subpolar and tropical ocean. The mechanisms responsible for this linkage are diagnosed in the present study. It is shown that a barotropic wave-train pattern occurring over the Atlantic-Eurasia region likely acts as a link between the EASM and the SST tripole during summer. This wave-train pattern is concurrent with geopotential height anomalies over the Ural Mountains, which has a substantial effect on the EASM. Diagnosis based on observations and linear dynamical model results reveals that the mechanism for maintaining the wave-train pattern involves both the anomalous diabatic heating and synoptic eddy-vorticity forcing. Since the North Atlantic SST tripole is closely coupled with the North Atlantic Oscillation (NAO), the relationships between these two factors and the EASM are also examined. It is found that the connection of the EASM with the summer SST tripole is sensitive to the meridional location of the tripole, which is characterized by large seasonal variations due to the north-south movement of the activity centers of the NAO. The SST tripole that has a strong relationship with the EASM appears to be closely coupled with the NAO in the previous spring rather than in the simultaneous summer.  相似文献   

19.
阿留申低压低频变化及其相关的瞬变动力学过程分析   总被引:2,自引:0,他引:2  
利用NCEP/NCAR 1979—2013年的再分析资料,研究了冬季阿留申低压低频变化的环流特征,探讨了阿留申低压低频变化形成和维持的相关天气尺度瞬变强迫机制。冬季阿留申低压的低频变化在850 h Pa环流场上表现为北太平洋海盆区一个异常气旋/异常反气旋在局地强弱变化的过程,即阿留申低压在低频尺度上先异常增强/减弱随后逐渐恢复正常态的演变过程;850 h Pa上大气温度低频变化表现为低频冷中心在西北太平洋建立并逐渐东移的过程。对天气尺度瞬变扰动活动及其强迫的异常进行分析表明,北太平洋海盆区上空的瞬变动力强迫在阿留申低压异常增强的时期为负异常,有利于阿留申低压低频变化异常空间型的形成和维持。由瞬变热力强迫异常引起的温度倾向异常场表现为北太平洋中部以40°N为界南正—北负的空间分布,其南部正异常在一定程度上抑制和削弱了低频冷中心向南的扩张。  相似文献   

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