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1.
使用ERA40再分析的月资料和逐日资料,从大尺度特征和瞬变扰动活动两个角度对冬季东亚副热带急流(EASJ)和东亚温带急流(EAPJ)进行了比较分析.结果表明,使用月资料分析的EASJ与EAPJ在高层风场上没有清晰的地理分界区,而使用逐日资料计算得到的冬季逐日急流发生数则以高原北部上空所处的纬度带为分界岭,存在两个急流中心集中区,分别对应于EASJ和EAPJ区域.通过分析东亚上空天气尺度瞬变扰动活动(STEA)表明,与强盛的冬季EASJ相伴随的是较弱的南支STEA,而与较弱的EAPJ相伴随的北支STEA却十分活跃,显示出EAPJ是与瞬变活动相伴而存的急流.进一步的诊断分析揭示了冬季东亚温带急流的两种主要异常模态,一种是EAPJ区域反气旋性/气旋性异常环流型,另一种是局地西风的减弱/增加.与第1种异常模态相关的北半球大尺度环流异常主要集中在欧亚中高纬地区,其形成受中高纬大气环流以及东亚上游大气环流异常的共同影响.当EAPJ局地西风减弱/增加时.EASJ东段至西太平洋上空的西风急流呈现出与之相反的变化型,北半球大气环流异常表现为大气遥相关的欧亚(EU)型.冬季EAPJ的两种异常模态还与东亚上空STEA异常密切联系,其中在北支STEA区域出现的瞬变异常以波列的形式沿STEA北支轴线传播到达东亚沿海上空,然后东传入洋面上空,而对于靠近STEA南支轴线的异常扰动活动则只能存在于东亚东部及其沿海上空的200 hPa层上.  相似文献   

2.
On the interannual timescale, the meridional displacement of the East Asian upper-tropospheric jet stream (EAJS) is significantly associated with the rainfall anomalies in East Asia in summer. In this study, using the data from the National Centers for Environmental Prediction-Department of Energy (NCEP/DOE) reanalysis-2 from 1979 to 2002, the authors investigate the interannual variations of the EAJS‘s meridional displacement in summer and their associations with the variations of the South Asian high (SAH) and the western North Pacific subtropical high (WNPSH), which are dominant circulation features in the upper and lower troposhere, respectively. The result from an EOF analysis shows that the meridional displacement is the most remarkable feature of the interannual variations of the EAJS in each month of summer and in summer as a whole. A composite analysis indicates that the summer (June-July-August, JJA) EAJS index, which is intended to depict the interannual meridional displacement of the EAJS, is not appropriate because the anomalies of the zonal wind at 200 hPa (U200) in July and August only, rather than in June, significantly contribute to the summer EAJS index. Thus, the index for each month in summer is defined according to the location of the EAJS core in each month. Composite analyses based on the monthly indexes show that corresponding to the monthly equatorward displacement of the EAJS, the South Asian high (SAH) extends southeastward clearly in July and August, and the western North Pacific subtropical high (WNPSH) withdraws southward in June and August.  相似文献   

3.
储鹏  姚素香 《气象科学》2020,40(4):458-466
利用ERA-interim再分析资料和中国降水观测数据,分析了夏季东亚副热带西风急流的季节内变化以及对我国降水的可能影响,结果表明:亚洲地区夏季200 hPa纬向风在空间上主要表现为南北振荡和东西振荡特征,在时间上具有10~40 d的周期;在低频尺度(10~40 d)上,纬向风异常由西北先向东传播,到达东亚地区后再向南传播;伴随低频纬向风季节内演变,高原以北的急流中心向东和东南移动,急流轴也呈现南北振荡的特征;降水异常对200 hPa风场低频振荡有显著响应,在东亚地区,低频纬向风与低频降水南移,降水在黄淮地区出现,并逐渐移至长江及其以南地区;急流附近的低频西(东)风异常在其南侧形成负(正)切变涡度,对应我国东部地区位势高度的升高(降低),使得南亚高压东伸(西退),从而使我国东部雨带的位置发生显著变化。  相似文献   

4.
Performances of two LASG/IAP(State Key Laboratory of Numerical Modeling for Atmospheric Sci- ences and Geophysical Fluid Dynamics/Institute of Atmospheric Physics)Atmospheric General Circulation Models(AGCMs),namely GAMIL and SAMIL,in simulating the major characteristics of the East Asian subtropical westerly jet(EASWJ)in the upper troposphere are examined in this paper.The mean vertical and horizontal structures and the correspondence of the EASWJ location to the meridional temperature gradient in the upper troposphere are well simulated by two models.However,both models underestimate the EASWJ intensity in winter and summer,and are unable to simulate the bimodal distribution of the ma- jor EASWJ centers in mid-summer,relative to the observation,especially for the SAMIL model.The biases in the simulated EASWJ intensity are found to be associated with the biases of the meridional temperature gradients in the troposphere,and furthermore with the surface sensible heat flux and condensation latent heating.The models capture the major characteristics of the seasonal evolution of the diabatic heating rate averaged between 30°-45°N,and its association with the westerly jet.However,the simulated maximum diabatic heating rate in summer is located westward in comparison with the observed position,with a rela- tively strong diabatic heating intensity,especially in GAMIL.The biases in simulating the diabatic heating fields lead to the biases in simulating the temperature distribution in the upper troposphere,which may further affect the EASWJ simulations.Therefore,it is necessary to improve the simulation of the meridional temperature gradient as well as the diabatic heating field in the troposphere for the improvement of the EASWJ simulation by GAMIL and SAMIL models.  相似文献   

5.
A 600-year integration performed with the Bergen Climate Model and National Centers for Environmental Prediction/National Center for Atmospheric Research (NCEP/NCAR) reanalysis data were used to investigate the impact of strong tropical volcanic eruptions on the East Asian summer monsoon (EASM) and EASM rainfall.Both the simulation and NCEP/NCAR reanalysis data show a weakening of the EASM in strong eruption years.The model simulation suggests that North and South China experience droughts and the Yangtze-Huaihe River Valley experiences floods during eruption years.In response to strong tropical volcanic eruptions,the meridional air temperature gradient in the upper troposphere is enhanced,which leads to a southward shift and an increase of the East Asian subtropical westerly jet stream (EASWJ).At the same time,the land-sea thermal contrast between the Asian land mass and Northwest Pacific Ocean is weakened.The southward shift and increase of the EASWJ and reduction of the land-sea thermal contrast all contribute to a weakening of the EASM and EASM rainfall anomaly.  相似文献   

6.
Diagnostic comparison of the East Asian subtropical jet (EASJ) and polar-front jet (EAPJ) in winter season is carried out by using the ERA-40 dataset. The large-scale circulation characteristics and synopticscale transient eddy activities (STEAs) associated with the EASJ and EAPJ are examined. The results show that the EASJ and EAPJ in the upper-level monthly mean data have no clear geographical border, while the distribution of the numbers of jet cores from the daily data exhibits a distinct boundary at the latitudes of the northern Tibetan Plateau. The two areas with large numbers of jet cores correspond to the EASJ and EAPJ regions. The analysis of STEAs over the East Asian region shows a spatial match of STEAs with the EASJ and EAPJ in winter: the strong EASJ is located within the weak southern branch of the STEA while the relatively weak EAPJ appears within the active northern branch of the STEA, indicating that the EAPJ is the jet coexisting with the STEA. Further analysis shows two anomalous modes of the winter EAPJ: the anomalous anticyclonic/cyclonic circulation and the weakened/strengthened local westerly wind. The large-scale circulation anomalies in the Northern Hemisphere related to the first mode are concentrated in the Eurasian mid to high latitudes, and are also influenced by the anomalous circulation in the upstream area. When the local westerly wind over the EAPJ region is weakened/strengthened, the westerly jet in the eastern part of the EASJ and that in the western Pacific region show opposite variations. The corresponding anomalous atmospheric circulation demonstrates the Eurasian (EU) pattern. The EAPJ anomalies are also closely linked with the STEA anomalies over East Asia. The anomalies in the northern branch of the STEA propagate as a wave train along its axis into the East Asian coastal waters, and then migrate eastward to the oceanic region. However, the ones near the southern branch are trapped over the eastern part of East Asia and its coastal waters at 200 hPa.  相似文献   

7.
利用1958—2014年夏季NCEP/NCAR大气环流资料和中国486站降水观测资料,通过多种统计诊断方法,从与夏季中国东部3类不同雨型分布相联系的东亚高低层风场变化特征出发,依据与雨带变化密切联系的高层200 hPa纬向风定义了一个新的东亚副热带夏季风指数。分析表明,该指数不仅能反映夏季东亚大气环流的变化特征,兼顾北方冷空气活动和南方东亚夏季风环流变化,同时还能反映夏季中国东部降水南北差异的年际特征。强东亚副热带夏季风指数年,高层中纬度西风急流位置偏北,低层西太平洋副热带高压偏强偏北,有利于冷空气活动位置偏北和东亚东部西南暖湿气流向北推进,中国东部多以Ⅰ类雨型为主;弱东亚副热带夏季风指数年的环流变化刚好相反,中国东部多以Ⅲ类雨型为主。与现有东亚夏季风指数的对比分析表明,该指数在反映中国东部南北区域降水变化的差异方面有很大改进。  相似文献   

8.
利用1979-2013年NCEP/NCAR再分析资料研究了东亚副热带西风急流的变化特征。结果表明:东亚副热带西风急流中心位置、强度有明显的季节变化,冬季偏东偏南、强度最强,夏季偏北偏西、强度最弱。冬半年东亚副热带西风急流南界、北界年际变化的幅度大,夏半年幅度较小。冬季、春季东亚副热带西风急流范围较大,秋季、夏季小,一年内,偏大年或偏小年的出现不具有季节的连续性。  相似文献   

9.
陈宪  钟中  卢伟  孙源 《气象科学》2018,38(6):790-797
本文利用中尺度非静力模式WRF输出的高时空分辨率模拟资料研究了东亚副热带高空急流(EASJ)短时间尺度强度变化特征,并结合大气运动方程解释了EASJ增强的可能机制。结果表明,在6 h时间间隔内,急流区纬向风增量的水平尺度大于2 000 km。急流轴北侧高频扰动较少,南侧出现大量高频扰动,相应地,急流轴北侧纬向风大尺度整体增强,而急流轴南侧纬向风增量正值区中还存在水平尺度为几百公里的负值区。高频扰动的周期约为1~6 h,向东传播速度为20~40 m·s-1,与惯性重力波相似。造成EASJ短时间尺度增强的主要物理因子为水平平流作用和非地转效应。水平平流项和非地转项量级相同,但变化趋势几乎相反。两者之和的量值与纬向风局地加速度项相近。此外,垂直平流作用对EASJ强度变化也有一定贡献。  相似文献   

10.
本文通过数值模拟,研究了有无东亚地形存在时,落基山地形作用对冬季北半球副热带西风急流的影响,分析了东亚大地形对落基山地形的调制作用。结果表明,东亚地形的存在能够完全抑制落基山地形对太平洋副热带急流的加强作用,使得落基山地形作用仅能加强其下游的大西洋副热带急流。主要原因是东亚大地形可抑制落基山地形北侧反气旋环流的发展,进而抑制中纬度太平洋地区经向温度梯度的加强。该结果有助于我们进一步理解北半球大地形强迫作用,及其相互调制作用对对流层天气和环流结构的影响。  相似文献   

11.
利用1979—2010年逐月CMAP降水资料和NCEP/NCAR再分析资料集,通过定义夏季东亚急流位置指数,采用统计和动力诊断方法研究了东亚上空急流位置经向变化及其与东亚夏季气候的联系。所定义的东亚急流位置指数较好地反映了东亚上空急流位置的经向移动。结果表明:东亚上空急流经向位置的移动存在显著的年际变化,其主要周期为2~3 a和8 a。当夏季东亚急流位置偏北(南)时,从低纬到高纬,东亚地区降水异常主要呈现出偏多—偏少—偏多(偏少—偏多—偏少)的经向分布;相应地,气温则在副热带西太平洋地区偏低(高),我国华东、华北及日本地区气温偏高(低),西伯利亚东部较高纬地区气温偏低(高)。东亚上空急流经向位置异常年,异常环流随高度呈略有西倾的准正压结构。东亚上空急流经向位置的偏北(南)与由西太平洋—南海热带地区非绝热加热相关的经圈环流异常有关,亦与中纬度波扰能量东传有关,并由此可部分解释我国长江中下游至日本地区的气温异常偏高(低)。  相似文献   

12.
首先利用CFSR再分析数据,分析了东亚夏季平均环流结构及瞬变涡旋活动特征,再通过WRF模式设计控制性试验和敏感性试验分别模拟受到/不受到来自北边界中纬度瞬变涡旋活动影响的东亚夏季环流和降水,通过两组试验对比揭示了瞬变涡旋活动对东亚夏季平均环流和降水的贡献.结果 表明,中纬度瞬变涡旋活动可以通过系统性的输送动量、热量、水...  相似文献   

13.
聂锋  廖治杰  徐勇 《气象科学》2016,36(1):20-27
利用NCEP/NCAR再分析数据和中国台站降水资料研究冬季东亚高空副热带急流和温带急流协同变化特征及其与中国南方地区降水的关系,发现冬季东亚高原急流与温带急流同期反向协同变化特征最为显著。即高原急流增强,同时温带急流减弱(SW型)和高原急流减弱,同时温带急流增强(WS型)。当高原急流增强(减弱)而温带急流减弱(增强)时,中国南方地区降水显著增加(减少)。合成分析表明,不同急流协同变化型态下冷暖空气活动特征存在较大差异,高原急流与温带急流的反向协同变化可以真实反映与冬季中国南方地区降水相关联的冷暖空气活动特征,进而导致不同降水形态的产生。  相似文献   

14.
利用1980-2010年NCEP/NCAR再分析资料和美国NOAA向外长波辐射(outgoing longwave radiation,OLR)资料,根据关键区500 hPa位势高度的变化定义了西太平洋副高东西位置指标,利用该指标围绕东亚夏季风系统开展分析,详细对比了夏季6月、7月副高东西向活动异常时,季风区相应的环流及对流活动差异.结果表明:副高东西位置的年际变化反映了亚洲夏季风的强弱变化,副高偏西(东)年,南海夏季风偏弱(强),副热带夏季风偏强(弱);副高的东西进退与东亚夏季风系统成员之间相互影响、相互制约;副高偏西年,南亚高压偏东、偏强,季风槽不发展、强度偏弱,西风带长波槽发展加深,南半球马斯克林高压和澳大利亚高压减弱,越赤道气流减弱,而副高偏东年情况则反之.  相似文献   

15.
用NCEP/NCAR月平均再分析资料对南亚高压和对流层上层西风急流的季节变化及盛夏两类型态进行对比。结果表明,南亚高压和西风急流中心都有从冬到夏的西移北进和从夏到冬的东退南撤,急流中心位于南亚高压中心北侧。东亚夏季风盛行期间南亚高压中心的北移提前于西风急流中心的北移,二者的强度呈反相的季节变化。一般情况下,伊朗高压对应西部急流型,青藏高压对应东部急流型。典型东、西部急流年份中高纬气温及高度场的差异表明气压梯度力强弱对比是急流东西型变化的主要原因,南亚高压的位置基本上决定了急流中心的型态,但由于南亚高压具有"趋热性",而急流的移动符合热成风的规律,因而二者的热力影响机制有所不同。  相似文献   

16.
夏季东亚高空西风急流气候特征分析   总被引:2,自引:0,他引:2  
利用NCEP/NCAR全球再分析风场资料定义了西风急流强度指数和位置指数,然后利用EOF方法对西风急流进行了进一步的分析,分析了高空西风急流的空间分布特征,从强度和位置两方面分析了西风急流与东亚环流及其与海温的关系。分析表明: EOF第一模态反映了东亚高空急流的位置指数,第二模态反映了高空急流的强度指数。东亚高空急流与对流层大气环流包括南亚高压,西太平洋副热带高压,东亚夏季风存在着密切关系,其气候变化与热带副热带东太平洋、印度洋海温密切相关。  相似文献   

17.
Summer weather extremes (e.g., heavy rainfall, heat waves) in China have been linked to anomalies of summer monsoon circulations. The East Asian subtropical westerly jet (EASWJ), an important component of the summer monsoon circulations, was investigated to elucidate the dynamical linkages between its intraseasonal variations and local weather extremes. Based on EOF analysis, the dominant mode of the EASWJ in early summer is characterized by anomalous westerlies centered over North China and anomalous easterlies centered over the south of Japan. This mode is conducive to the occurrence of precipitation extremes over Central and North China and humid heat extremes over most areas of China except Northwest and Northeast China. The centers of the dominant mode of the EASWJ in late summer extend more to the west and north than in early summer, and induce anomalous weather extremes in the corresponding areas. The dominant mode of the EASWJ in late summer is characterized by anomalous westerlies centered over the south of Lake Baikal and anomalous easterlies centered over Central China, which is favorable for the occurrence of precipitation extremes over northern and southern China and humid heat extremes over most areas of China except parts of southern China and northern Xinjiang Province. The variability of the EASWJ can influence precipitation and humid heat extremes by driving anomalous vertical motion and water vapor transport over the corresponding areas in early and late summer.摘要东亚副热带西风急流是影响中国极端天气的重要原因之一, 然而之前的研究主要关注整个夏季急流的变率, 对其早夏和晚夏变率的区别及其对极端天气的影响关注较少. 本文研究了早夏和晚夏东亚副热带西风急流季节内变化特征的区别, 以及这种区别带来的极端天气的差异及其可能的动力学机制. 研究结果表明, 相比于早夏, 晚夏急流季节内变化中心位置偏西偏北, 通过改变垂直运动和水汽输送可以影响极端降水和湿热浪在相应区域的发生概率.  相似文献   

18.
This study concerns atmospheric responses to the North Pacific subtropical front(NPSTF) in boreal spring over the period 1982–2014. Statistical results show that a strong NPSTF in spring can significantly enhance the East Asian jet stream(EAJS). Both transient eddy activity and the atmospheric heat source play important roles in this process. The enhanced atmospheric temperature gradient due to a strong NPSTF increases atmospheric baroclinicity, resulting in an intensification of transient eddy and convection activities. On the one hand, the enhanced transient eddy activities can excite an anomalous cyclonic circulation with a quasi-baraotropical structure in the troposphere to the north of the NPSTF. Accordingly, the related westerly wind anomalies around 30?N can intensify the component of the EAJS over the Northeast Pacific. On the other hand, an enhanced atmospheric heat source over the NPSTF, which is related to increased rainfall, acts to excite an anomalous cyclonic circulation system in the troposphere to the northwest of the NPSTF, which can explain the enhanced component of the EAJS over the Northwest Pacific. The two mechanisms may combine to enhance the EAJS.  相似文献   

19.
夏季东亚高空急流与天气尺度波动的气候特征之间的联系   总被引:3,自引:1,他引:3  
利用NCEP/NCAR逐日资料(1979~2003年),分析了东亚夏季高空急流和天气尺度波动气候特征之间的联系。通过分析急流与天气尺度波动活动量Q(用于描述某一时间段内天气尺度波动活动强弱程度)、热量涡动输送(V′T′)的关系,发现:在气候平均意义下,天气尺度波动活动量在6、8月较大,这意味着在这两个月中,天气尺度波动较为剧烈。这和急流的强度变化是相对应的,即强的天气尺度波动活动量对应着强的急流,弱的天气尺度波动活动量对应着弱的急流。热量涡动输送也表现出与天气尺度波动活动量类似的特征。年际变化上,夏季平均和6、7、8各月平均的热量涡动输送和急流强度都存在显著的正相关。对强、弱急流年份条件下热量涡动输送合成分析的结果表明:热量涡动输送偏南时,对应着强的急流;热量涡动输送偏北时,对应着弱的急流。以上的研究结果说明,在气候平均意义和年际变化上夏季东亚高空急流和天气尺度波动之间有着密切的联系。  相似文献   

20.
The interannual variation of the East Asian upper-tropospheric westerly jet(EAJ) significantly affects East Asian climate in summer. Identifying its performance in model prediction may provide us another viewpoint,from the perspective of uppertropospheric circulation,to understand the predictability of summer climate anomalies in East Asia. This study presents a comprehensive assessment of year-to-year variability of the EAJ based on retrospective seasonal forecasts,initiated from1 May,in the five state-of-the-art coupled models from ENSEMBLES during 1960–2005. It is found that the coupled models show certain capability in describing the interannual meridional displacement of the EAJ,which reflects the models' performance in the first leading empirical orthogonal function(EOF) mode. This capability is mainly shown over the region south of the EAJ axis. Additionally,the models generally capture well the main features of atmospheric circulation and SST anomalies related to the interannual meridional displacement of the EAJ. Further analysis suggests that the predicted warm SST anomalies in the concurrent summer over the tropical eastern Pacific and northern Indian Ocean are the two main sources of the potential prediction skill of the southward shift of the EAJ. In contrast,the models are powerless in describing the variation over the region north of the EAJ axis,associated with the meridional displacement,and interannual intensity change of the EAJ,the second leading EOF mode,meaning it still remains a challenge to better predict the EAJ and,subsequently,summer climate in East Asia,using current coupled models.  相似文献   

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