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1.
利用NCEP/NCAR日平均再分析资料,对梅雨期热带对流层上空东风带扰动影响西太平洋副热带高压短期东退的过程进行了合成诊断分析.结果表明:梅雨期西太平洋副热带高压(简称西太副高)的短期东退与低纬热带地区上宅东风带扰动存在着密切的联系,本文给出了在西太副高异常东退前后东风带扰动的结构及其演变特征,揭示了东风带扰动所对应的...  相似文献   

2.
By employing NCEP-NCAR 1°×1° reanalysis datasets, the mechanism of the easterlies vortex(EV) affecting the short-term movement of the subtropical anticyclone over the western Pacific(WPSA) in the mei-yu period is examined using potential vorticity(PV) theory. The results show that when the EV and the westerlies vortex(WV) travel west/east to the same longitude of 120°E, the WPSA suddenly retreats. The EV and WV manifest as the downward transport of PV in the upper troposphere, and the variation of the corresponding high-value regions of PV significantly reflects the intensity changes of the EV and WV. The meridional propagation of PV causes the intensity change of the EV. The vertical movement on both sides of the EV is related to the position of the EV relative to the WPSA and the South Asian high(SAH). When the high PV in the easterlies and westerlies arrive at the same longitude in the meridional direction, the special circulation pattern will lower the position of PV isolines at the ridge line of the WPSA. Thus, the cyclonic circulation at the lower level will be strengthened, causing the abnormally eastward retreat of the WPSA. Analysis of the PV equation at the isentropic surface indicates that when the positive PV variation west of the EV intensifies, it connects with the positive PV variation east of the WV, forming a positive PV band and making the WPSA retreat abnormally. The horizontal advection of the PV has the greatest effect. The contribution of the vertical advection of PV and the vertical differential of heating is also positive, but the values are relatively small. The contribution of the residual was negative and it becomes smaller before and after the WPSA retreats.  相似文献   

3.
By employing the NCEP/NCAR reanalysis data sets (1000-10hPa, 2.5°×2.5°), the characteristics have been analyzed of the structure and evolution of an easterly vortex over the tropical upper troposphere relating to the east-west direction shift of the subtropical anticyclone over the Western Pacific Ocean. It is shown that there exists a westward shift simultaneously between the anticyclone and the vortex locating south of it. The anticyclone retreats eastward abnormally while the easterly encounters with the westerly around the same longitudes as they move from the opposite directions. The former is an upper weather system, extending from mid-troposphere to the height of 50 hPa with the center locating on 200 hPa.The vertical thermal distribution illustrates the characteristics of being "warm in the upper layer but cold in the lower layer". The divergence effect and the vertical motion change largely within the east and west sides of the easterly vortex and ascending branch transforms to descending branch near its center.  相似文献   

4.
By employing the NCEP/NCAR reanalysis data (1000-10 hPa, 2.5°×2.5°), the impact of the vortex in the easterlies (EV) over the tropical upper troposphere on the zonal movement of the western Pacific subtropical anticyclone (WPSA) during 19-25 June 2003 is analyzed in this paper. It is shown that the EV can extend from middle troposphere to the height of 50 hPa, reaching a maximum at 200 hPa. The vertical thermal distribution appears to be "warmer in the upper layer and colder in the lower layer". The WPSA retreats eastward abnormally when the EV and the vortex in the westerlies (WV) encounter around the same longitude while they move toward each other. It is also shown that the vorticity variation extends from the troposphere to the height of 50 hPa, with the most prominent change occurring at 200 hPa by the diagnostic analyses of the vertical vorticity equation. The WPSA appears to retreat abnormally eastward while the negative/positive vorticity change becomes stronger near the east/west side of the EV, and the areas with positive vorticity tendency both in the EV and WV join together into one belt along 130°E during the process of the EV and the WV moving toward each other. In the vorticity equation, the positive contribution caused by the horizontal advection term is the maximum, and the minimum is caused by theβ effect. It is also found that enhanced horizontal vorticity advection andβ effect, as well as the "barotropic development" resulted from the in-phase superposition of the southerly and the northerly winds in the easterlies and westerlies near 130~E, are in agreement with the WPSA eastward retreat.  相似文献   

5.
The NCEP/NCAR reanalysis, CMAP rainfall and Hadley Centre sea surface temperature (SST) datasets are used to investigate the relationship between the seasonal transition of East Asian monsoon and Asian-Pacific thermal contrast, together with the possible causes. Based on the 250 hPa air temperature over two selected key areas, the Asian-Pacific thermal difference (APTD) index is calculated. Results show that the APTD index is highly consistent with the Asian-Pacific Oscillation (APO) index defined by Zhao et al., in terms of different key areas in different seasons. Moreover, the time point of the seasonal transition of the Asian-Pacific thermal contrast can be well determined by the APTD index, indicative of seasonal variation in East Asian atmospheric circulation from winter to summer. The transition characteristic of the circulation can be summarized as follows. The continental cold high at lower tropospheric level moves eastward to the East China Sea and decreases rapidly in intensity, while the low-level northerlies turn to southerlies. At middle tropospheric level, the East Asia major trough is reduced and moves eastward. Furthermore, the subtropical high strengthens and appears near Philippines. The South Asia high shifts from the east of Philippines to the west of Indochina Peninsula, and the prevailing southerlies change into northerlies in upper troposphere. Meanwhile, both the westerly and easterly jets both jump to the north. The seasonal transition of atmospheric circulation is closely related to the thermal contrast, and the possible mechanism can be concluded as follows. Under the background of the APTD seasonal transition, the southerly wind appears firstly at lower troposphere, which triggers the ascending motion via changing vertical shear of meridional winds. The resultant latent heating accelerates the transition of heating pattern from winter to summer. The summer heating pattern can further promote the adjustment of circulation, which favors the formation and strengthening of the low-level southerly and upper-level northerly winds. As a result, the meridional circulation of the East Asian subtropical monsoon is established through a positive feedback between the circulation and thermal fields. Moreover, the time point of this seasonal transition has a significant positive correlation with the SST anomalies over the tropical central-eastern Pacific Ocean, providing a basis for the short-term climate prediction.  相似文献   

6.
本文计算、分析了1981年南海夏季风爆发前后华南地区平均的大气动力学和热力学结构,水汽和能量收支情况。分析表明,在季风爆发前后这些物理量场,特别是垂直运动场,都经历了一次明显的变化。南海夏季风的建立,是以副热带高压从南海东撒,越赤道气流北进为特征。它与以“爆发性涡旋”为开始,降水与西南气流同时开始的印度夏季风有所不同。另外,南海夏季风建立过程,主要变化发生在中、上层大气之中。这说明夏季风的建立,主要是大气环流季节性调整的结果,海陆差异需要有合适的大气环流配合才能产生明显的季风。对大气能量收支的分析表明,夏季风爆发前,华南地区主要是动能向总位能转换。所产生的总位能部分辐散到边界之外,部分消耗在对流层上层非绝热冷却过程之中,因而在对流层下部总位能才有稍明显的增长。夏季风爆发后,整个能量循环几乎相反。总位能大量转换为动能,以维持南海夏季风的增长。而整层大气中的非绝热加热以及总位能的辐合又补充了大气中总位能的损耗。潜热释放是夏季风爆发后大气的主要非绝热加热过程,它是南海夏季风维持,发展的主要能源。  相似文献   

7.
热带气旋潜势指数是定量表征影响热带气旋生成的大尺度环境条件指标,在不能显式模拟热带气旋的气候系统模式中,常被作为热带气旋的代用指标。基于中国科学院大气物理研究所大气科学和地球流体力学数值模拟国家重点实验室发展的AGCM GAMIL2.0模式在历史海温驱动下的积分结果,评估了该模式对热带气旋潜势气候态、季节循环和年际变率的模拟能力。并分别从影响热带气旋潜势分布的热力因子(相对湿度、热带气旋最大风速)和动力因子(垂直风切变、绝对涡度、垂直抬升速度)的角度,讨论了造成热带气旋潜势模拟误差的原因。结果表明,在西北太平洋地区,模式能够合理再现热带气旋潜势的气候态分布,但由于GAMIL2.0模拟的相对湿度偏大且向东延伸,造成了热带气旋潜势大值区较之再分析资料偏大且偏东10°。由于GAMIL2.0模拟的季风槽位置偏北偏强,导致模拟的热带气旋潜势季节循环北进偏早而南退偏晚。在年际变化方面,GAMIL2.0能合理模拟出热带气旋潜势在ENSO正负位相东西反向的变化特征,但位于20°—30°N的加强和减弱区的分界线偏西,这与模拟的垂直速度和相对湿度的模拟误差有关,进一步分析表明,这是由于模拟中ENSO事件期间的西北太平洋异常上升中心比观测偏西且偏强造成的。  相似文献   

8.
Using NCEP/NCAR daily reanalysis data and SCSMEX data, an investigation is carried out of the relationship between the position variation of the west Pacific subtropical high (WPSH) and the apparent heating in June 1998 based on the complete vertical vorticity equation. It is found that the non-adiabatic heating plays an important role in the position variation of WPSH. In comparison with climatic mean status, the vertical change of non-adiabatic heating is stronger in the north side of WPSH in June 1998, but weaker in the south side of WPSH. The anomalous non-uniform heating induces anomalous cyclonic vorticity in South China, areas to the south of the Yangtze and its mid-lower valleys, but anomalous anticyclonic vorticity in the Indo-China Peninsula and South China Sea areas lead to the more southward position of WPSH than the mean.  相似文献   

9.
亚洲夏季风建立前后对流层温度场演变特征及其热力成因   总被引:5,自引:1,他引:4  
对1996年亚洲夏季风爆发前后(3~6月)印度及南海季风区对流层温度演变特征及其热力成因作了比较分析。结果表明:印度和南海夏季风的爆发与各季风区对流层中上层南北温差逆转密切相关,而南北温差逆转是由10~30°N之间纬度带对流层的季节性增暖引起的。夏季风爆发前期,南海季风区的增温主要由暖平流及非绝热加热过程(主要为凝结潜热)共同作用所致。春季在印度季风区大陆上空存在显著的下沉绝热增温,使得对流层中上层的增温率比华南大陆及邻近地区上空的增温率显著得多。但印度季风区冬末春初的南北温差(南暖北冷)也非常明显,以至该地区对流层中上层增暖到引起南北温差发生逆转的时间较迟,而南海季风区对流层中层南北温差发生逆转的时间相对要早,因而印度夏季风比南海夏季风迟爆发。  相似文献   

10.
By using the daily-14 year(1983—1996)NCEP/NCAR 2.5°×2.5° reanalysis data,wecarefully study in each pentad the advance and retreat of the summer monsoon in China and givento it a new definition.This definition considered the intensity of southwesterly winds at 850 hPatogether with its degree in temperature and moisture.The result revealed that:(1)The advance of the summer monsoon in China shows three abrupt northward shifts andfour relatively stationary stays.The four stable stages correspond to the peak of the pro-summerrainy period in South China,the“Meiyu”season in the Changjiang(Yangtze)-Huaihe RiverValleys.the rainy season in the downstream of the Huanghe(Yellow)Riyer Valleys and the rainyseason in northern China.The retreat of the summer monsoon is so fast that it totally retreatsfrom the mainland at about the mid-August.(2)The northward advance of summer monsoon in China is basically controlled by theseasonal variation latitudinally of the upper level planetary westerlies.It is in roughly accord withthe temporal variation in the position of 15 m s~(-1) isotaeh at 200 hPa.The fast retreat of thesummer monsoon is mainly due to the blocking effect of the Tibetan Plateau.(3)The advance of 500 hPa subtropical high of the western Pacific is also in aecordanee withthe advance of the summer monsoon in China.During the advancement of the summer monsoon,the eastward movement of the subtropical high shows great meaning that it creates the essentialcondition for the convergence of southward intrusion cold airs with the warm and humidsouthwesterly winds,which result in precipitation.There are three manifest eastward movementsof the subtropical high during its northward advancement.They coincide correspondingly to thebeginning of the peak of the pre-summer rainy period in South China,the“Meiyu”season in theChangjiang(Yangtze)-Huaihe River Valleys and finally the rainy season in northern China.Thewestern part of the subtropical high moves eastward to the region of Japan in late July and thebeginning of August.It then stays there for quite a long time which results in the straightmovement of cold airs intruding from the north to the east of Tibetan Plateau,i.e.the easternregion of China.This provides good condition for the fast southward retreat of the summermonsoon.(4)The intensifieation and development of the Tibetan high at 200 hPa are closely related to the eastward movement of the subtropical high,they often occur simultaneously.  相似文献   

11.
选取华南2017年5月15日两段不同系统影响的典型个例降水,基于ERA Interim分析资料和地面、雷达等观测资料,从两类降水的大尺度环境及中尺度特征方面探讨了两类降水系统的差异,并利用模式潜热廓线订正方案对两类降水个例的潜热进行反演。结果表明,季风降水主要受偏南风影响,边界层内强辐合、高温高湿,中高层(600~150 hPa)较强辐散,而锋面降水受低层锋面系统影响,对流层低层强辐合,800~300 hPa较强辐散,水汽输送深厚,斜压性结构明显,且垂直运动剧烈。除两者的辐合辐散中心、正涡度的中心以及水汽通量辐合中心和垂直运动大值中心所在的层次明显不同外,其强度也差别较明显,就垂直运动而言,锋面降水的最大值达-1.2 hPa/s,远远大于季风降水(-0.2 Pa/s)。两者的中尺度特征和加热结构也存在显著差异,季风降水中尺度雨团沿海岸线自西向东移动发展,潜热加热中心为单峰值,位于5~6 km;锋面降水中尺度雨团在一条西南-东北走向的雨带上不断向东南方向合并发展,潜热加热中心有两个,分别位于1~2 km和6~7 km。   相似文献   

12.
利用NCEP/NCAR再分析资料及实况观测资料,分析了2019年中国长江中下游地区伏秋连续干旱期间的降水、温度及大气环流异常特征。结果表明:此次干旱具有持续时间长、降水偏少严重、气温较历史同期明显偏高、高温日数明显偏多等极端性特点。西太平洋副热带高压偏强,位置相对偏西、偏北,是形成长江中下游伏秋连旱的最主要原因;南亚高压东伸及负涡度向东输送,利于副热带高压西伸,长江中下游地区始终位于东亚副热带西风急流出口区右侧、对流层中高层负涡度的叠加作用区,使得垂直方向上的下沉辐散得到显著增强;自乌拉尔山至贝加尔湖高压脊形成的"高压坝",偏弱的极涡和东亚大槽等异常中高纬环流形势稳定维持,使得西风带中的气旋性扰动不易影响到副热带地区,利于西太平洋副热带高压的稳定及干旱的维持;频繁的热带系统活动,使得副热带高压在热带对流加热区以北的负涡度作用下得以进一步加强,并且导致对流层低层西南气流、越赤道气流和东南气流等三支气流在向北的输送路径上发生改变,并使长江中下游地区水汽辐合偏弱,使干旱得以维持。  相似文献   

13.
冬季黑潮海域异常加热与北太平洋大气环流的耦合关系   总被引:1,自引:0,他引:1  
利用NCEP/NCAR和OAFlux月平均资料,采用SVD方法分析冬季黑潮海域的热通量和北太平洋500 hPa位势高度场之间的关系。第1对奇异向量占总方差的86.24%,表现为黑潮北部海域异常多的放热和北太平洋中西部的500 hPa位势高度场异常低。将正负异常年的各气象要素的距平场进行合成分析后表明:当阿留申低压增强(减弱)时,黑潮海域上空的西北风增强(减弱),导致近地面层大气温度降低(升高),使得热通量异常释放增加(减少),从而降低(升高)了海表面温度。在黑潮海域及其下游,温度场在纬向垂直方向是斜压结构,位势高度场是相当正压结构,反映的是冷低压(暖脊)结构。通过分析风场无旋分量和垂直速度的距平发现,在中纬度地区存在距平的纬向环流圈:大气在北太平洋中部的低层上升(下沉),在对流层高层(低层)分别向西、向东运动,在黑潮海域和北美西部下沉(上升),增强(减弱)了中纬度纬向环流圈(MZC)。  相似文献   

14.
利用南极16站30余年地面至30hPa10层月平均气温距平序列资料,采用最大熵功率谱方法,研究了南极对流层至平流层下部气候变化的长期趋势和周期性特征,并讨论了平流层(对流层)气候变化与南极臭氧总量(南半球500hPa环流)变化之间的联系。指出:南极气温具有明显的长期趋势和周期性变化;平流层下部显着变冷、对流层增暖,变化最大层高度在100、700hPa,最大降冷速率远大于增暖速率,气层稳定度趋于减弱;30、50hPa气温具有准两年周期,100hPa上下具有显着的年周期,对流层是以3.5年甚低频周期为主;对流层顶气温无显着趋势变化和周期性变化;南极最大臭氧层高度显着变冷与近15年来臭氧层损耗有关。南半球对流层中部极涡及绕极气流减弱是南极对流层气候变暖的直接原因。  相似文献   

15.
利用地面降水观测、NCEP/NCAR FNL再分析、ECMWF模式预报场和FY-2H静止卫星TBB资料, 对2020年6月30日浙江省一次暴雨过程进行了综合分析。结果表明: (1) 200 hPa南亚高压强高空辐散、中纬度低槽东移、副热带高压带状稳定的阻塞形势、江淮气旋后部下摆冷空气与暖湿气流交汇形成的冷式切变等共同提供了有利的环境条件; (2)对流层中低层水汽通量向高空伸展、700 hPa正的垂直螺旋度中心都对暴雨落区有示踪作用, 高层正水汽通量散度强于低层负水汽通量散度, 垂直螺旋度和垂直速度中心几乎重合, 先低层强辐合后强垂直上升运动均为本次暴雨的发生提供了重要的水汽和动力条件; (3)暴雨发生在MPV、MPV1和MPV2为正负过渡的零值区, 为对流不稳定和斜压不稳定相结合区域, θse线密集区与地面近乎垂直, 湿位涡的高值中心位于θse梯度最大处, 高空湿位涡下传触发了位势不稳定能量的释放, 引起大范围的强对流暴雨; (4) 850 hPa冷切变线附近的降水云团, 是由多个块状对流云团合并加强形成完整的带状积雨云团, 而上游不断有新生对流云团生成东移补充消散的老单体, 触发阶段对流云后向传播, 扰动发展阶段对流云团合并过程, 形成对流云串的“列车效应”。   相似文献   

16.
Tropical cyclone genesis potential index(GPI) is a useful metric for gauging the performance of global climate models in the simulation of tropical cyclone(TC) genesis.The performance of LASG/IAP AGCM GAMIL2.0 in the simulation of GPI over the western North Pacific(WNP) is assessed in this paper.Since GPI depends on large scale environmental factors including low-level vorticity at 850 hPa,relative humidity at 700 hPa,vertical wind shear between 850 and 200 hPa,maximum potential intensity(MPI),and vertical velocity,the bias of GPI simulation is discussed from the perspective of thermal and dynamical factors.The results are compared with the ECMWF reanalysis data(ERA40).The analyses show that both the climatological spatial pattern and seasonal cycle of GPI over the WNP are reasonably simulated by GAMIL2.0,but due to the overestimation of relative humidity,the simulated GPI extends to 170°E,about 10°east to that in the reanalysis data.It is demonstrated that the bias in the simulation of monsoon trough,which is about 5°north to the reanalysis,leads to an overestimation of GPI during May-June and September-October,but an underestimation during July-August.Over the WNP,the response of GPI to ENSO is well captured by GAMIL2.0,including the eastward(westward) shift of TC genesis location during El Nin o(La Nin a) years.However,the anomalous convective center associated with El Nin o shifts westward about 20°in comparison to ERA40,which leads to the biases in both vertical velocity and relative humidity.These eventually result in the westward deflection of the boundary between the positive and negative GPI centers along 20°-30°N.The results from this study provide useful clues for the future improvement of GAMIL2.0.  相似文献   

17.
亚——非季风区非绝热加热与夏季环流关系的诊断研究   总被引:4,自引:0,他引:4  
基于热力适应理论,本文利用 NCEP/ NCAR再分析资料对撒哈拉沙漠、青藏高原和孟加拉湾地区的非绝热加热与夏季环流进行了诊断研究。在非洲撒哈拉沙漠地区,以感热输送为主的加热仅局限于近地面层,边界层以上的大气则以辐射冷却占优势。因而除了边界层内存在着浅薄的正涡度和微弱的上升运动以外,整个对流层几乎都维持负涡度并盛行下沉运动。对于青藏高原地区,强大的表面感热通量引起的垂直扩散是近地面大气加热的主要分量,与大尺度上升运动相关的凝结潜热对低层大气的加热也有一定的贡献。长波辐射造成的对流层中、上层大气的冷却则主要由深对流潜热释放来补偿。夏季高原地区总非绝热加热是正值,且最大加热率出现在边界层内。低空大气辐合产生正涡度,而中、高层大气辐散伴有较强的负涡度。因而高原盛行上升运动,最大上升运动位于近地面层。夏季孟加拉湾地区的深对流凝结潜热释放远大于长波辐的冷却作用,因而整个对流层几乎都保持较强的非绝热加热。400hPa层附近的最大加热率引起300-400hPa最强的上升运动。对流层上层是负涡度区,而中、低层为正涡度区。结果还表明,垂直和水平辐散环流与大气的热源和热汇区密切相联:在高层,辐散气流从热源区流向热汇区;在低层则相  相似文献   

18.
冬季西伯利亚高压动力结构的研究   总被引:16,自引:1,他引:16  
本文研究了冬季西伯利亚高压建立时期的动力结构。研究得到,在高压建立前期,对流层中以正涡度为主。低层和高层有弱的辐合,中层是辐散;相应在700hPa以下是上升,以上是下沉。但当反气旋发展时,高层为正涡度和辐合气流,低层为负涡度和辐散气流,整层为下沉运动。这表明对流层中、上层的强质量辐合是导致西伯利亚高压发展的一个重要因子。涡度方程的诊断表明,西伯利亚高压区负涡度的出现和加强是对流层中、上层负涡度平流和低层散度项的作用。 另外,西伯利亚高压热平衡计算表明,对流层有深厚的冷却层(热汇)。这种非绝热冷却将在对流层中导致深厚的下沉运动,从而引起中高层的辐合,低层的辐散,有利于高压的加强。因而西伯利亚高压是在动力和热力因子共同作用下形成的。  相似文献   

19.
台风的增强过程与气旋性涡度的急剧发展相伴。使用滑动平均的空间滤波方法对WRF模式的模拟结果进行尺度分离, 进而诊断分析台风SANBA突然增强过程中垂直涡度及环流的发展演变特征。结果表明, 台风突然增强的过程中, 眼壁区上升速度增大, 暖心结构增强, 同时垂直涡度迅速增强。当SANBA从热带风暴发展为强热带风暴时, 对流层低层辐散辐合及垂直速度分布的不均匀对台风涡旋结构的增强强度相当, 在台风内部以增强区域为主同时与减弱区域交错分布; 当SANBA发展增强为强台风时, 对流层低层的散度项与倾斜项在台风中心附近均表现为强的正中心, 台风低层径向入流的增强导致低层辐合加强对台风的增强起到主要作用。台风中心区域平均环流强度随台风的不断增强而不断增大, 且从900 hPa高度不断向高层发展, 其中环流方程中的EED/EET项的发展变化可以表征台风发展初期散度项和倾斜项的主要变化。   相似文献   

20.
The influence of intraseasonal oscillation (ISO) on TC genesis over the northwestern Pacific is studied through comparing analyses of the more and less TC years from 1979 to 2006. It is indicated that the ISO strongly affects the TC genesis. In the years for more TC genesis, the ISO is weak and propagates insignificantly in the area to the west of the Philippines, but the ISO is strong in the area to the east of the Philippines and propagates significantly northwestward. In this situation, the Walker cell shifts gradually westward from the tropical western Pacific to the tropical eastern Indian Ocean. Convergent winds appear in the lower atmosphere while divergent winds in the upper atmosphere, suggesting the presence of enhanced ascending flow over the 140-160°E region and a favorable condition for TC genesis. Moreover, in the years for less TC genesis, the ISO gradually becomes stronger in the area to the west of the Philippines and significant eastward propagation prevails from the eastern Indian Ocean to the area around 120°E; the ISO is weak in the area to the east of the Philippines. During these years, the Walker circulation gradually moved eastward, with convergent winds in the upper troposphere and divergent winds in the lower troposphere. Sinking motion was significant, unfavorable for the TC genesis over the Northwestern Pacific.  相似文献   

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