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1.
环境气流及非绝热加热对热带气旋结构和移动的影响   总被引:4,自引:0,他引:4  
设计一个三层的准地转斜压模式,研究了不同结构环境气流和环境非绝热加热场中热带气旋移动路径和结构的特征.数值试验的结果表明:(1)无外界影响下热带气旋向西北方向移动,垂直速度场有明显的螺旋结构;(2)热带气旋主要受基本环境气流引导,非对称环流中的小扰动干扰了热带气旋的移动;(3)非绝热加热场对热带气旋影响较大,热带气旋有向加热中心移动的倾向,同时热带气旋的水平、垂直结构都有较大的变化.  相似文献   

2.
本文在分析研究影响钦州地区的21个热带气旋个例时发现两种不同的热带气旋环流模式;对其进行地转偏差诊断分析,结果表明:地转偏差在热带气旋大暴雨中起着极重要的作用;如果地转偏差加强热带气旋中辐合上升运动,则热带气旋影响时有大暴雨;反之,无大暴雨,地转偏差诊断分析具有预报意义,实际工作中可以应用地转偏差诊断分析结果来预报热带气旋大暴雨。  相似文献   

3.
浙江热带气旋登陆前移动速度变化分析   总被引:1,自引:1,他引:0  
利用1949~2004年登陆浙江的35个热带气旋的资料,计算了热带气旋登陆前24h和6h的速度和移速变率。结果表明,登陆浙江的热带气旋60%在登陆前移速加快,28.6%移速基本不变,11.4%移速减慢。从热带气旋登陆前的形势场、引导气流及它的结构和强度变化等方面进行分析,发现500hPa形势场的调整和引导气流的大小对热带气旋移速的变化起主导作用;热带气旋主流入通道的变化、热带气旋之间的互旋等与其移速变化有关。登陆前,热带气旋移速与其强度有一定的关系。  相似文献   

4.
斜压涡旋中的通风气流与热带气旋移动的关系   总被引:16,自引:4,他引:16  
田永祥 《气象学报》1996,54(1):83-94
应用准地转斜压模式数值模拟了热带气旋的移动。将热带气旋的流场分解为轴对称分量和非对称分量,研究非对称流场中的通风气流矢量与热带气旋移动矢量的关系。数值试验结果表明:(1)在热带气旋的非对称流场中,不但有大尺度β涡旋,而且还有小尺度涡旋。(2)小尺度涡旋与大尺度β涡旋之间的相互作用导致热带气旋移向的摆动和移速的振荡。(3)应用Fiorino和Elsberry的方法计算的通风气流矢量与热带气旋移动矢量有很大偏差。(4)应用改进的方法计算的通风气流矢量与热带气旋移动矢量相关密切。  相似文献   

5.
热带气旋逆时针打转物理机制的研究   总被引:1,自引:2,他引:1  
应用一个无基本气流的准地转斜压模式数值模拟热带气旋逆时针打转运动。分析结果表明:对称气流对非对称涡度的平流引起非对称流场中的小尺度涡旋和通风气流逆时针旋转;旋转的通风气流引导热带气旋作逆时针打转运动。  相似文献   

6.
热带气旋内部非对称积云对流对其移动的影响   总被引:3,自引:0,他引:3  
陈蓉  谭锐志  林元弼 《大气科学》1996,20(2):195-201
在一个简单的两层板对称CISK模式中,我们考虑了热带气旋内部非对称积云对流的作用,并由此推导出热带气旋移动的动力学速度公式。利用SPECTRUM-90这套热带气旋试验资料,本文着重分析了热带气旋内部非对称积云对流对其运动的影响,以探索热带气旋移动与引导气流偏差的可能机理。计算结果表明,考虑积云对流非对称作用产生的动力学速度确能明显改善热带气旋的路径预报效果,尤其对于一些疑难路径,这种改善作用更突出。因此,CISK理论不仅是热带气旋发展和维持的重要机制,而且对热带气旋移动的影响也不可忽视。  相似文献   

7.
双热带气旋相互作用的研究   总被引:7,自引:1,他引:6  
田永祥  寿绍文 《气象学报》1998,56(5):584-593
采用无基本气流的无辐散正压模式模拟了双热带气旋的运动。应用非对称理论研究了双热带气旋的相互作用。双热带气旋中的每个热带气旋主要由通过其中心的非对称气流(即通风气流)作用而移动。这股非对称气流是由其自身的线性和非线性效应产生的非对称涡旋与其配对热带气旋形成的非对称涡旋相叠加而引起的。  相似文献   

8.
β涡旋的垂直结构及其对热带气旋移动的影响   总被引:3,自引:1,他引:3  
应用准地转斜压模式数值模拟热带气旋的移动,分析大尺度β涡旋的水平和垂直结构及其对热带气旋移动的。研究结果表明,两β涡旋之间的准均匀流(通风气流)仍然与热带气旋的运动相关。  相似文献   

9.
对2012—2013年GRAPES_TYM模式热带气旋路径预报结果进行检验,结果表明:模式对所有类型路径预报在24h、48h和72h预报时效的平均距离误差分别为94.3km,143.7km和260.8km,并且存在偏北的系统性偏差;对于南海TC,模式对TC移向预报较实况偏右,移速误差较小,移向偏差是路径偏差的主要原因;另外统计得到模式对TC移向的预报偏差与对其环境引导气流预报偏差有密切的关系,以1213号台风"启德"为例进一步通过移向误差诊断方程探讨了环境引导气流预报偏差(包括环境风场预报偏差、环境引导气流半径偏差及环境引导气流厚度偏差)对TC移向偏差的影响,而环境引导气流预报误差来源与模式对大尺度天气系统、TC大小及强度的预报偏差有关。  相似文献   

10.
利用中尺度数值模式设计一组高分辨率理想试验,采用位涡趋势方法定量诊断分析热带气旋在登陆我国华东沿海地形时,其运动发生的精细化变化以及不同因子的贡献。结果表明,平地的存在使得登陆热带气旋移速相对更快,当华东沿海地形存在时,热带气旋移速显著增大,这种增速现象主要是由于平地和地形所引起的非对称气流以及相应的引导气流变化所致,这很可能是导致预报路径误差的一个重要原因。平地试验中,陆地在热带气旋低层激发出中小尺度的非对称气流,与之不同的是,实际地形的加入激发出更大尺度并且更强的非对称偏南气流。位涡趋势方法的诊断结果表明,非引导效应总体而言对热带气旋运动贡献较小,这是因为这些因子相互抵消,但在不同的垂直层次上,不同的非引导因子贡献存在明显的差异。  相似文献   

11.
Using the T63L16 analysis data with the resolution of 1.875╳1.875 degree of latitude and longitude obtained from National Meteorological Center (NMC) and the real central position information of tropical cyclone (referred to as TC hereafter) numbered by NMC, the basic environmental geostrophic flow at 126 time levels of 25 TCs in 1996 are calculated. The vertical distribution features of the flows are analyzed. Besides, the deviation of real TC tracks from the flows (referred as steering deviation hereafter, namely, the deviation between the real central position of TC and the position calculated according to the steering flow) is also investigated. The result shows that the steering deviation would be different if the domain used to calculate the steering flow is different. The present paper obtains the optimum domain size to calculate the steering flow. It is found that the steering deviation is related to the velocity of steering flow and the initial latitude and intensity of TC itself, and that TC motion has relationship with the vertical shear structure of environmental geostrophic flow. The result also shows that the optimum steering flow is the deep-layer averaged basic flow from 1000 hPa to 200 hPa. Having the knowledge of these principle and features would help make accurate forecast of TC motion.  相似文献   

12.
Three typhoons, Goni, Morakot and Etau which were generated in Western Pacific in 2009, are successfully simulated by the WRF model. The horizontal and vertical vorticity and their interaction are analyzed and diagnosed by using the simulation results. It is shown that their resultant vectors had a fixed pattern in the evolution process of the three typhoons: The horizontal vorticity converged to the tropical cyclone (TC) center below 900 hPa level, flowed out from it at around 900 to 800 hPa, and flowed in between 800 hPa and 700 hPa. If multiple maximum wind speed centers showed up, the horizontal vorticity converged to the center of the typhoon below the maximum wind speed center and diverged from the TC center above the maximum wind speed center. At low levels, the three typhoons interacted with each other through vertical circulation generated by the vortex tube. This circulation was mainly generated by the eastward or westward horizontal vorticity vectors. Clouds and precipitation were generated on the ascending branch of the vertical circulation. The vortex tubes often flowed toward the southwest of the right TC from the northeast of the left TC. According to the full vorticity equation, the horizontal vorticity converted into the vertical vorticity near the maximum wind speed center below 850 hPa level, and the period of most intense conversion was consistent with the intensification period of TC, while the vorticity advection was against the intensification. The vertical vorticity converted into the horizontal vorticity from 800 hPa to 600 hPa, and the wind speed decreased above the maximum wind speed region at low levels.  相似文献   

13.
Based on NCEP/CFSR 0.5° reanalysis data and the best track data from the Japan Tokyo Typhoon Center,composite and comparative analyses demonstrate the asymmetrical structures of the temperature and humidity in tropical cyclones over the Western North Pacific and the South China Sea from 1979 to 2010.The results are shown as follows.(1) With intensifying tropical cyclones,the flow field tends to become gradually more axisymmetric;however,the asymmetry of the specific humidity in the outer regions is more obvious.(2) In general,tropical cyclones have a non-uniform,vertical, "double warm-core" structure.The "warm-cores" in the lower level of weak tropical cyclones and in the higher level of strong tropical cyclones are the stronger of the two.(3) The distribution area of a "warm-core" is enhanced with cyclone intensification and tends to become more axisymmetric.At 200 hPa,the "warm-core" of a weak cyclone has a weak anticyclone in the center,whereas that of a strong cyclone has a weak cyclone in the center.(4)The "wet-core" of a tropical cyclone is primarily located in the lower level(700-850 hPa).With the cyclone's intensification,the intensity of the "wet-core" increases and the scope of the 0.8 g kg~(-1) specific humidity anomaly tends to expand to higher levels.(5) With the cyclone's deepening,the pseudo-equivalent potential temperature at different levels in different regions increases.In addition,the largest warming rates at each intensity level in the different regions occur in the core area,followed in turn by the envelope and outer areas.  相似文献   

14.
The influence of the interannual variation of cross-equatorial flow(CEF) on tropical cyclogenesis over the western North Pacific(WNP) is examined in this paper by using the tropical cyclone(TC) best track data from the Joint Typhoon Warning Center and the JRA-25 reanalysis dataset. The results showed that the number of TCs forming to the east of 140°E over the southeastern part of the western North Pacific(WNP) is in highly positive correlation with the variation of the CEF near 125° E and 150° E, i.e., the number of tropical cyclogeneses increases when the cross-equatorial flows are strong. Composite analyses showed that during the years of strong CEF, the variations of OLR, vertical wind shear between 200-850 h Pa, 850 h Pa relative vorticity and 200 h Pa divergence are favorable for tropical cyclogenesis to the east of 140°E over the tropical WNP, and vice versa. Moreover, it is also discussed from the view of barotropic energy conversion that during the years of strong CEF, an eastward-extended monsoon trough leads to the rapid growth of eddy kinetic energy over the eastern part of WNP, which is favorable for tropical cyclogenesis;but during the years of weak CEF, the monsoon trough is located westward in the western part of the WNP, consistent with the growth area of eddy kinetic energy. As a result, there are fewer TC geneses over the eastern part of WNP.Besides, the abrupt strengthening of a close-by CEF 2-4 days before tropical cyclogenesis may be the one of its triggers.  相似文献   

15.
热带气旋"黄蜂"动热力特征演变的模拟分析   总被引:9,自引:1,他引:8  
以"中国登陆台风试验"项目的目标热带气旋"黄蜂"为对象,用高分辨数值模式成功模拟了其近海加强和登陆减弱的过程,从定量和时间演化角度细致分析了热带气旋(TC)各阶段的动、热力特征,包括对流加热特性、温湿结构、稳定度、涡散度、垂直运动、垂直环流、水平环流等基本动、热力因子的时空结构特征,揭示了该热带气旋的大量结构特点,如对流加热的强盛和非对称性、强热带风暴的无眼结构、低层的东暖西冷结构、涡度的准圆形对称结构、东/西侧环流正/斜压性的差异、低层辐合和上升运动的准周期振荡等等.这些结构特征的揭示对深入细致地研究和认识南海热带气旋的特点和演变机理具有重要学术意义.  相似文献   

16.
使用1979—2015年欧洲长期天气预报中心所提供的ERA-Interim再分析资料和中国气象局上海台风研究所整编的西北太平洋热带气旋(TC)最佳路径资料,分析了7—8月东亚高空纬向风的季节内振荡(ISO)信号特征及其与登陆中国大陆热带气旋(TC)的关系。结果表明:(1)200 hPa纬向风在副热带、中纬度地区季节内振荡显著,尤其是在纬向西风带中,有两个南北分布的大值中心,方差贡献均超过50%。(2)基于东亚高空纬向风的ISO和EOF典型空间模定义的西风指数(EAWI),可以用来描述东亚高空纬向西风在ISO尺度上的经向移动。(3)在西风指数的ISO负位相期间,登陆中国东南沿岸22 °N以北的TC增多;反之减少。在西风急流出口南侧的副热带区域,200 hPa ISO纬向风向北移动,使纬向西风位置偏北,出现东风异常,从而使西风减弱;TC引导气流为向西的异常,有利于TC登陆中国大陆偏北沿岸;同时有异常的ISO纬向异常东风切变,有利于TC登陆过程的维持。(4)在西风指数的ISO负位相期间,在对流层高层西风急流出口区向南输送的天气尺度的E矢量,在TC登陆地区,出现异常扰动涡度通量的辐合,引起了该区域的西风减弱。   相似文献   

17.
分析1950年以来中等强度以上的ElNino和LaNina当年和次年夏季低纬度风场和500hPa高度距平场发现有不同特征。其中中-西太平洋近赤道地区850、200hPa上风场异常变化十分明显,这种异常变化与南北半球大气相互作用有密切关系。  相似文献   

18.
热带气旋强度变化研究进展   总被引:78,自引:10,他引:68  
端义宏  余晖  伍荣生 《气象学报》2005,63(5):636-645
自20世纪90年代后期以来,热带气旋强度变化研究越来越受到人们的重视,随着研究的不断深入,热带气旋强度变化研究取得了可喜的进展,文中总结近年来热带气旋强度变化的主要研究成果,主要包括(1)热带气旋的发生、发展和最大可能强度的研究;(2)行星涡度梯度、环境均匀流、环境流场垂直切变以及热带气旋外流与环境流的相互作用对热带气旋强度的影响及物理机制;(3)热带气旋结构与强度的变化关系,着重总结环境流场导致的非对称结构变化而引起的热带气旋强度变化以及对涡旋倾斜发展理论验证,分析了涡旋Rossby波的最新研究;(4)海洋热状况变化以及海洋飞沫对热带气旋强度的影响研究成果。分析指出,今后进一步开展用现代化卫星探测资料研究热带气旋强度变化外,还应加强热带气旋外流与环境流场的相互作用,海-气交界面的参数化问题,热带气旋结构变化与TC强度变化关系以及这种关系的物理本质的研究,通过深入研究,认识热带气旋强度变化的物理机制,提高热带气旋强度变化的预报能力。  相似文献   

19.
A new synthesized index for estimating the hazard of both accumulated strong winds and heavy rainfall from a tropical cyclone (TC) is presented and applied to represent TC potential hazard over Southeast China. Its relationship with the East Asian westerly jet in the upper troposphere is also investigated. The results show that the new TC potential hazard index (PHI) is good at reflecting individual TC hazard and has significantly higher correlation with economic losses. Seasonal variation of TC-PHI shows that the largest TC-PHI on average occurs in July-August, the months when most TCs make landfall over mainland China. The spatial distribution of PHI at site shows that high PHI associated with major landfall TCs occurs along the southeast coast of China. An East Asian westerly jet index (EAWJI), which represents the meridional migration of the westerly jet, is defined based on two regions where significant correlations exist between TC landfall frequency and zonal wind at 200 hPa. Further analyses show that an anomalous easterly steering flow occurred above the tracks of TCs, and favored TCs making landfall along the southeast coast of China, leading to an increase in the landfall TC when the EAWJ was located north of its average latitude. Meanwhile, anomalous easterly wind shear and positive anomaly in low-level relative vorticity along TCs landfall-track favored TC development. In addition, anomalous water vapor transport from westerly wind in the South China Sea resulted in more condensational heating and an enhanced monsoon trough, leading to the maintenance of TC intensity for a longer time. All of these environmental factors increase the TC potential hazard in Southeast China. Furthermore, the EAWJ may affect tropical circulation by exciting meridional propagation of transient eddies. During a low EAWJI phase in July-August, anomalous transient eddy vorticity flux at 200 hPa propagates southward over the exit region of the EAWJ, resulting in eddy vorticity flux convergence and the weakening in the zonal westerly flow to the south of the EAWJ exit region, producing a favorable upper-level circulation for a TC making landfall.  相似文献   

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