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1.
热带气旋强度资料的差异性分析   总被引:16,自引:4,他引:16  
余晖  胡春梅  蒋乐贻 《气象学报》2006,64(3):357-363
通过对比西北太平洋3个主要预报中心(中国气象局(CMA)、日本东京台风中心(RSMC Tokyo)和美国联合台风警报中心(JTWC))的16 a数据,分析了不同来源的热带气旋(TC)强度资料的差异性。结果表明:CMA与RSMCTokyo和JTWC的TC强度均值分别相差0.6和1.7 m/s,均通过1%信度的统计检验,即存在显著差异;3个中心对同一TC确定的强度最大差异超过30 m/s;CMA资料的台风数多于RSMC Tokyo和JTWC,年台风频数的均方差也最大,但是3个中心资料的各级TC频数差异均无统计显著性。对比有、无飞机探测时段的资料发现,对TC进行飞机探测可在一定程度上减小各中心在确定TC强度方面的分歧。为了初步了解上述资料问题对TC强度预报的可能影响,采用一个气候持续性预报方法,取不同来源的TC强度资料进行了4 a(2000—2003年)的预报。发现据JTWC资料所得TC强度预报有最大的均方根误差,RSMCTokyo的最小,CMA居中;据CMA和RSMC Tokyo(CMA和JTWC)资料,对相同TC相同时次24 h预报的平均绝对偏差达2.5(4.0)m/s,最大可相差16(21)m/s。可见,西北太平洋TC强度的基本资料问题增加了预报的难度。  相似文献   

2.
Influences of Tropical Cyclones on China During 1965-2004   总被引:2,自引:0,他引:2  
Using the Joint Typhoon Warning Center (JTWC) and China Meteorological Administration (CMA) tropical cyclone track datasets, variations in frequency and intensity of the affecting-China tropical cyclones (ACTCs) are studied for the period of 1965-2004. First, the differences between the two tropical cyclone datasets are examined. The annual frequencies of tropical cyclones in the western North Pacific basin are reasonably consistent to each other, while the intensity records are less reliable. The annual numbers of ACTCs based on different datasets are close to each other with similar interdecadal and interannual variations. However, the maximum intensity and the annual frequency of ACTCs for strong categories show great dependence on datasets. Tropical cyclone impacts on China show the same variations as the annual number of ACTCs and also show dependence on datasets. Differences in tropical cyclone impacts on China are mainly caused by datasets used. The annual frequency of ACTCs, especially the length of lifetime of ones that make landfall, and the intensity estimates all have effects on the value of impacts on China.  相似文献   

3.
浙江省热带气旋倒槽暴雨气候特征研究   总被引:2,自引:1,他引:2  
基于近40年热带气旋(Tropical Cyclone,简称TC)日降水和最佳路径等观测资料,采用数理统计、天气学分析等方法对浙江省TC倒槽暴雨分布特征及其与TC的相互关系进行研究。(1)浙江省年均会发生1.8次TC倒槽暴雨,占TC暴雨总数约4成,是浙江省台风暴雨中的一种重要形式。每年8—9月是TC倒槽暴雨高发期,暴雨主要发生在宁波南部至温州一带沿海地区,暴雨中心多位于台州和温州沿海。(2)引发浙江省TC倒槽暴雨的热带气旋多在粤东至浙南登陆之后北上转向或西北行,登陆当天最易发生暴雨且雨强最强。暴雨发生时,福建中部沿海经海峡至台湾东北部一带是TC高频活动区。(3)距TC中心2.5~5.0纬距之间和TC东北偏北象限是倒槽暴雨中心的高频落区;较强暴雨发生在TC强度为热带低压时,且强中心易位于TC东北偏东象限,极端强降水发生主要与热带低压和副高等相互作用形成的偏东暖湿急流、TC倒槽强辐合和TC东北偏东象限中尺度深对流系统频繁活动有关。   相似文献   

4.
Based on the barotropic primitive equation in the polar coordinate system and the appropriate assumption, we obtained the mathematical equation of orographic forcing on unit mass air parcel. With the consideration of the frictional stress of the sea and land, supposing that parcel velocity in tropical cyclones is in linear variation and that the distribution of surface pressure is circular, a set of equations are derived, which describe the impact of orographic slope error, the central pressure error and position error of tropical cyclones on the wind field in the tropical cyclone. Typhoon Wipha (2007) is selected to verify the above interpretation method. The results show that the orographic slope, the frictional coefficient, the intensity and position of the cyclone are the important factors which have great influence on the interpretation of wind information about tropical cyclones. The dynamic interpretation method gives very good results, especially for the coastal area. It is applicable to improving the forecasts of the wind field in tropical cyclones.  相似文献   

5.
A DYNAMICAL INTERPRETATION OF THE WIND FIELD IN TROPICAL CYCLONES   总被引:1,自引:0,他引:1  
Based on the primitive equations in polar coordinates, supposing that parcel velocity in tropical cyclones is in linear variation and that the distribution of surface pressure agrees with the Fujita formula, a set of equations are derived, which describe the impact of perturbations of central pressure, position of tropical cyclones, direction and velocity of movement of tropical cyclones on the wind field. It is proved that the second order approximation of the kinetic energy of tropical cyclones can be described by the equations under linear approximation. Typhoon Wipha (2007) is selected to verify the above interpretation method, and the results show that the interpretation method of the wind field could give very good results before the landfall of tropical cyclones, while making no apparent improvement after the landfall. The dynamical interpretation method in this paper is applicable to improving the forecasts of the wind field of tropical cyclones close to the coast.  相似文献   

6.
利用台风年鉴资料、雨量站观测资料及ERA-interim 1 °×1 °分析资料等,对1980—2015年在广东珠江口以西(徐闻-珠海)登陆且继续偏西(北)行但引发距离登陆点较远的粤东地区出现暴雨(“西登东雨”)的一类严重不对称热带气旋暴雨特征进行了分析。结果表明:在珠江口以西登陆的热带气旋中有近一半会给粤东地区带来暴雨;其登陆点位置远近与粤东暴雨发生与否没有直接联系,即登陆点越靠近(珠江口)并不一定使粤东更易出现暴雨;其登陆强度越强也不一定使粤东出现暴雨可能性越大,但使粤东出现特别弱降水(< 10 mm)的热带气旋多集中在(强)热带风暴级别。进一步分析引发粤东暴雨的天气形势及要素特征表明,热带气旋东侧的低空东南急流、偏东急流和偏南急流以及边界层的辐合线(台风槽)是引发粤东出现暴雨的重要原因,西太平洋副热带高压(简称副高)西南侧和“方头”副高西侧是粤东暴雨的有利形势;相似的低层风场和中层形势场背景下,700~500 hPa的湿度条件会明显影响到粤东出现暴雨的可能性的大小。   相似文献   

7.
登陆热带气旋影响湖南并造成强降水的气候特征   总被引:7,自引:6,他引:1  
利用1951~2007年热带气旋、湖南降水资料,统计分析了登陆影响湖南的热带气旋时空分布,及造成的强降水特征.结果表明:57年中登陆影响湖南的热带气旋共161个,平均每年3个,主要出现在7~9月,影响热带气旋主要为台风或以上强度;影响湖南的热带气旋登陆地点以广东、福建最多,强度达强热带风暴或以上的热带气旋可造成极端暴雨降水,时间主要出现在8月.20世纪90年代以后暴雨强度呈加大趋势.  相似文献   

8.
西北太平洋双热带气旋相互作用统计分类及其特征分析   总被引:2,自引:0,他引:2  
采用中国气象局与上海台风研究所提供的1949-2007年西北太平洋热带气旋最佳路径资料,统计分析了西北太平洋上的双(多)热带气旋相互作用现象.针对统计出的双热带气旋样本,根据相互作用两气旋的单独移动路径和它们相互作用的路径特征,归纳得到7种相互作用类型( A~G),并用聚类分析方法拟合得到每种类型的平均回归路径.分析讨...  相似文献   

9.
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   

10.
西北太平洋热带气旋强度与环境气流切变关系的气候分析   总被引:5,自引:4,他引:1  
采用NCEP/NCAR再分析资料和JTwC(美国关岛联合台风警报中心)资料,对1974~2004年5~10月西北太平洋热带气旋(TC)强度和环境风垂直切变进行了趋势特征、振荡周期和空间结构分析.结果表明:西北太平洋热带风暴强度以上TC的最大风速和环境风垂直切变在时间上有相反的变化趋势,弱的环境风垂直切变有利于TC强度的增大;前12 h的环境风垂直切变对TC强度的发展影响最大.环境风垂直切变在两北太平洋TC最强的年份表现为环境风切变值小,TC发生密集;最弱的年份表现为环境风切变值大,TC发生稀疏.  相似文献   

11.
Outgoing Longwave Radiation (OLR) has been shown to play an important role in climatic diagnosis and long-term prediction and research. With the OLR data 1974 ~ 1997 as observed by satellites, the characteristics are computed. The results are used to depict the location and intensity of the subtropical high in the study of the relationship between the annual frequency of tropical cyclones affecting the Fujian province and ITCZ / subtropical high. It is shown that in years of fewer (more) tropical cyclones, the ITCZ is southward (northward) located with weaker (stronger) intensity, and the subtropical high is southward (northward). As shown in the relationship between the anomalous years of tropical cyclones and characteristics of preceding OLR fields, the OLR anomalies are just oppositely distributed in the Pacific Ocean for years of more (fewer) tropical cyclones. In other words, the years of fewer (more) tropical cyclones are associated with positive anomalies of OLR in the tropical west Pacific but negative (positive) anomalies in the equatorial central and eastern Pacific. It is hoped that our study be setting foundation for short-term climatological prediction of tropical cyclones.  相似文献   

12.
利用NCEP/NCAR月平均再分析资料、OLR资料和中国气象局编辑的<台风年鉴>及<热带气旋年鉴>资料,对西北太平洋和南中国海夏季中心附近的平均风力达8级(17 m/s)或以上的热带气旋(含热带风暴、强热带风暴和台风,以下统称台风)牛成频数与气候背景的关系进行了研究分析.对台风牛成多寡的气候背景差异和特征进行比较表明,前期冬春季海温和赤道辆合带的异常与夏季台风生成有密切的关系.前期冬春季在类似于La Nina型海温距平分布背景下,从冬至夏在赤道中太平洋160°E附近的ITCZ有一个向西北方向加强北抬的过程,太平洋ITCZ的活动偏北偏强,赤道太平洋有异常活跃的ITCZ向西太平洋台风主要源地推进,有利于后期夏季台风的生成;相反,前期冬春季在类似于E1 Nino型海温距平分布背景下,赤道西太平洋ITCZ偏弱偏南,不利于后期夏季的台风生成.在夏季多台风年,前期冬季西太平洋暖海温异常为后期台风的发展提供了重要的有利背景,在暖海温的持续作用下,对流层的风场辐合异常增强,增加了暖海温区的水汽供应.到了前期春季,热带辐合带的扰动扮演了更为重要的角色.随着赤道辐合带的北移,附加的异常辐合位于暖海温区时,会激发出低空大尺度水汽辐合与自由大气中潜热释放之间的正反馈,有利于后期台风的生成.当前期冬季至春季西北太平洋海温持续异常偏冷时,对流层的风场为辐散异常,减少了冷海温区的水汽供应,导致赤道辐合带不活跃,缺乏必要扰动,夏季台风生成偏少.  相似文献   

13.
广东近海台风路径异常的统计特征   总被引:5,自引:0,他引:5       下载免费PDF全文
对1949~2000年的52年间在广东沿海近岸转折或沿海岸移动的热带气旋异常路径进行了统计分析,同时还研究了广东沿海的地形特征。结果发现,转折点 (或靠岸点) 主要集中在有明显山脉地形的区域,同时靠岸前热带气旋有移速减慢的特征。另外还发现,转折前强度越强,则转折点离岸越近;靠岸前平均移速越小,则转折角度越大;靠岸前强度越强,则其沿海岸移动所需入射角越小。  相似文献   

14.
Based on the data(including radius of maximum winds) from the JTWC(Joint Typhoon Warning Center),the tropical cyclones(TCs) radii of the outermost closed isobar, TCs best tracks from Shanghai Typhoon Institute and the Black Body Temperature(TBB) of the Japanese geostationary meteorological satellite M1 TR IR1, and combining13 tropical cyclones which landed in China again after visiting the island of Taiwan during the period from 2001 to2010, we analyzed the relationship between the number of convective cores within TC circulation and the intensity of TC with the method of convective-stratiform technique(CST) and statistical and composite analysis. The results are shown as follows:(1) The number of convective cores in the entire TC circulation is well corresponding with the outer spiral rainbands and the density of convective cores in the inner core area increases(decreases) generally with increasing(decreasing) TC intensity. At the same time, the number of convective cores within the outer spiral rainbands is more than that within the inner core and does not change much with the TC intensity. However, the density of convective cores within the outer spiral rainbands is lower than that within the inner core.(2) The relationship described above is sensitive to landing location to some extent but not sensitive to the structure of TC.(3) The average value of TBB in the inner core area increases(decreases) generally with increasing(decreasing) of TC intensity, which is also sensitive to landing situation to some extent. At the same time, the average value of TBB within the outer spiral rainbands is close to that within the entire TC circulation, and both of them are more than that within the inner core. However, they do not reflect TC intensity change significantly.(4) The results of statistical composite based on convective cores and TBB are complementary with each other, so a combination of both can reflect the relationship between TC rainbands and TC intensity much better.  相似文献   

15.
The differences in the climatology of extratropical transition(ET) of western North Pacific tropical cyclones(TCs) were investigated in this study using the TCs best-track datasets of China Meteorological Administration(CMA),Japan Meteorological Agency(JMA) and the Joint Typhoon Warning Center(JTWC). The results show that the ET identification, ET completion time, and post-ET duration reported in the JTWC dataset are greatly different from those in CMA and JMA datasets during 2004-2010. However, the key differences between the CMA and JMA datasets from 1951 to 2010 are the ET identification and the post-ET duration, because of inconsistent objective ET criteria used in the centers. Further analysis indicates that annual ET percentage of CMA was lower than that of JMA, and exhibited an interannual decreasing trend, while that of JMA was an unchanged trend. The western North Pacific ET events occurred mainly during the period June to November. The latitude of ET occurrence shifted northward from February to August,followed by a southward shift. Most of ET events were observed between 35°N and 45°N. From a regional perspective,TCs tended to undergo ET in Japan and the ocean east to it. It is found that TCs which experienced the ET process at higher latitudes were generally more intense at the ET completion time. TCs completing the ET overland or offshore were weaker than those finishing the ET over the ocean. Most of the TCs weakened 24 h before the completion of ET.In contrast, 21%(27%) of the TCs showed an intensification process based on the CMA(JMA) dataset during the post-ET period. The results presented in this study indicate that consistent ET determination criteria are needed to reduce the uncertainty involved in ET identification among the centers.  相似文献   

16.
As shown in comparisons of the characteristics of inter-annual and inter-decadal variability and periodical changes in the number of tropical cyclones forming over the western North Pacific by three major forecast centers, i.e. China Meteorological Administration (CMA), Regional Specialized Meteorological Center of Tokyo (JMA) and Joint Typhoon Warning Center (JTWC) of Guam, there are the following important points. (1) Climatology of tropical cyclone (TC) or typhoon (TC on the intensity of TS or stronger) shows some difference in tropical cyclone frequency among the centers, which is more notable with TC than with typhoon. Both of them are more at the database of CMA than at those of the other two centers. (2) The difference is too significant to ignore in the inter-annual variability of tropical cyclone frequency between CMA and JTWC, which mainly results from the obvious difference in the inter-annual variability of the number of generated tropical depression (TD) between the two databases. The difference is small in the inter-annual variability of TS formations among all the three databases, and consistence is good between JMA and CMA or JTWC. (3) Though differences are not significant in the periodical variation of TC formations between CMA and JTWC, they are markedly apart in the inter-decadal variability, which is mainly shown by an anti-phase during the 1990s. (4) Non-homogeneity may exist around the late stage of the 1960s in the data of tropical cyclone frequency.  相似文献   

17.
A statistical comparative analysis of tropical cyclone activity over the Arabian Sea and Bay of Bengal (BoB) has been conducted using best-track data and wind radii information from 1977 to 2018 issued by the Joint Typhoon Warning Center. Results have shown that the annual variation in the frequency and duration of tropical cyclones has a significant increasing trend over the Arabian Sea and an insignificant decreasing trend over the BoB. The monthly frequency of tropical cyclones in both the Arabian Sea and the BoB shows a notable bimodal character, with peaks occurring in May and October–November, respectively. The maximum frequency of tropical cyclones occurs in the second peak as a result of the higher moisture content at mid-levels in the autumn. However, the largest proportion of strong cyclones (H1–H5 grades) occurs in the first peak as a result of the higher sea surface temperatures in early summer. Tropical cyclones in the Arabian Sea break out later during the first peak and activity ends earlier during the second peak, in contrast with those in the over BoB. This is related to the onset and drawback times of the southwest monsoon in the two basins. Tropical cyclones in the Arabian Sea are mainly generated in the eastern basin, whereas in the BoB the genesis locations have a meridional (zonal) distribution in May–June (October–November) as a result of the seasonal movement of the low-level positive vorticity belt. The Arabian Sea is dominated by western and northwestern tropical cyclones by that track west and NW, accounting for about 74.6%, whereas the tropical cyclones with a NE track account for only 25.4%. The proportions of the three types of tracks are similar in the BoB, with each accounting for about 33% of the tropical cyclones. The mean intensity and size of tropical cyclones over the Arabian Sea are stronger and larger, respectively, than those over the BoB and the size of tropical cyclones over the North Indian Ocean in early summer is larger than that in autumn. The asymmetrical structure of tropical cyclones over North Indian Ocean is affected by the topography and the longest radius of the 34 kt surface wind often lies in the eastern quadrant of the tropical cyclone circulation in both sea areas. FAN Xiao-ting (樊晓婷), LI Ying (李 英), et al.  相似文献   

18.
This study focuses on the decadal variability of tropical cyclones (TC) over the Western North Pacific (WNP) and how these changes are related to the Madden–Julian Oscillation (MJO). It was done with the help of the Real-time Multivariate MJO index from the Australian Government Bureau of Meteorology of the Centre for Australian Weather and Climate Research, TC data from the Joint Typhoon Warming Center best track datasets, and daily and monthly datasets from the NCEP/NCAR reanalysis center. The results show that the TC frequency in the WNP exhibited a statistically significant decrease during 1998–2010 compared to during 1979–1997. The decrease in TC frequency in the WNP mainly occurred during MJO active phases (i.e., phases 4, 5, 6, and 7). Further investigation of the climate background and the propagation differences of the MJO between 1979–1997 and 1998–2010 was performed. The La Ni?a-like tropical sea surface temperature cooling caused stronger Walker circulation and thus induced unfavorable atmosphere conditions for WNP TC genesis including a low-level easterly anomaly, a negative relative vorticity anomaly, an increase in sea-level pressure, and stronger vertical wind shear. Moreover, shortening of the MJO cycle, decline in the duration of the active phases in the WNP, and easterly anomaly and shrinkage of the convection area during MJO active phases may also partly explain the decadal variation of TC.  相似文献   

19.
In the present study, a new approach is discussed to find out the residual steering flow from the high-resolution global Numerical Weather Prediction (NWP) model-forecasted wind fields, which have been used in the Lagrangian advection model to determine the track of tropical cyclones formed in the Indian Ocean. The Lagrangian advection model is newly developed model and conceptually closer to the dynamical models, which utilizes environmental steering flow and the effect due to earth’s rotation (the beta-effect) to determine the motion of cyclone. In this approach, the effect of environmental flow on the cyclone track is examined by removing the existing cyclone vortex from the steering flow which is determined by potential vorticity approach. A new approach based on vortex pattern matching has been used to identify the cyclone vortex and to remove it from the steering flow. The tracks of five tropical cyclones (viz., Nargis, Khai_Muk, Nisha, Aila and Phyan) which were formed in the North Indian basin during the period 2008–2009 have been generated by the Lagrangian advection model using the proposed scheme. The position errors were computed with respect to the Joint Typhoon Warning Center (JTWC) best track analysis positions and compared with that of without-vortex-removal scheme. The results show that the mean track errors for five cyclones are reduced by 6–35?% for 12–72?h forecast in case of vortex-removal scheme as compared to the without-vortex-removal scheme.  相似文献   

20.
西北太平洋热带气旋生成数在不同资料集上的差异性比较   总被引:2,自引:2,他引:0  
比较分析中国气象局(CMA)、美国台风联合警报中心(JTWC)和日本RSMC Tokyo台风中心(JMA)台风资料频次的年际、年代际变化和周期变化特征,结果表明,不同资料中心的热带气旋(TC)、台风(TS强度及以上的TC)生成数的气候值存在一定的差异,热带气旋生成数的差异较为明显,台风生成数的差异相对要小,CMA资料中热带气旋、台风生成数相对偏多;CMA与JTWC间热带气旋生成数年际间变化差异显著而难以忽略,其差异主要来自TD生成数的明显不同;三个中心关于台风生成数的一致性比较好,其中JMA台风资料与另外两个中心资料间的一致更好;CMA与JTWC西北太平洋热带气旋生成数的周期变化间无明显差异,但年代际间变化有明显差异,主要表现为1990年代的反位相;台风生成数资料可能在1960年代后期存在非均一性。  相似文献   

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