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1.
利用1949—2006年西北太平洋及南海的热带气旋(TC)资料,分析了登陆我国的TC强度、登陆时间、登陆后路径趋向及强度变化等气候特征,并重点讨论了直接登陆华东和登陆台湾后再次登陆华东的TC路径和强度趋势差异。结果表明,直接登陆华东的TC比登陆台湾后再次登陆华东(以下简称为间接登陆)的TC更易北上或北上转向,而间接登陆的TC更易维持西偏北行;另外直接登陆华东的TC登陆后的强度更易维持,其登陆后路径趋向在西北偏西和西南方位的强度明显减弱的百分比率比其它方位的大。   相似文献   

2.
北上热带气旋气候特征分析   总被引:3,自引:1,他引:2  
北上热带气旋是影响我国华北和东北地区的重要天气系统,其带来的大风和暴雨,常常造成我国北方地区的风灾和水灾。利用建国以来56 a的气象资料,对影响我国的北上热带气旋进行气候分析。结果表明:从时间上看,平均每年约有3个北上热带气旋,最早出现在5月下旬,最晚出现在11月中旬,其中以7月和8月为最多;每年6—9月为北上热带气旋登陆季节,7月和8月登陆的热带气旋占85%。从强度上看,能够到达北方的热带气旋一般都是较强的热带气旋,在进入北上热带气旋定义区后,总体强度明显减弱,但在进入黄渤海时仍能够达到台风的强度;与北上热带气旋相比,北上登陆热带气旋的强度更大。统计分析发现,在辽宁和华北登陆的热带气旋,其强度大于在山东半岛登陆的热带气旋。北上登陆热带气旋和北转向、中转向的热带气旋一般均能产生暴雨和大风。  相似文献   

3.
影响山东的热带气旋与西太平洋副热带高压的关系   总被引:3,自引:1,他引:2  
利用1949-2003年西太平洋副热带高压资料和影响山东热带气旋(TC)资料,通过合成、相关分析等方法对其进行了研究.结果表明:影响山东TC频数偏多年份,夏季西太平洋副热带高压位置偏北、偏东,副高强度偏弱,副高面积指数偏小;频数偏少年份,西太平洋副热带高压位置偏南、偏西,副高强度偏强.影响山东TC强度偏强年,西太平洋副热带高压位置偏南,副高西伸脊点偏西.影响山东TC强度偏弱年,夏季西太平洋副热带高压位置偏北,副高西伸脊点更偏东些.  相似文献   

4.
利用1949--2003年西太平洋副热带高压资料和影响山东热带气旋(TC)资料,通过合成、相关分析等方法对其进行了研究。结果表明:影响山东TC频数偏多年份,夏季西太平洋副热带高压位置偏北、偏东,副高强度偏弱,副高面积指数偏小;频数偏少年份,西太平洋副热带高压位置偏南、偏西,副高强度偏强。影响山东TC强度偏强年,西太平洋副热带高压位置偏南,副高西伸脊点偏西。影响山东TC强度偏弱年,夏季西太平洋副热带高压位置偏北,副高西伸脊点更偏东些。  相似文献   

5.
影响我国北方热带气旋的若干统计特征   总被引:5,自引:4,他引:5       下载免费PDF全文
利用中国气象局出版的1949—1994年台风年鉴资料,在大量普查的基础上,定义进入30°N以北、125°E以西热带气旋为影响我国北方的热带气旋。根据其后期移动路径的不同划分为:沿海北上、沿海转向、登陆北上、登陆填塞、登陆转向及西折6类。最后,对各类不同路径的热带气旋的气候特征及产生的暴雨区和暴雨强度做了详细的分析  相似文献   

6.
利用有限混合模型FMM聚类算法,将1951—2012年夏秋季(6—11月)登陆我国的热带气旋(Tropical Cyclone,TC)路径数据集分为三类,并对三类不同路径TC的季节变化、发生频数、环流形势等特征进行对比分析。研究表明,每类TC存在明显的特征差异:1)在夏季,第一、二类TC出现频数高于第三类,但在秋季第三类TC发生频数最高。2)第一类TC生成位置偏北,强度较强,生命史较长,路径略有向北发展的趋势,影响区域最广;第二类TC生命史最短,主要影响我国两广、福建一带;第三类TC生命史最长,路径略向西北方向发展。3)第一类TC在生成和消亡时的辐合程度最强,且副高脊线西伸脊点位置偏北;第二类TC在消亡时低层辐合最弱,且副高脊线西伸脊点位置偏西;第三类TC在生成时纬向风垂直切变最强,且副高脊线西伸脊点位置偏东南。  相似文献   

7.
2004年西北太平洋热带气旋的活动特点与成因研究   总被引:2,自引:4,他引:2  
对2004年台风汛期西北太平洋热带气旋的活动特点进行研究总结,进而对其成因做了分析。结果指出:2004年西北太平洋热带气旋主要特点是生成总数较常年略偏多,热带气旋生命史普遍较长、:生成时间相对集中、生成源地偏东,转向路径偏多,登陆气旋数多于常年平均值,登陆地段集中且偏北,集中在华东到日本一带。其成因在于:(1)副高面积偏大、强度偏强、位置偏北且西伸脊偏西,同时副高分布形态多呈块状,使得2004年台风的高频活动区向北偏移,直接对华东到日本一带造成威胁,乃至正面登陆影响;(2)澳大利亚高压强大,越赤道气流强,赤道辐合带辐合偏强、位置偏东,造成台风活动比较活跃且源地偏东;(3)西风带环流经向度较常年偏大而且副高多呈块状分布,东西两环副高之间形成的鞍型场有利于台风过此通道北上转向,导致转向台风偏多。  相似文献   

8.
使用中国气象局热带气旋资料中心的热带气旋最佳路径数据集和NCEP/NCAR再分析资料提供的月平均数据,对北上影响山东的热带气旋(tropical cyclone,TC)及其造成的极端降水进行统计分析,并揭示了有利于 TC北移影响山东的大气环流特征。结果表明:影响山东的 TC主要出现 于 6—9 月,其中盛夏时节(7、8 月)TC对山东影响最大;TC影响山东时,强度主要为台风及以下等 级,或已发生变性;TC会引发山东极端降水事件,TC极端降水多出现在夏秋季(7—9 月),其中8月的占比最大,9月次之,TC降水在极端降水事件中的占比约为 10%,但年际变化大,有些年份占比达60%以上,特别是1990 年以来 TC对极端降水的贡献显著增强;影响山东的 TC主要生成于西 北太平洋,多为转向型路径;当500 hPa位势高度异常场呈太平洋一日本遥相关型的正位相时,TC更易北上影响山东,此时西北太平洋副热带高压位置偏北,其外围气流会引导TC北上转向,对华东地区造成影响;850 hPa上,南海至西北太平洋存在异常气旋式环流,对流活跃,夏季风环流和季风槽加强,有利于TC的生成和发展,同时,华东、华南上空有异常上升运动,涡度增大,垂直风切变减小,水汽充沛,TC登陆后强度能得到较好的维持。  相似文献   

9.
概况今年第6号台风于7月23日08时,在太平洋马里亚纳群岛北部附近的洋面上生成。经一段不规则的移动,于26日14时减弱成低气压;27日14时,在冲绳岛以东的洋面上再度发展成台风,先向西,以后又向西偏北方向移动,强度逐渐加强,风力12级以上。于30日22时,在我省的玉环县登陆后北上,于1日上午在32°N附近转向东北入海。本文主要就其中的台风近海发展和后期路径的问题进行一些分析。  相似文献   

10.
资料     
《气象》2007,33(2)
2006年12月500hPa环流指数、环流特征量资料国家气候中心气候系统诊断预测室环流指数西太平洋副热带高压东亚槽极涡平均月候平均123456积指数面度指数强伸脊点西线位置脊界位置北均位置平均强度平经中度心位纬置度强度亚欧地区IzI m1.650.751.450.811.700.621.850.521.860.661.410.881.631.01亚洲地区IzI m1.560.691.110.791.570.681.550.681.820.581.650.531.630.94256790162114110970°W75°N-22006年12月亚洲地区逐日500hPa西风环流指数及副热带高压脊线(120°E、130°E、140°E)位置中央气象台中期预报科日12345678910111213141516…  相似文献   

11.
Using the International Comprehensive Ocean-Atmosphere Data Set(ICOADS) and ERA-Interim data, spatial distributions of air-sea temperature difference(ASTD) in the South China Sea(SCS) for the past 35 years are compared,and variations of spatial and temporal distributions of ASTD in this region are addressed using empirical orthogonal function decomposition and wavelet analysis methods. The results indicate that both ICOADS and ERA-Interim data can reflect actual distribution characteristics of ASTD in the SCS, but values of ASTD from the ERA-Interim data are smaller than those of the ICOADS data in the same region. In addition, the ASTD characteristics from the ERA-Interim data are not obvious inshore. A seesaw-type, north-south distribution of ASTD is dominant in the SCS; i.e., a positive peak in the south is associated with a negative peak in the north in November, and a negative peak in the south is accompanied by a positive peak in the north during April and May. Interannual ASTD variations in summer or autumn are decreasing. There is a seesaw-type distribution of ASTD between Beibu Bay and most of the SCS in summer, and the center of large values is in the Nansha Islands area in autumn. The ASTD in the SCS has a strong quasi-3a oscillation period in all seasons, and a quasi-11 a period in winter and spring. The ASTD is positively correlated with the Nio3.4 index in summer and autumn but negatively correlated in spring and winter.  相似文献   

12.
The spatial and temporal variations of daily maximum temperature(Tmax), daily minimum temperature(Tmin), daily maximum precipitation(Pmax) and daily maximum wind speed(WSmax) were examined in China using Mann-Kendall test and linear regression method. The results indicated that for China as a whole, Tmax, Tmin and Pmax had significant increasing trends at rates of 0.15℃ per decade, 0.45℃ per decade and 0.58 mm per decade,respectively, while WSmax had decreased significantly at 1.18 m·s~(-1) per decade during 1959—2014. In all regions of China, Tmin increased and WSmax decreased significantly. Spatially, Tmax increased significantly at most of the stations in South China(SC), northwestern North China(NC), northeastern Northeast China(NEC), eastern Northwest China(NWC) and eastern Southwest China(SWC), and the increasing trends were significant in NC, SC, NWC and SWC on the regional average. Tmin increased significantly at most of the stations in China, with notable increase in NEC, northern and southeastern NC and northwestern and eastern NWC. Pmax showed no significant trend at most of the stations in China, and on the regional average it decreased significantly in NC but increased in SC, NWC and the mid-lower Yangtze River valley(YR). WSmax decreased significantly at the vast majority of stations in China, with remarkable decrease in northern NC, northern and central YR, central and southern SC and in parts of central NEC and western NWC. With global climate change and rapidly economic development, China has become more vulnerable to climatic extremes and meteorological disasters, so more strategies of mitigation and/or adaptation of climatic extremes,such as environmentally-friendly and low-cost energy production systems and the enhancement of engineering defense measures are necessary for government and social publics.  相似文献   

13.
Various features of the atmospheric environment affect the number of migratory insects, besides their initial population. However, little is known about the impact of atmospheric low-frequency oscillation(10 to 90 days) on insect migration. A case study was conducted to ascertain the influence of low-frequency atmospheric oscillation on the immigration of brown planthopper, Nilaparvata lugens(Stl), in Hunan and Jiangxi provinces. The results showed the following:(1) The number of immigrating N. lugens from April to June of 2007 through 2016 mainly exhibited a periodic oscillation of 10 to 20 days.(2) The 10-20 d low-frequency number of immigrating N. lugens was significantly correlated with a low-frequency wind field and a geopotential height field at 850 h Pa.(3) During the peak phase of immigration, southwest or south winds served as a driving force and carried N. lugens populations northward, and when in the back of the trough and the front of the ridge, the downward airflow created a favorable condition for N. lugens to land in the study area. In conclusion, the northward migration of N. lugens was influenced by a low-frequency atmospheric circulation based on the analysis of dynamics. This study was the first research connecting atmospheric low-frequency oscillation to insect migration.  相似文献   

14.
The atmospheric and oceanic conditions before the onset of EP El Ni?o and CP El Ni?o in nearly 30 years are compared and analyzed by using 850 hPa wind, 20℃ isotherm depth, sea surface temperature and the Wheeler and Hendon index. The results are as follows: In the western equatorial Pacific, the occurrence of the anomalously strong westerly winds of the EP El Ni?o is earlier than that of the CP El Ni?o. Its intensity is far stronger than that of the CP El Ni?o. Two months before the El Ni?o, the anomaly westerly winds of the EP El Ni?o have extended to the eastern Pacific region, while the westerly wind anomaly of the CP El Ni?o can only extend to the west of the dateline three months before the El Ni?o and later stay there. Unlike the EP El Ni?o, the CP El Ni?o is always associated with easterly wind anomaly in the eastern equatorial Pacific before its onset. The thermocline depth anomaly of the EP El Ni?o can significantly move eastward and deepen. In addition, we also find that the evolution of thermocline is ahead of the development of the sea surface temperature for the EP El Ni?o. The strong MJO activity of the EP El Ni?o in the western and central Pacific is earlier than that of the CP El Ni?o. Measured by the standard deviation of the zonal wind square, the intensity of MJO activity of the EP El Ni?o is significantly greater than that of the CP El Ni?o before the onset of El Ni?o.  相似文献   

15.
正The Taal Volcano in Luzon is one of the most active and dangerous volcanoes of the Philippines. A recent eruption occurred on 12 January 2020(Fig. 1a), and this volcano is still active with the occurrence of volcanic earthquakes. The eruption has become a deep concern worldwide, not only for its damage on local society, but also for potential hazardous consequences on the Earth's climate and environment.  相似文献   

16.
Storms that occur at the Bay of Bengal (BoB) are of a bimodal pattern, which is different from that of the other sea areas. By using the NCEP, SST and JTWC data, the causes of the bimodal pattern storm activity of the BoB are diagnosed and analyzed in this paper. The result shows that the seasonal variation of general atmosphere circulation in East Asia has a regulating and controlling impact on the BoB storm activity, and the “bimodal period” of the storm activity corresponds exactly to the seasonal conversion period of atmospheric circulation. The minor wind speed of shear spring and autumn contributed to the storm, which was a crucial factor for the generation and occurrence of the “bimodal pattern” storm activity in the BoB. The analysis on sea surface temperature (SST) shows that the SSTs of all the year around in the BoB area meet the conditions required for the generation of tropical cyclones (TCs). However, the SSTs in the central area of the bay are higher than that of the surrounding areas in spring and autumn, which facilitates the occurrence of a “two-peak” storm activity pattern. The genesis potential index (GPI) quantifies and reflects the environmental conditions for the generation of the BoB storms. For GPI, the intense low-level vortex disturbance in the troposphere and high-humidity atmosphere are the sufficient conditions for storms, while large maximum wind velocity of the ground vortex radius and small vertical wind shear are the necessary conditions of storms.  相似文献   

17.
Observed daily precipitation data from the National Meteorological Observatory in Hainan province and daily data from the National Centers for Environmental Prediction/National Center for Atmospheric Research (NCEP/NCAR) reanalysis-2 dataset from 1981 to 2014 are used to analyze the relationship between Hainan extreme heavy rainfall processes in autumn (referred to as EHRPs) and 10–30 d low-frequency circulation. Based on the key low-frequency signals and the NCEP Climate Forecast System Version 2 (CFSv2) model forecasting products, a dynamical-statistical method is established for the extended-range forecast of EHRPs. The results suggest that EHRPs have a close relationship with the 10–30 d low-frequency oscillation of 850 hPa zonal wind over Hainan Island and to its north, and that they basically occur during the trough phase of the low-frequency oscillation of zonal wind. The latitudinal propagation of the low-frequency wave train in the middle-high latitudes and the meridional propagation of the low-frequency wave train along the coast of East Asia contribute to the ‘north high (cold), south low (warm)’ pattern near Hainan Island, which results in the zonal wind over Hainan Island and to its north reaching its trough, consequently leading to EHRPs. Considering the link between low-frequency circulation and EHRPs, a low-frequency wave train index (LWTI) is defined and adopted to forecast EHRPs by using NCEP CFSv2 forecasting products. EHRPs are predicted to occur during peak phases of LWTI with value larger than 1 for three or more consecutive forecast days. Hindcast experiments for EHRPs in 2015–2016 indicate that EHRPs can be predicted 8–24 d in advance, with an average period of validity of 16.7 d.  相似文献   

18.
Based on the measurements obtained at 64 national meteorological stations in the Beijing–Tianjin–Hebei (BTH) region between 1970 and 2013, the potential evapotranspiration (ET0) in this region was estimated using the Penman–Monteith equation and its sensitivity to maximum temperature (Tmax), minimum temperature (Tmin), wind speed (Vw), net radiation (Rn) and water vapor pressure (Pwv) was analyzed, respectively. The results are shown as follows. (1) The climatic elements in the BTH region underwent significant changes in the study period. Vw and Rn decreased significantly, whereas Tmin, Tmax and Pwv increased considerably. (2) In the BTH region, ET0 also exhibited a significant decreasing trend, and the sensitivity of ET0 to the climatic elements exhibited seasonal characteristics. Of all the climatic elements, ET0 was most sensitive to Pwv in the fall and winter and Rn in the spring and summer. On the annual scale, ET0 was most sensitive to Pwv, followed by Rn, Vw, Tmax and Tmin. In addition, the sensitivity coefficient of ET0 with respect to Pwv had a negative value for all the areas, indicating that increases in Pwv can prevent ET0 from increasing. (3) The sensitivity of ET0 to Tmin and Tmax was significantly lower than its sensitivity to other climatic elements. However, increases in temperature can lead to changes in Pwv and Rn. The temperature should be considered the key intrinsic climatic element that has caused the "evaporation paradox" phenomenon in the BTH region.  相似文献   

19.
正While China’s Air Pollution Prevention and Control Action Plan on particulate matter since 2013 has reduced sulfate significantly, aerosol ammonium nitrate remains high in East China. As the high nitrate abundances are strongly linked with ammonia, reducing ammonia emissions is becoming increasingly important to improve the air quality of China. Although satellite data provide evidence of substantial increases in atmospheric ammonia concentrations over major agricultural regions, long-term surface observation of ammonia concentrations are sparse. In addition, there is still no consensus on  相似文献   

20.
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