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1.
Seasonal variability regarding the nature of precipitation and the activity of cumulus convection during the 1991 Meiyu season of Changjiang-Huaihe River Basin(Jianghuai)has been investigated by calculating apparent heat source/apparent moisture sink and analyzing TBB(cloud-top blackody radiation temperature)data.It is found that three periods of strong ascending motion during the Meiyu season lead to three episodes of heavy rain,and the latent heat due to the precipitation is of the sole heat source of the atmosphere.The nature of precipitation shows distinct seasonal variability,from frontal precipitation of the first episode to the extremely strong convective precipitation of the third episode.TBB field of East Asia may well reflect not only the intensity of convection and rainfall,but also the movement of rain belt and convection belt.In the whole Meiyu season.convection belt mainly stays in Jianghuai.but may shift within the domain of East Asia.Its locating in Jianghuai or not determines the maintenance or break of Meiyu.In the third episode,the narrow convection belt over Jianghuai is mainly caused by southwest monsoon which takes moist and convective atmosphere from tropical ocean.  相似文献   

2.
1991年江淮特大暴雨的降水性质与对流活动   总被引:11,自引:3,他引:11  
从计算大尺度热源和分析TBB资料两个方面,阐述了1991年江淮梅雨期间降水性质与对流活动的季节性演变特征。结果表明:梅雨期间江淮上空3个强上升运动时段分别形成了3场暴雨,由暴雨释放的热量使江淮大气出现了3个时段的强加热;3场暴雨的降水性质呈显著的季节性演变,由第1场暴雨以锋面性降水为主发展到第3场暴雨异常强的对流性降水。文中详细分析了热源和水汽汇的时空分布特征,并从大气运动场和热力结构讨论了盛夏强对流降水期间积云对流以涡动形式对热量和水汽的强铅直输送作用。江淮地区TBB值能很好地反映降水状况,雨期一致地对应于TBB低于250K的时段。梅雨中后期东亚地区对流活动季节性地增强,带状对流区(特别是TBB高负距平区)与雨带位置相符。对流带位置及对流活动强弱与西南暖湿气流活动密切相关,它很好地表征了东亚地区的低空急流(给积云输送热带对流大气)。梅雨期间对流带主要出现在江淮流域,但可在东亚范围内飘移,它落在江淮与否则决定了江淮暴雨的维持与中断  相似文献   

3.
The activity of low frequency oscillation (LFO) widely exists in East Asia during the period of1991 excessively heavy rain over the Changjiang-Huaihe River Basin (Jianghuai).Both the rainfallamount of Jianghuai and the atmosphere from subtropical area to mid-high latitudes have thedominant period of 10—20 d,while the atmospheres in tropical area and high latitudes have thedominant period of 30—60 d.Compared with normal Meiyu season,the anomaly of the 1991 Meiyu process may be reflectedin the following two low frequency synoptic events:(a) The Meiyu process onsets extremely early(in the second dekad of May,which is nearly one month earlier than in normal Meiyu) and isimmediately followed by the first episode of heavy rain.(b) In the first dekad of July,there occursthe heaviest episode of rainfall of the whole Meiyu season,and it is even the heaviest rainfall forthe recent 30 years in China.For these two periods,corresponding to the adjustment of large-scalesituation from“double blocking high”to“bipolar blocking high”,the propagation direction of LFOin East Asia has a distinct seasonal variation,from eastward/northward propagation (passingthrough Jianghuai) during the first episode to westward/southward propagation during the thirdepisode.Oscillations of different frequency bands are superposed in phase.The LFO activity of thecold and warm/moist airs over Jianghuai can be strengthened through those LFO propagationprocesses in East Asia,although they may have different directions in three episodes.Particularly,the eastward (westward) propagation in low latitudes makes the southwest (southeast) airflowtransport intensively the low frequency warm/moist air to the south of Jianghuai from the IndianOcean (tropical West Pacific Ocean) in the first (third) episode.Such warm/moist airs meet andinteract with the cold air which vigorously invades Jianghuai persistently,and finally three episodesof heavy rain occur in mode of LFO.  相似文献   

4.
1983年梅雨期前后亚洲季风区热源分布及其演变特征   总被引:1,自引:1,他引:1  
邹力  乔全明 《高原气象》1992,11(2):186-191
  相似文献   

5.
1991年江淮持续性特大暴雨的夏季风活动分析   总被引:8,自引:2,他引:8       下载免费PDF全文
文章分析了1991年江淮梅雨期间的东亚夏季风活动及其在梅雨期对流性暴雨形成中的作用。结果指出,第一场暴雨发生在夏季风暴发之前,它主要受副热带西风气流影响;后两场暴雨期间由于副高和东南季风稳定少动,西南季风的暴发和活动起了十分重要的作用,其进退演变导致了江淮梅雨的维持和中断。西南季风的一个重要作用是将热带地区(阿拉伯海及孟加拉湾)对流性很强的大气输送到江淮一带,由此使江淮流域在梅雨中后期形成了远强于一般年份的对流性降水,特别是第三场暴雨。文中通过定义低纬偏西风强度,讨论了强风带上强风速核的地域分布和传播特征。  相似文献   

6.
东亚副热带季风雨带建立特征及其降水性质分析   总被引:8,自引:2,他引:6  
任珂  何金海  祁莉 《气象学报》2010,68(4):550-558
利用1961—2006年NCEP/NCAR再分析数据集和TRMM、CMAP多年平均逐候降水资料,分析了中国东部副热带季风雨季的起始时间、建立特征及其降水性质。结果表明,第16—18候,在中国江南南部和华南北部地区(25°30°N)日降水率达到6 mm/d,且范围较大,在低层该雨带的水汽主要来源于西太平洋副热带高压南侧转向的西南水汽输送,其源地即为西太平洋副热带季风雨季开始。雨带建立同时,东亚副热带地区中东太平洋的纬向海平面气压梯度首先在中纬度发生反转,即西低东高(相应于西暖东冷)。中国东部副热带地区出现加热中心并伴有上升运动,强度逐渐增强,并伸展至对流层顶,其强度及对流高度与热带地区相当,对流层中低层大气呈对流不稳定,降水已具有对流性降水性质。与此同时,南海西太平洋地区仍在副热带高压控制之下,盛行下沉运动,无降水产生,南海夏季风及其相应的水汽输送尚未建立。东亚副热带季风雨带的建立(3月底4月初)早于热带夏季风雨带,两雨带分别具有独立的热源中心和上升运动。南海夏季风即将爆发之际,赤道地区加热中心快速北移至南海地区,与副热带地区热源相互作用。  相似文献   

7.
形成2015年浙江省梅汛期暴雨的控制环流及梅雨锋结构   总被引:3,自引:3,他引:0  
本文利用NCEP/NCAR全球再分析逐日资料、地面观测资料和自动站降水资料,在分析了2015年浙江省梅汛期强降水特征、水汽输送和局地环流的基础上,从西南季风进退、副热带高压、南亚高压及西风带波动等方面对2015年形成梅汛期暴雨的控制环流进行了分析。结果表明:2015年整个浙江省梅汛期降水量较常年显著偏多,浙江中部地区降水量比历史同期偏多接近一倍。丰沛的水汽从孟加拉湾经中南半岛向东输送,与西太平洋副热带高压西侧的西南气流相合并,在梅雨锋南侧形成异常辐合,为强降水提供了水汽条件。这次持续强降水由三次强降水过程构成并由西风辐合型锋生引起。第二次强降水过程中大气强对流性不稳定利于梅雨锋上中尺度对流系统发展,导致强降水呈现明显的局地性。而第一次和第三次过程中梅雨带附近大气基本处于对流稳定或中性,以斜压性降水为主。在对流层低层,副高较常年偏东偏南,其西北侧西南暖湿气流与北侧冷空气交汇于浙江省,利于梅汛期强降水集中期的出现。在对流层上层的南亚高压较常年位置偏东,其北侧的西风急流强度偏强,东亚急流核入口区右侧的强辐散利于造成强烈的上升运动。在对流层中层,贝加尔湖阻高的东侧有明显的波动能量向东向南传播并在长江中下游积聚,利于浙江地区扰动的维持,形成持续稳定的梅雨锋和中低空切变线,造成梅雨强降水过程的持续。2015年春夏季热带中东太平洋海温正异常分布有利于梅汛期降水偏多的异常环流的形成。  相似文献   

8.
1983年长江中游梅雨期的热源和热汇分析   总被引:14,自引:0,他引:14  
本文用曲面拟合和收支方程计算了5—7月长江中游地区梅雨前后不同时段热源和热汇的分布,得到如下一些结果:(1)梅雨期的热源主要由降水产生的凝结潜热造成。最大热源位于700—400hPa层中。降水的性质一般以连续性降水为主,但有时也发生明显的对流活动。在无雨期,在深厚的对流层大气中是冷却的,这主要由辐射冷却引起。因而梅雨时期的大气性质十分类似于热带大气。(2)梅雨期的降水以及热源热汇分布有明显的日变化。一般下午为明显的热源或更强的对流热输送。(3)在梅雨期及其前后感热和蒸发的作用不能忽略。在无雨或少雨期,蒸发是形成水汽源汇的主要因子。   相似文献   

9.
The extremely heavy Meiyu in the middle and lower reaches of the Yangtze River in 2020 features early beginning, extremely late retreat, long duration, and a dramatic north-south swing rain belt. It can be divided into three phases. The key point of the extremely heavy Meiyu is the long duration of precipitation. The physical mechanism of the phased variation is researched here by analyzing the phased evolution of atmospheric circulation, the thermal effect of Tibetan Plateau, the sea surface temperature anomalies (SSTA), and tropical convection. The results show that: (1) Throughout the whole Meiyu season, the western Pacific subtropical high (WPSH) is stronger and westward, the South Asian high (SAH) is stronger and eastward, and blocking highs are very active with different patterns at different stages; they all form flat mid-latitude westerlies with fluctuation interacting with WPSH and SAH, causing their ridges and the rain belt to swing drastically from north to south or vice versa. (2) The higher temperatures in the upper and middle atmosphere in the eastern and southern Tibetan Plateau and the middle and lower reaches of the Yangtze River, which are produced by the warm advection transport, the heat sources in Tibetan Plateau, and the latent heat of condensation of Meiyu, contribute greatly to the stronger and westward WPSH and the stronger and eastward SAH. The dry-cold air brought by the fluctuating westerlies converges with the warm-humid air over Tibetan Plateau, resulting in precipitation, which in turn enhances the heat source of Tibetan Plateau and regulates the swings of WPSH and SAH. (3) Different from climatological analysis, real-time SSTA in the Indian Ocean has no obviously direct effect on WPSH and Meiyu. The anomalous distribution and phased evolution process of real-time SSTA in South China Sea and the tropical western Pacific affect WPSH and Meiyu significantly through tropical convection and heat sources. The maintenance of strong positive SSTA in the western equatorial Pacific is a critical reason for the prolonged Meiyu season. Both the onset and the retreat of Meiyu in 2020 are closely related to the intensified positive SSTA and corresponding typhoons on the ocean east of the Philippines.  相似文献   

10.
初夏环流与梅雨成因的探讨   总被引:1,自引:0,他引:1  
着眼于东亚海陆热力强迫差异的影响,探讨了东亚初夏环流与江淮梅雨成因,结果表明:江淮流域夏季降水与前期地面气温的东亚纬向海陆热力差异相关;江淮流域初夏降水量与同期北半球500hPa位势高度场的高相关区对应于入梅期“双阻”型环流系统,且最高相关系统为副热带高压。数值试验表明,东亚海陆热力强迫的差异与夏季风,梅雨阻塞系统的形成密切相关。研究结果提示了梅雨初期环流特征形成的机理与热力结构因素。  相似文献   

11.
河南省汛期降水的天气季节特征   总被引:1,自引:0,他引:1       下载免费PDF全文
通过多年汛期逐日降水量场的EOF分析,探讨了河南省汛期降水的天气季节特征。河南省主汛期出现在江淮梅汛之后,称暑汛较合适。暑汛期降水出现明显的南北与东西方向上的反相振荡;尤其是从小暑到大暑,季风雨带从沙河以南,北跃到黄河沿岸及其以北地区,是东亚季风重要的气候特征,表明梅雨结束后,中国东部的主要雨带不是一跃而至黄河以北,而是阶段性地逐次向北跳跃的。对暑汛降水气候的分析研究,有助于加深对东亚季风活动的认识  相似文献   

12.
The heavy rainfall in the summer of 1998 over China has been simulated with the NCCRegional Climate Model(RegCM_NCC).It was successful for RegCM_NCC to reproduce thelocation and seasonal shift of the seasonal rain belt in the summer of 1998 over China.The rainyseason in the summer of 1998 over China can be divided into 7 episodes,including the pre-summerrainy season in South China.the Meiyu onset over the Yangtze-Huaihe River Basin,shortappearance of North China rain season and the retreat of seasonal rain belt,the second Meiyuseason over the Yangtze River Valley,the rainy period over the Yellow and Huaihe River Valleyand the seasonal retreat of rain belt over North China.The shortcoming of the RegCM_NCC isover-estimation of precipitation amounts.The regions with large latent heat flux,upper soilmoisture and total runoff are located in the rainy area and move with the simulated rain belt duringthe different episodes.On the contrary,the regions with small sensible heat flux are located in thesimulated rainy area and move with the simulated rain belt during the different episodes.  相似文献   

13.
利用NCEP/NCAR 1°×1°的FNL再分析资料、CMORPH(CPC MORPHing technique)卫星-地面自动站融合降水数据以及FY-2G卫星反演的TBB(black-body temperature,云顶亮温)对1822号台风“山竹”在华南造成强降水过程进行了分析。结果表明:西北太平洋副热带高压和南亚高压的稳定维持有利于台风残涡持续影响华南地区;低层来自孟加拉湾的低空急流与西北太平洋副热带高压南侧偏东风汇合后建立起一条连接华南的水汽通道;在登陆台风影响下,大气视热源和视水汽汇主要来自于垂直运动释放的凝结潜热;湿位涡诊断分析表明强的水平风垂直切变导致低层大气斜压性增强,出现显著的对流不稳定。  相似文献   

14.
The heavy rainfall in the summer of 1998 over China has been simulated with the NCC Regional Climate Model(RegCM_NCC).It was successful for RegCM_NCC to reproduce the location and seasonal shift of the seasonal rain belt in the summer of 1998 over China.The rainy season in the summer of 1998 over China can be divided into 7 episodes,including the pre-summer rainy season in South China.the Meiyu onset over the Yangtze-Huaihe River Basin,short appearance of North China rain season and the retreat of seasonal rain belt,the second Meiyu season over the Yangtze River Valley,the rainy period over the Yellow and Huaihe River Valley and the seasonal retreat of rain belt over North China.The shortcoming of the RegCM_NCC is over-estimation of precipitation amounts.The regions with large latent heat flux,upper soil moisture and total runoff are located in the rainy area and move with the simulated rain belt during the different episodes.On the contrary,the regions with small sensible heat flux are located in the simulated rainy area and move with the simulated rain belt during the different episodes.  相似文献   

15.
利用地面气象观测资料、ERA5再分析资料、FY-2E卫星和多普勒雷达资料,对2011年7月17日发生在巢湖地区的一次强对流暴雨过程进行诊断分析。结果显示:500hPa深槽、850hPa切变线及地面低压是此次暴雨过程的天气尺度影响系统,强降水发生在湿层和暖云层深厚、较低的抬升凝结高度、中等强度对流不稳定及弱垂直风切变条件下;FY-2E卫星云图分析表明,此次强降水过程主要是多个中尺度对流系统在巢湖合并所致,短时强降水落区主要落在中尺度对流系统TBB等值线密集区附近,TBB中心强度越强,TBB等值线梯度越大,对应的1h降水量越强;多普勒雷达分析揭示,短时强降水发生在两个对流回波合并期间,对流风暴移动缓慢,大于45dBz强回波均在6km以下,呈低层强烈气旋式辐合、高层辐散特征;地面中尺度辐合线是此次风暴的触发因子;湿位涡诊断结果表明,600hPa以下对流不稳定,600hPa以上对称不稳定,有利于暴雨和中尺度系统的发生发展。  相似文献   

16.
东亚夏季风强弱年大气环流和热源异常对比分析   总被引:1,自引:0,他引:1       下载免费PDF全文
根据黄刚等定义的东亚夏季风指数, 对强、弱东亚夏季风年大气环流、大气热源和外强迫源SST的差异进行分析, 结果表明:强 (弱) 东亚夏季风年前期冬季到夏季, 太平洋SSTA为La Ni?a (El Ni?o) 型分布, 西太平洋暖池SST暖 (冷), 使得暖池附近对流活动较强 (较弱)。与此同时, 南亚大陆从印度半岛、青藏高原南部、中南半岛至华南大气异常加热 (变冷), 并且海陆热力对比加强 (减弱), 有利于出现强 (弱) 的东亚夏季风。此外, 由于暖池附近对流活动强 (弱), 该地区上升气流较强 (弱), Walker环流增强 (减弱), 当强 (弱) 的东亚夏季风向北推进时, 副热带西风急流北撤位置偏北 (南), 副热带高压位置也偏北 (南), 7月至8月华北 (江淮流域) 位于副热带西风急流南侧, 降水偏多, 江淮流域 (华北) 降水偏少。并给出与东亚夏季风年际变异有关的大气环流和SST异常的物理图像。  相似文献   

17.
据1991年特大洪涝过程的物理分析试论江淮梅雨预测   总被引:8,自引:0,他引:8  
本文以1991年江淮梅雨为个例,通过对特大洪涝形成过程的物理分析,就梅雨预测问题提出了一些认识。分析表明,1991年江淮流域较长梅雨期内所发生的3场大暴雨是很有代表性的,它们是大气环流季节转变不同进程中的产物,因而具有不同的环流背景和降水性质,且在洪涝的形成中起着不同的作用。据此,我们提出了江淮梅雨的3个模型,指出应在由春夏之交到盛夏这个较长时期内分阶段地考虑梅雨预测。另外还指出,确定雨带的落区,不但应强调副高和东南季风活动对雨带南北进退的作用,而且也要注意西南季风的活动会导致雨带东西向的摆动。最后,就旱涝形成物理过程的诊断研究在旱涝模式预测方法中的意义作了讨论  相似文献   

18.
1991年江淮特大暴雨与东亚大气低频振荡   总被引:42,自引:3,他引:42  
陆尔  丁一汇 《气象学报》1996,54(6):730-736
本文分析了1991年江淮特大暴雨期间东亚大气低频振荡活动。从低频振荡特征看,江淮雨量和东亚风场中低频振荡现象是普遍存在的,风场的振荡周期具有显著的地域和频域分布特征。从低频波的传播看,这一梅雨过程的两个异常阶段(5月下半月和7月上半月),东亚风场低频波的水平传播方向发生了显著的变化。分析指出,低纬地区低频波虽有不同传播方向,但都将暖湿空气以低频形式输送到江淮以南,它与北侧的低频冷空气在江淮地区相互作用,从而导致该地区以低频形式出现的3场特大暴雨。  相似文献   

19.
1880—2010年中国东部夏季降水年代际变化特征   总被引:1,自引:0,他引:1       下载免费PDF全文
利用1880—2010年中国东部66站夏季降水数据,开展夏季长序列降水的年代际变化特征研究。结果表明,中国东部夏季降水年代际变化特征显著,华北、江淮和华南地区存在明显的差异。经验正交分解结果表明,偶极型("-+"和"+-")和三极型("+-+"和"-+-")分布是中国东部夏季的两种主要降水模态。夏季500 h Pa高度场年代际分量与同期太平洋SST典型相关分析(BP-CCA)得出,太平洋年代际振荡(PDO,Pacific Decadal Oscillation)正位相可以激发出负的PJ型遥相关波列,导致长江中下游地区降水偏多,华北降水偏少;反之亦然。同时,通过滑动相关分析发现,中国东部不同区域的夏季降水对PDO不同位相的响应特征存在差异。  相似文献   

20.
陈兵  蒋元春  李栋梁  唐玉 《气象科学》2020,40(5):669-678
利用1960—2020年江淮地区75个气象站逐日降水量、气温、相对湿度资料以及NCEP/NCAR再分析资料和Hadley中心海表温度资料,研究了东亚副热带夏季风进程变异对江淮梅雨的影响,揭示了不同类型梅雨期太平洋海温及大气环流异常特征。结果表明:8种江淮梅雨类型中,多雨型占45.9%,少雨型占54.1%,其中多雨型在前30 a占36.7%,后31 a占63.3%。江淮典型梅雨年(高温高湿多雨)的主要特征为安徽南部、江苏中部及湖北东部地区降水偏多,安徽南部、江西东北部及浙江西北部气温偏高,淮河流域湿度大;而在非典型梅雨年(低温低湿少雨)大部分地区雨量偏少,气温呈"东高西低"分布,低温中心区位于淮河中游,湿度呈"西大东小"分布。欧亚大陆中高纬度阻塞高压增强,脊前向南输送的西北气流加强且路径偏东,中国东北冷涡强度较强且位置偏西南,东亚大槽加深,槽后冷空气向南输送,有利于典型梅雨形成。当前期冬春季赤道东太平洋海温异常偏高,西太平洋海温异常偏低时,西太平洋副热带高压强度偏强、面积偏大、脊线位置偏南、西伸脊点偏西,东亚副热带夏季风推进到江淮地区的时间偏早,出梅偏晚,梅雨期降水量偏多。  相似文献   

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