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1.
登陆台风Matsa (麦莎) 中尺度扰动特征分析   总被引:6,自引:2,他引:4  
地面中尺度自动站和多普勒雷达资料的分析都表明, 台风Matsa登陆后的低层螺旋云带中活跃着中尺度气旋性涡旋系统。本文使用新一代中尺度WRF模式对台风Matsa登陆后的变化特征进行了数值模拟, 使用四维变分多普勒雷达分析系统 (4D-VDRAS) 对台风Matsa多普勒雷达径向风进行了风场反演。在此基础上对台风Matsa登陆后中尺度扰动特性进行了初步探讨; 对台风Matsa与其螺旋云带的中尺度系统之间动能和涡度的相互转换进行了诊断分析。分析表明: (1) 数值模拟和雷达风场反演结果表明, 登陆台风Matsa的低层螺旋云带中活跃着中尺度气旋式涡旋系统, 与之相伴随的为较强的中尺度上升区, 而且, 中尺度垂直上升运动的强弱与雷达对流回波强度成正相关, 中尺度垂直上升运动越强, 雷达对流回波发展越旺盛。 (2) 台风Matsa与其中尺度系统动能转换的诊断分析说明, 低层中尺度系统从台风Matsa环流中获得动能而发展; Matsa在陆地上长久维持主要是从高层获得动能。 (3) 台风Matsa与其中尺度系统涡度转换的诊断分析说明, 低层中尺度系统向Matsa输送正涡度主要依靠中尺度垂直运动来完成; 高层正涡度的转换通过水平输送和垂直输送共同来完成。所以, 中尺度系统所产生的正涡度源源不断地向Matsa输送, 使Matsa的气旋性环流可以在陆地上长久维持。  相似文献   

2.
强垂直风切变环境下对流单体对飓风强度的影响   总被引:1,自引:1,他引:0  
利用高分辨率模式输出资料,诊断分析强垂直风切变环境下飓风Bonnie(1998)中风暴相对螺旋度的分布特征,再现了Molinari等(2008)利用下投式探空仪获得的该飓风内部风暴相对螺旋度的离散观测结果。通过对比不同垂直风切变环境下,不同区域风暴的相对螺旋度、对流有效位能及风速的水平分布,揭示出与高值风暴相对螺旋度相联系的强对流单体的分布与环境垂直风切变的密切联系。基于风暴相对螺旋度和对流有效位能的配置分析,研究强环境垂直风切变时段,眼壁附近的深厚涡旋对流以及螺旋雨带中的小型对流单体的三维结构和演变特征。分析表明,环境垂直风切变较强时,在眼壁附近的顺切变区存在典型的深厚涡旋对流系统,这类深厚涡旋系统能够激发二级垂直环流,有利于旋转上升运动的维持,并在近眼心区域引发补偿性的干暖下沉气流,有助于飓风暖心的维持和加强;同时,螺旋雨带中也存在以涡度为特征的小型对流单体,这些对流单体随着平流不断移入飓风中心,使得飓风中心垂直涡度增加,最终导致飓风强度的增强。   相似文献   

3.
台风“珍珠”螺旋雨带的数值模拟与诊断分析   总被引:1,自引:0,他引:1  
利用1°×1°的NCEP/NCAR再分析资料,应用非静力中尺度模式WRF对0601号台风"珍珠"进行数值模拟,研究暴雨的成因以及螺旋雨带内部结构特征。数值模拟结果表明,台风中的气旋式涡度、垂直运动、动量和热量都集中在螺旋雨带中。进一步研究指出,螺旋雨带上空高层的强辐散与中低层的强辐合相配合产生的强烈"抽吸作用"、螺旋雨带两侧的干中心挤压螺旋雨带产生的"毛细效应"都导致了低层高湿空气加速向上输送,有利于对流的发展,这也是台风螺旋雨带得以维持的主要原因。  相似文献   

4.
利用诊断和数值模拟相结合的方法,分析了2016年9月13—16日"莫兰蒂"台风在登陆福建南部北上后给浙江沿海地区带来的局地大暴雨天气,发现这次局地大暴雨发生在台风移动路径右侧,对流层低层强盛的东南气流促进了台风登陆减弱后其东北侧外螺旋雨带局地发展,导致这一区域对流发展旺盛,在浙江引发大暴雨天气。控制试验表明"莫兰蒂"东侧显著的东南到偏南气流导致外螺旋雨带中小尺度对流系统的发生发展,在"莫兰蒂"东北侧存在小尺度的对流耦合系统,小尺度雨带在涡度场和垂直运动场上正、负涡度中心和上升、下降运动交替分布的中小尺度波列结构明显,强降水就发生在此处。台风东侧显著的东南到偏南气流与"莫兰蒂"东南侧的"马勒卡"台风以及10~20 d的带通滤波场上台湾岛附近的气旋性涡旋密切相关。敏感性试验表明"马勒卡"台风和准双周振荡都对"莫兰蒂"路径有很重要的西北行引导作用,进而影响东南气流水汽输送和降水分布。  相似文献   

5.
利用实况资料和WRF模拟资料,分析2009年8月6—10日"莫拉克"台风在台湾地区造成强降水过程中台风螺旋雨带与水平涡度的关系。结果表明:模式较好地模拟出了本次台风暴雨的发生发展过程。在7日00时—9日00时,台风外围有两条螺旋雨带,一支位于台湾的中部偏南,一支位于台湾的南部,暴雨主要位于这两支螺旋雨带上;暴雨出现在环流上升支附近,在中低层,雨带对应着较大的指向东的水平涡度,且随着水平涡度大值区移动而移动,显示出两者较密切的联系;水平涡度的大值区与垂直涡度的大值区也有较好的对应关系,存在水平涡度向垂直涡度的转化;水平涡度的旋度正值区对应上升运动区,其旋度的大值区对应强的螺旋雨带与降水。当水平涡度减小时,若水平涡度的旋度正值区存在,雨带仍然可以维持。  相似文献   

6.
二维多单体雷暴系统中对流单体生成和发展的新机制   总被引:1,自引:0,他引:1  
鲍旭炜  谈哲敏 《气象学报》2010,68(3):296-308
在多单体雷暴系统的发展和演变过程中,系统内新对流单体的生成和发展是系统维持最为重要的因素。文中利用中尺度数值模式,研究了环境风场存在低层反向切变(U_z0)情况下,一种新对流单体的生成和发展机制——处于"亚最优切变态"的多单体雷暴系统的维持和发展机制。与以往处于"最优切变态"条件下新对流单体的生成和发展机制不同,由于环境风场存在低层反向切变,此时密度流产生的水平涡度要大于环境风切变产生的水平涡度,密度流向外扩展较快,使两者处于"亚最优切变态",此时多单体雷暴系统中的新对流单体不再是从密度流前沿的阵风锋前上升气流分离出,而是由发展旺盛的主体对流体在其前部中低层激发的垂直上升运动引起。新生成的对流单体因其前部低层湿空气的流入得到快速发展,而其西侧原有的主体对流体因湿空气的流入被切断而开始减弱、消亡并最终被新对流单体所替代。这种新机制的出现与低层环境风反向切变的强度及地表风速有关。在一定的低层反向风切变条件下,这种新机制可与"最优切变态"机制交替作用:当密度流较强时,多单体雷暴系统中新对流单体的生成主要是以"亚最优切变态"机制为主,且新生成的对流单体强度也较弱;当密度流较弱时,多单体雷暴系统中新对流单体的生成主要以"最优切变态"机制为主,此时阵风锋前上升气流得到快速发展,当发展到一定程度时,新对流单体从阵风锋前上升气流中分离出。  相似文献   

7.
浙江沿海登陆台风结构特性的多普勒雷达资料分析   总被引:1,自引:0,他引:1  
利用浙江省新一代多普勒雷达组网资料,选取在浙江东南沿海近乎同一地点登陆的3个台风进行研究。从登陆前6 h到登陆后7 h,对比分析3个台风在登陆前后的雷达回波和降水结构时空变化特征。利用单多普勒雷达四维变分风场反演技术,对温州多普勒雷达探测资料进行了风场反演。结合利用雷达回波强度资料,对3个台风登陆前后1 h在云岩、昌禅等地造成特大暴雨的中尺度对流系统的三维结构及其演变特征进行了详细分析。结果表明,台风强度与其螺旋云带中的对流单体密切相关。台风强度愈强,其中低层环状平均回波强度就愈强,对流活动也就愈旺盛,降水强度也愈大。台风登陆前,回波(雨带)从眼墙向外围传播。台风登陆后,随着台风外围回波(雨带)明显减弱,台风眼墙回波(雨带)则明显增强,台风眼区逐渐被强回波所取代,使台风登陆后眼墙的平均雨强比登陆前增大。台风登陆后1 h,由于低(高)层水平辐合(散)增强,强对流回波中倾斜的上升(下沉)气流明显增大,使对流运动更加活跃,造成登陆后1 h的降雨量显著增强。台风强度与登陆后1 h降雨量的增强幅度成正比。台风强度越强,垂直风切变就越大,垂直切变风速大值区与最大降雨区有较好的对应关系。台风登陆后1 h,垂直切变风速的明显增加对登陆台风螺旋雨带中的中小尺度对流的加强和维持起到了非常重要的作用。  相似文献   

8.
在耗散结构理论的基础上,根据热力学第二定律推导出了熵平衡方程。利用高分辨率模式输出资料通过对比Chanchu台风(0601)螺旋雨带上游、中游和下游及眼壁附近不同区域对流单体和熵流分布情况,揭示出负熵流值与台风的强对流单体有密切联系。基于负熵流与台风精细结构的配置分析,研究中尺度范围内熵流随Chanchu台风发生、发展、消亡各阶段的演变特征。分析表明,对流单体在从雨带上游至下游的演变过程中,熵流分布特征也会发生相应的变化,强对流单体与负熵流大值区相对应;当对流单体减弱,负熵流也随之减弱;当单体最后合并并汇入眼墙时,负熵流彼此合并旋入眼墙,有助于眼墙中深厚对流的维持和发展;此外,负熵流对于Chanchu台风在各发展阶段的强度变化也有一定的指示意义,揭示了负熵流对大气系统的组织化作用。   相似文献   

9.
用WRF中尺度数值模式、NCEP/NCAR再分析资料、多普勒雷达观测资料等,对2018年5月5日发生在我国华中地区的一次多弓状雨带降水过程的形成机理及其与水平涡度的关系进行分析发现:雨带发生在切变线南侧的西南气流中,多弓状雨带出现前,大尺度高低层气旋式曲率的水平涡度和对流有效位能为降水提供了有利于上升运动的背景场。弓状雨带最初形成在对流不稳定和低层气流辐合条件下,局地强降水引发的下沉运动使中低层大风出现,大风中心南侧反气旋式的环流与背景场中的西南气流汇合构成了短波槽,尾部雨带出现在短波槽中,弓状头部生成于北侧的气旋式风场切变中,大风中心相较南北两侧更快的移速使雨带中部向前侧凸起。流场上的短波槽发生在700 hPa以下,在西南气流的背景场下,该槽向前后两侧的双向传播是多弓状雨带形成的重要触发因子。中尺度弓状雨带附近低层的水平涡度在强盛期、减弱期和消散期有着明显不同的结构特征;而在高层,雨带发展时和强盛期都为气旋式水平涡度控制,减弱期多为反气旋式水平涡度控制。   相似文献   

10.
利用中尺度数值模式,WRF对2005年7月19—20日台风"海棠"登陆前后具有非对称性结构的螺旋雨带的结构特征进行数值模拟和分析。结果表明,降水中心所处的两条雨带位于台风中心东北象限,其南雨带的移动和强度变化与850 hPa正的涡度带在19日02—18时(世界时,下同)都有较好的对应关系。台风流场的逆时针旋转作用将海上850 hPa正的涡量大值带逐渐与南雨带合并,造成南部雨量中心的雨量增幅。南雨带北移逐渐与北雨带合并,造成北部雨量中心的雨量增幅。另外,分析暴雨的发展与高低层垂直切变风的高层辐散流场有关;最后讨论了雨量中心附近区域低层对流涡度矢量(CVV)垂直分量的发展条件及其与降水的关系。  相似文献   

11.
Finescale spiral rainbands associated with Typhoon Rananim(2004)with the band length ranging from 10 to nearly 100 km and band width varying from 5 to 15 km are simulated using the Fifth-Generation NCAR/Penn State Mesoscale Model(MM5).The finescale rainbands have two types:one intersecting the eyewall and causing damaging wind streaks,and the other distributed azimuthally along the inner edge of the eyewall with a relatively short lifetime.The formation of the high-velocity wind streaks results from the interaction of the azimuthal flow with the banded vertical vorticity structure triggered by tilting of the horizontal vorticity.The vertical advection of azimuthal momentum also leads to acceleration of tangential flow at a relatively high altitude.The evolution and structures of the bands are also examined in this study. Further investigation suggests that the boundary inflection points are related tightly to the development of the finescale rainbands,consistent with previous findings using simple symmetric models.In particular,the presence of the level of inflow reversal in the boundary layer is a crucial factor controlling the formation of these bands.The near-surface wavy peaks of vertical vorticity always follow the inflection points in radial flow.The mesoscale vortices and associated convective updrafts in the eyewall are considered to strengthen the activity of finescale bands,and the updrafts can trigger the formation of the bands as they reside in the environment with inflow reversal in the boundary layer.  相似文献   

12.
采用WRF中尺度模式对2018年22号台风“山竹”进行高分辨率的数值模拟,在此基础上,分析台风的精细动力结构和雨带特征。分析结果发现,台风“山竹”的眼墙处具有低层辐合流入、高层辐散流出的动力配置;台风眼墙附近存在切向风速的高值区和明显的垂直上升区,并且随着高度逐渐向外侧倾斜,同时该处的雷达回波也较强,对流系统较为深厚。然后利用尺度分离方法得到涡旋罗斯贝(Rossby)波的扰动场,进一步分析了台风“山竹”内部的涡旋Rossby波特征。研究发现:1)1波和2波会同时沿着切向和径向方向传播,2波的振幅明显小于1波;1波和2波的正涡度扰动大值区基本覆盖强的雷达回波区域,同时伴有较强的对流活动。2)垂直方向上,降水区的涡度扰动呈现出上层为正、下层为负的动力配置时,同时散度扰动的垂直方向也有类似配置时,则会加强对流系统的发展,有利于降水的增强。由此可见,1波和2波扰动的上层辐散下层辐合的动力配置会促使对流系统的加强,同时也会对台风降水的强度和分布有一定的作用。  相似文献   

13.
风切变对中尺度对流系统强度和组织结构影响的数值试验   总被引:5,自引:0,他引:5  
郑淋淋  孙建华 《大气科学》2016,40(2):324-340
采用我国实际观测的探空作为中尺度模式Weather Research and Forecasting(WRF)的理想试验的背景场,分别改变整层、低层和中层的垂直风切变,研究其对中尺度对流系统强度和组织结构的影响。结果表明,改变整层垂直风切变对对流系统的强度和组织结构影响最显著,增加整层垂直风切变,对流强度增强且易组织成线状,减小整层垂直风切变,对流强度弱且呈分散状态。从垂直速度、水平风场、散度场和冷池的三维结构特征分析了其影响的机制:(1)风切变增加,上升气流与下沉气流的相互干扰减弱,有利于垂直速度的维持和增强;(2)垂直风切变增加造成水平涡度增加,扭转项的作用分别使上升和下沉运动得到加强;(3)垂直风切变增加,冷池强度和高度增加且集中在系统后部,使系统线状组织性增强。研究还发现,增加垂直风切变造成近地面大风和降水增强,且强降水出现在大风之后,这主要是因为在对流发展阶段上升运动与下沉运动互不干扰情况下,强下沉运动造成的近地面大风,而成熟阶段上升运动不断增强或维持造成雨水比湿不断增加形成强降水。  相似文献   

14.
Typhoon Rananim (2004) was one of the severest typhoons landfalling the Chinese mainland from 1996 to 2004. It brought serious damage and induced prodigious economical loss. Using a new generation of mesoscale model, named the Weather Research and Forecasting (WRF) modeling system, with 1.667 km grid horizontal spacing on the finest nested mesh, Rananim was successfully simulated in terms of track, intensity, eye, eyewall, and spiral rainbands. We compared the structures of Rananim to those of hurricanes in previous studies and observations to assess the validity of simulation. The three-dimensional (3D) dynamic and thermal structures of eye and eyewall were studied based on the simulated results. The focus was investigation of the characteristics of the vortex Rossby waves in the inner-core region. We found that the Rossby vortex waves propagate azimuthally upwind against the azimuthal mean tangential flow around the eyewall, and their period was longer than that of an air parcel moving within the azimuthal mean tangential flow. They also propagated outward against the boundary layer inflow of the azimuthal mean vortex. Futhermore, we studied the connection between the spiral potential vorticity (PV) bands and spiral rainbands, and found that the vortex Rossby waves played an important role in the formation process of spiral rainbands.  相似文献   

15.
The impacts of dry air on tropical cyclone (TC) development at different latitudes with no mean flows are investigated with idealized simulations. It is found that the effective radius of the dry air is sensitive to its vertical distribution and the background earth rotation. The effect of low-level dry-air layer in inhibiting TC development decreases with increasing latitude. At lower latitudes, the greater boundary layer gradient wind imbalance results in a strong low-level inflow, and the dry air can easily penetrate into the TC inner-core region. The intruding dry air inhibits the inner-core deep convection and leads to marked asymmetric convective structure, which significantly suppresses TC development. In contrast, at higher latitudes, the dry air gets moistened before reaching the TC inner-core region due to a weaker radial inflow but can suppress the development of the outer spiral rainbands. The suppressed outer spiral rainbands lead to a weaker barrier effect to the boundary layer inflow and help TC development. Furthermore, the lower the altitude of dry-air layer resides, the greater the impact on TC intensification. The low-level pathway associated with the boundary layer inflow plays an important role on how dry-air layer acts on a TC without considering the mean flow effects. Through examining the climatological distribution of the moisture field, we expect that the intrusion of dry air can be more frequent in the North Atlantic area and therefore has more effects on TC development than in the western North Pacific.  相似文献   

16.
使用FY卫星TBB资料和新一代非静力中尺度模式WRF分析南海强台风Chanchu(0601)"急翘"转向前后内核结构和强度变化过程。结果表明:转向后内核结构非对称特征明显。WRF数值模式较好地模拟出Chanchu强度和异常路径变化过程,再现了内核结构演变:转向前,垂直切变较弱,有利于快速加强,内核结构较为对称;转向后,垂直切变明显增大,强回波位于垂直切变下风方向的左侧,显示为内核非对称结构。使用傅立叶变换方法分解模拟结果中的雷达回波,发现眼壁和内螺旋雨带的2波非对称沿方位角移速与涡旋罗斯贝波(VRWs)的理论波速一致,Chanchu快速加强过程中断和强度维持的可能原因为:眼壁传播的VRWs受到外螺旋雨带的扰动以及涡旋倾斜加剧引起眼壁非对称性加强导致"急翘"时眼壁破裂,此后眼区和眼壁区水平混合过程加强,850 hPa眼区相当位温明显增加,抑制高层相对暖干空气和低层相对冷湿空气相互交换,使得随眼壁内侧下沉气流向下输送的暖干空气减少,低层增温作用减弱,快速加强过程中断;VRWs径向内传导致高值涡度由眼壁内侧向眼心传播,引起最大风速半径(RMW)内侧切向风速增大,RMW随时间向眼心延伸,眼壁进一步收缩,一定程度上抵消了垂直切变加大的负面影响,Chanchu维持强度。  相似文献   

17.
Numerical simulation of a South China Sea typhoon Leo (1999)   总被引:6,自引:0,他引:6  
Summary ?A South China Sea typhoon, Leo (1999), was simulated using the Penn State/NCAR mesoscale model MM5 with the Betts-Miller convective parameterization scheme (BMEX). The simulation had two nested domains with resolutions at 54 and 18 km, and the forecast duration was 36 hours. The model was quite successful in predicting the track, the rapid deepening, the central pressure, and the maximum wind speed of typhoon Leo as verified with reports from the Hong Kong Observatory (HKO). The structure of the eye, the eye wall, and the spiral convective cloud band simulated in the model are found to be comparable to corresponding features identified in satellite images for the storm, and also with those reported by other authors. A trajectory analysis was performed. Three kinds of trajectory were found: (1) spirally rising trajectories near the eye wall; (2) spirally rising/descending trajectories in the convective/cloud free belt; (3) straight and fast rising trajectories in a heavy convection zone along one of the cloud bands on the periphery of the tropical cyclone. Both the HKO and the U.S. Joint Typhoon Warning Center (JTWC) reported the rapid deepening of Leo started around 00 UTC 29 April. In the model, the eye was first formed in the lower troposphere, and it extended to the upper troposphere within a few hours. We speculate that the spin-up of cyclonic rotation in the low-level eye enhanced the positive vorticity along the low-level eye wall. The positive vorticity was then transported to the upper troposphere by convection, leading to an extension and growth of the eye into the upper troposphere. To examine the impact of convective parameterization scheme (CPS) on the simulation, the Grell scheme (GLEX) was also tested. The GLEX predicted a weaker typhoon with a wilder eye that extended not as high up in the upper troposphere as BMEX. The different structures of the eye between the BMEX and GLEX suggest that the mesoscale features of the eye are dependent on the convection. In other words, the vertical and horizontal distribution of convective heating is essential to the development and structure of the eye. Received December 18, 2001; accepted May 7, 2002 Published online: March 20, 2003  相似文献   

18.
In this study, fine structures of spiral rainbands in super Typhoon Chanchu (2006) are examined using an Advanced Research Weather Research and Forecast (WRF-ARW) model simulation with the finest grid size of 2 km. Results show that the simulation reproduces well Typhoon Chanchu’s track, intensity and basic structures. According to their locations and features, spiral rainbands are classified into principal, secondary, inner and distant rainbands, and their dynamic and thermodynamic features are investigated. The principal rainbands remain quasi-stationary with respect to Chanchu’s center and exhibit a wavenumber-1 feature with their outer edges separated by dry air. The secondary rainbands that occur on the radially inward side of the principal rainbands move around Chanchu''s center. The inner rainbands are closest to the center. They propagate both radially outward and azimuthally with time. The distant rainbands are located outside the inner-core region, and have stronger and continuous updrafts compared to the other rainbands. Distant rainbands are inward-sloping with height along the radial direction and have a cold pool in the low layers, whereas the principal and secondary rainbands lean radially outward with height. The inner rainbands do not show tilting with height along the radial direction. However, there are few vertical tilting cells along the azimuthal orientation among the four types of rainbands. The simulated radar reflectivity cores in all rainbands are collocated with the maxima of updrafts and equivalent potential temperatures in the low layer, indicating the important roles of energy supply in the boundary layer in determining the development of the rainband convection.  相似文献   

19.
山东省春秋季暴雨天气的环流特征和形成机制初探   总被引:7,自引:2,他引:7       下载免费PDF全文
对山东省春秋季暴雨的气候特征和影响系统进行了分析, 制作了春秋季暴雨的平均环流形势图。分析了2003年春秋季两次大范围暴雨的环流特征和影响系统及暴雨期间大气的热力特征和水汽输送特征, 应用k-螺旋度和倾斜涡度发展理论, 分析了暴雨的形成机制。结果表明:4月暴雨均受气旋影响, 10月暴雨以冷锋影响居多。2003年4月17—18日为气旋暴雨, 10月10—12日为切变线冷锋暴雨。两次暴雨前都有低空偏南风急流向暴雨区输送水汽, 大气强烈增温增湿, 对流不稳定度增大, 湿斜压性增强。强冷锋南下触发对流不稳定能量释放, 产生暴雨。暴雨期间低层正k-螺旋度猛烈发展。暴雨前期中低层MPV1 < 0且MPV2 > 0, 冷锋影响期间MPV1 > 0且MPV2 < 0, 都有利于倾斜涡度发展, 增强了上升运动。  相似文献   

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