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1.
本文主要讨论地形对天气系统的影响,研究了斜压大气中地形背风气旋的问题。用小参数法简化基本运动方程,利用青藏高原和落基山脉的实际地形,采用FFT的数值方法,考虑了不同地形、风切变、大气层结等诸因素对地形扰动的影响。结果表明:青藏高原和落基山脉东侧的地形扰动与统计结果较一致;层结对地形扰动的影响较敏感。  相似文献   

2.
Altai-Sayan lee cyclogenesis: Numerical simulations   总被引:1,自引:0,他引:1  
Summary In this paper we compare and analyse two cases of lee cyclogenesis observed near the Altai-Sayan massif (14–16 April 1988; 3–5 March 1986). The interpretation of the events is based on numerical simulations with an isentropic primitive equation model, where runs without orography are compared to those with realistic orography. The runs with mountains are successful in depicting the observed developments, so that the no-mountain experiments can be assumed to provide further information on the dynamics of both cases.The case of 14–16 April 1988 is dominated by rapid cyclogenesis and cut-off low formation aloft linked to the southward motion of a potential vorticity maximum towards the Altai-Sayan massif. Cyclone formation would have occurred without mountains as well. However, cyclogenesis at low levels is enhanced by the presence of the mountains through blocking of the cold air and corresponding deformation of the surface cold front. So this is a case of orographically modified cyclogenesis whereas the cyclogenesis of 3–5 March 1986 is induced by the mountain. In that case a broad and almost steady trough moves eastward over the Altai-Sayan region. Cyclone formation is absent in the no-mountain run. However, both cases exhibit some similarities with respect to the low-level developments induced by the mountains. A conceptual model is presented in order to further elucidate the key features of both cases.With 11 Figures  相似文献   

3.
Summary A torrential precipitation event occurred in Catalonia (northeastern part of Spain) during 9 and 10 October 1994. More than 400mm were registered in the south of Catalonia. A diagnostic study shows that most of the ingredients to produce heavy rain (large scale upward vertical motion, instability, high moisture content in all the troposphere) were present over the Spanish coast and western Mediterranean. Mesoscale triggering mechanisms have been associated with the orographic forcing, not only through physical lifting of moist air by the coastal mountains, but also by the redistribution of the surface pressure field induced by the Atlas and Pyrenees ranges. A numerical simulation of the event using a meso- model has been performed. The model forecasts qualitatively well the rainfall distribution but underestimates the maximum rainfalls. The effects of the orography and the evaporation from the sea have been also studied. The simulations have shown that the action of the orography is decisive for the rainfall, pressure and wind distrbutions over the Spanish coast and the western Mediterranean. The isolated action of the evaporation turns to be much less important. However the combined effect of orography and evaporation is the most important factor in the areas where the greatest amount of rainfall occurred.With 26 Figures  相似文献   

4.
Abstract

Three examples of cyclogenesis off the east toast of North America are studied using an 8‐level primitive equations model. The model includes input of sensible and latent heat from the sea surface, both parameterized convective and large‐scale precipitation and release of latent heat, surface frictional drag and orography. The grid size is 190 km. Twenty‐four‐hour prognoses were made for four time periods with similar results: orography and fluxes of sensible and latent heat from the ocean were of little consequence, while the effect of the land‐water roughness contrast was significant.

The lack of appreciable orographic influences is attributable to the fact that the Lows studied crossed the Appalachians south of the highest terrain. The cyclones formed along well‐developed frontal systems where the difference between air or dew‐point temperature and sea temperature in the warm sector was small or negative. Consequently fluxes of both sensible and latent heat near the Low centres during cyclogenesis were small. They were large, as expected, in the cold air flowing out over the water to the rear of the cyclones. However, the Laplacian of the flures did not favour intensification at the Low centres. Moreover, heating in the cold air destroys available potential energy. It is true that the warm sector air probably had an initial vertical temperature and moisture distribution conducive to precipitation and release of latent heat. However, this arose due to fluxes prior to deepening. The dramatic effect of frictiona drag was associated with a decrease in low‐level mass convergence as the Lows moved from rough land to smooth sea.  相似文献   

5.
The adjoint sensitivity related to explosive cyclogenesis in a conditionally unstable atmosphere is investigated in this study.The PSU/NCAR limited-area,nonhydrostatic primitive equation numerical model MM5 and its adjoint system are employed for numerical simulation and adjoint computation,respectively.To ensure the explosive development of a baroclinic wave,the forecast model is initialized with an idealized condition including an idealized two-dimensional baroclinic jet with a balanced three-dimensional moderateamplitude disturbance,derived from a potential vorticity inversion technique.Firstly,the validity period of the tangent linear model for this idealized baroclinic wave case is discussed,considering different initial moisture distributions and a dry condition.Secondly,the 48-h forecast surface pressure center and the vertical component of the relative vorticity of the cyclone are selected as the response functions for adjoint computation in a dry and moist environment,respectively.The preliminary results show that the validity of the tangent linear assumption for this idealized baroclinic wave case can extend to 48 h with intense moist convection,and the validity period can last even longer in the dry adjoint integration.Adjoint sensitivity analysis indicates that the rapid development of the idealized baroclinic wave is sensitive to the initial wind and temperature perturbations around the steering level in the upstream.Moreover,the moist adjoint sensitivity can capture a secondary high sensitivity center in the upper troposphere,which cannot be depicted in the dry adjoint run.  相似文献   

6.
2008年初江苏暴雪天气的模拟分析   总被引:3,自引:3,他引:0       下载免费PDF全文
利用常规探测资料,分析2008年1月27—28日淮河以南的区域性暴雪天气过程发现:暴雪发生在巴尔喀什湖阻塞高压东侧不断补充南下的冷空气与低空的西南急流输送的暖湿空气相结合的背景条件下,中低层的气旋式环流及其东侧的暖式切变线是暴雪天气的主要影响系统。PSU/NCAR非静力原始方程中尺度模式MM5V3.6较好地模拟了暴雪过程。高分辨率的数值模拟资料显示:水汽通量散度和垂直运动的特征揭示了700 hPa以上的中层的大气运动是暴雪发生的关键;整层的气温均在0℃以下,为降雪提供了充分的气温条件。通过对位涡、湿位涡的诊断发现,冷空气由中层自北向南向低层楔入,导致暖湿气流加强了的垂直运动沿冷空气垫倾斜上升产生对称不稳定,中尺度的对称不稳定是这次暴雪天气的物理机制。  相似文献   

7.
ALPEX-Simulation     
Summary In a project ALPEX-Simulation, sponsored by the Österreichischer Fond zur Förderung der wissenschaftlichen Forschung (FWF), all eight cases of ALPEX-SOP cyclones were numerically simulated with a fine mesh isentropic model of the atmosphere. These numerical simulations in six-hourly intervals allow a deeper insight into the synoptics and dynamics of the cyclogeneses in the Western Mediterranean, especially into the genesis of the two basic types of cyclones: the so-called Überströmungs-type and Vorderseiten-type. In the first phase of cyclogenesis of the Überströmungs-type, the blocking and flow splitting of the cold air due to the Alps and the canalization between the Alps and the Massif Central are important. Cold air flows cyclonically around the western part of the Alps, creating a vorticity maximum at the south western edge of the Alpine, bow and leads also to an enhanced PV. In connection with warm air in the Mediterranean, a strong baroclinic zone is generated. The interaction between the arriving PV maximum in the upper troposphere and the enhanced PV at the bottom leads to cyclogenesis in the Western Mediterranean. In the case of the Vorderseiten-type warm air advection dominates with the exception of a shallow layer of cold air in the inner Po-Valley, which is shielded by the Alpine ridge. A well-pronounced PV maximum builds up and couples with the PV maximum arriving at upper levels, even before the cold air, coming from the north-west, has surrounded the Alps. The cold air only intensifies the development by raising the baroclinity. Therefore, the Vorderseiten-cyclogenesis is an orographically modified cyclogenesis, in the course of which the cyclonic development is triggered by the Alps, whereas the Überströmungs-cyclogenesis is an orographically induced cyclogenesis i.e. a true lee cyclogenesis.With 14 FiguresDied in a tragic traffic accident on June 6, 1993.  相似文献   

8.
LOCAL ENERGETICS ON EXPLOSIVE DEVELOPMENT OF EXTRATROPICAL MARINE CYCLONE   总被引:1,自引:0,他引:1  
Local energetics on explosive development of extratropical marine cyclone was proposed and adiagnosis of the representative cases was performed from local balance,net volume integrationbudget and vertical distribution using the derived eddy kinetic energy equation and eddy availablepotential energy equation.The results revealed that three primary scenarios are responsible for therapid growth of eddy kinetic energy and explosive cyclogenesis,and that a primary explosivedevelopment mechanism is the enhanced baroclinic instability by eddy heat transport and eddydiabatic heating,and that the explosive eyclogenesis is essentially a product of the peculiarclimatological background bearing strong thermal difference in cold season and its conversionpotential.  相似文献   

9.
谈哲敏  伍荣生 《气象学报》2000,58(2):137-150
文中利用一个包含地形、边界层摩擦作用的二层锋面简化模型 ,讨论了地形、边界层对冷锋锋面结构、环流的动力学影响作用问题。冷锋的倾斜主要与冷锋暖区的地转流分布、锋面移动速度、锋面与地形的相对位置有关。当冷锋位于迎风坡时 ,其坡度减小 ,位于背风坡时 ,其坡度增大。在静止冷锋存在两类不同的环流系 ,即位于大气低层、地面锋附近的反时针环流系和远离地面锋的顺时针环流系。静止冷锋位于背风坡 ,其冷域中的这支闭合环流增强 ,范围增大 ,而位于冷锋界面上的环流转向点沿锋面上移 ,暖域中沿锋面的暖空气运动范围变大。当静止冷锋位于迎风坡时 ,结果相反。冷锋移动较慢时 ,其冷域远离地面锋的这支顺时针环流主体可被地形完全阻塞在迎风坡。当静止冷锋移离地形时 ,由于地形作用可在锋面暖域、地形下游形成一个背风槽。地形对锋区的垂直运动影响主要通过地形与边界层共同作用 ,改变锋区流场辐合辐散的分布及地形强迫抬升两条途径实现。由于边界层摩擦的辐合作用 ,在地面冷锋的前缘可形成一支范围较窄、强度较大的上升运动带 ,当冷锋位于迎风坡时 ,其强度增强 ,当冷锋位于背风坡时 ,其强度减弱。当冷锋位于背风坡时 ,在暖区沿锋面上升的暖空气运动范围增大 ,可以出现沿锋面相间隔的多个上升区  相似文献   

10.
萧永生 《气象学报》1984,42(3):279-289
采用一个准地转三层模式,对于高低空不同层结及不同风速铅直廓线下的斜压不稳定性问题进行了分析和讨论。指出:(1)大气层结特征对斜压不稳定的影响不仅表现在对不稳定临界波长和临界风速切变的制约上,而且其铅直分布的不均一性决定了大气的各个层次对斜压不稳定的贡献大小;扰动的斜压发展主要取决于静力稳定度较小的那些层次内的热力、动力学条件,在这些层次内,扰动也最为明显。(2)高低空风速比中空为大的“高低空强风型”风速铅直分布最有利于扰动的不稳定发展,在这种风速铅直廓线下,不稳定波波谱较宽,不稳定波临界波长和最不稳定波波长也较短。  相似文献   

11.
The alternating change of the two meiyu front rain-bands caused by the alternating change between the moist potential vorticities is discussed. The main factors of the change of moist potential vorticity are the vertical and horizontal divergence of moist potential vorticity flux as well as the vertical transport caused by the cumulus mass flux. Also discussed is the possibility that the WAVE-CISK conditional symmetric instability in the baroclinic moist atmosphere leads to the forming of the double rain-bands and their roller-shaped circulation features. Theoretical analyses show that the latitudinal disturbance scale-selection by the primitive moisture model of the latent heat release in cumulus convection depends on the stratification instability parameter (Ri number) and viscous coefficient of eddy.  相似文献   

12.
1999年6月下旬长江中下游梅雨锋低涡扰动的结构研究   总被引:28,自引:12,他引:28  
高坤  徐亚梅 《大气科学》2001,25(6):740-756
1999年6月下旬在长江中下游发生长达10天之久的连续性暴雨,作者对其进行了全程中尺度四维同化数值模拟,利用时空高分辨的模式输出,对梅雨锋上与强降水密切相关的5个低涡的活动特点和四维结构进行了综合分析:识别和追踪每个低涡的活动路径,分析其主要特征的垂直结构、水平分布和时间演变,并通过轨迹和气块物理属性个别变化的计算,揭示构成低涡的三股气流,分析低涡区水汽及冷空气来源和湿斜压锋区的形成.  相似文献   

13.
In this study,the predictability and physical processes leading to the rapid frontal cyclogenesis,that took place in the east coast of the U.S.during 3-4 October 1987,are examined using a nestedgrid.mesoscale model with a fine-mesh grid size of 25km.It is shown that the model reproduces reasonably well the cyclogenesis in a coastal baroclinic zone.its subsequent deepening and movement as well as the pertinent precipitation.It is found that the frontal cyclogenesis occurs in a favorable large-scale environment with pronounced thermal advection in the lower troposphere and marked potential vorticity(PV) concentration aloft associated with the tropopause depression.The transport of warm and moist air from the marine boundary layer by the low-level in-shore flow provides the necessary energy source for the observed heavy precipitation and a variety of weather phenomena reported in the cold sector.Several 24-h sensitivity simulations are performed to examine the relative importance of diabatic heating,adiabatic dynamics and various initial conditions in the frontal cyclogenesis.It is found that latent heat release,even though quite intense,accounts for only 25% of the cyclone's total deepening in this case:the weak impact seems due to the occurrence of latent heating in the cold sector and the upward lifting of the dynamical tropopause by diabatic updrafts.Vorticity budgets show that the lowlevel thermal advection dominates the incipient stage,whereas the vorticity advection determines the rapid deepening rate at the mature stage.The results reveal that the predictability of the present storm is closely related to the vertical coupling between the surface cyclone and the upper-level PV core,which is in turn determined by initial offshore perturbations in the lower troposphere.  相似文献   

14.
台风布拉万(1215)深入内陆所致的大暴雨成因分析   总被引:3,自引:1,他引:3  
任丽  王承伟  张桂华  杨艳敏  金磊 《气象》2013,39(12):1561-1569
本文使用多种观测资料和NCEP再分析资料,对1215号台风布拉万北上深入内陆在黑龙江中部地区引发大暴雨过程进行追踪和诊断分析,探究此次大暴雨天气发生、发展的动力学、热力学和不稳定机制以及卫星云图特征。分析结果表明:大暴雨的发生是中低纬系统相互作用的结果,冷空气向东南方向移动增强了大气的斜压性,有利于斜压扰动的发展;对流层低层的对流不稳定和对流层中层的湿对称不稳定的共同存在,说明大气层结不稳定,为大暴雨的出现提供了有利的环境条件;对流层中低层形成了一个自下向上的正涡管,促使对流发展,散度场上表现为低层辐合、高层辐散的动力配置结构以及中尺度次级环流的出现均为暴雨的维持和加强提供了重要的动力机制;台风中心东侧的偏南和东南急流为大暴雨提供了充沛的水汽条件和热力条件。分析还表明地形对暴雨有增幅作用。  相似文献   

15.
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   

16.
本文选取了7个实例,分析冷锋前浙江大范围冰雹天气的发生条件。大范围冰雹天气发生前,必须具有较大的位势不稳定能和较强的边界层辐合。强的风速垂直切变并不是必要条件。冰雹天气发生前6—12小时,对流层中、下部不一定有大尺度辐合上升。冰雹发生之前,边界层内暖湿空气十分强盛,而中层的冷干空气活动一般并不明显。因此不稳定能的形成主要是由于边界层内暖湿平流的结果。冰雹天气过程的水汽通量散度,与一般暴雨过程不同,前者的水汽辐合几乎全部集中在边界层内。冷锋位置、边界层辐合线、潜在不稳定度和对流不稳定度这四个因子相结合,可能是预报冷锋前有无大范围冰雹天气发生的有效信息。  相似文献   

17.
稳定的和不稳定的斜压行星波   总被引:1,自引:2,他引:1  
谢义炳 《气象学报》1981,39(1):44-58
本文采用两层模式,初步地应用“时空同化”的自然观,引进空间不稳定性观点,把空间不稳定性和时间不稳定性结合起来,研究振幅随纬度变化的斜压行星波的存在范围和其稳定性;得出了稳定的和不稳定的斜压行星波及其空间不稳定判据,并对传统的斜压行星波不稳定理论和判据作出鉴定,重新提出了斜压行星波时间不稳定判据,并讨论其物理含义;还得出了高层和低层斜压行星波相互强迫振动的机制以及不同纬度间扰动振幅的关系。  相似文献   

18.
两次副热带高压北侧暖锋暴雨动力热力诊断   总被引:3,自引:0,他引:3  
使用常规观测资料、自动气象站降水量以及NCEP FNL再分析资料,对黑龙江省两次副热带高压(简称副高)北侧暖锋暴雨过程(简称"0801"和"0803"过程)进行动力热力机制诊断分析。结果表明,两次暖锋暴雨过程,均有台风活动,造成副高西伸北抬,副高外围的西南低空急流向北输送大量高动量的暖湿空气。两次暴雨过程与高低空急流关系密切,"0803"过程中高低空急流均更强,暴雨区位于高低空急流耦合形成的垂直次级环流的上升支。"0801"过程,暴雨发生前大气对流不稳定,辐合抬升及次级环流上升气流的共同作用触发对流,促使不稳定能量释放,形成强降水。"0803"过程,暴雨期间大气对流稳定,锋区中层的CSI有利于降水强度的增强及维持,锋面强度更大,由锋面辐合抬升形成的上升运动范围更广,造成更大范围的强降水天气。在暴雨区上空由于凝结潜热释放而引起广义位温高值区向下伸展,强暖平流促使中低层湿斜压性显著增大,利于暖锋锋生。水汽散度通量和水汽垂直螺旋度能够较好地描述强降水过程,强降水区与水汽散度通量正值区及水汽垂直螺旋度负值区相对应。  相似文献   

19.
谈哲敏  伍荣生 《气象学报》2000,58(2):137-150
文中利用一个包含地形、边界层摩擦作用的二层锋面简化模型,讨论了地形、边界层对冷锋锋面结构、环流的动力学影响作用问题.冷锋的倾斜主要与冷锋暖区的地转流分布、锋面移动速度、锋面与地形的相对位置有关.当冷锋位于迎风坡时,其坡度减小,位于背风坡时,其坡度增大.在静止冷锋存在两类不同的环流系,即位于大气低层、地面锋附近的反时针环流系和远离地面锋的顺时针环流系.静止冷锋位于背风坡,其冷域中的这支闭合环流增强,范围增大,而位于冷锋界面上的环流转向点沿锋面上移,暖域中沿锋面的暖空气运动范围变大.当静止冷锋位于迎风坡时,结果相反.冷锋移动较慢时,其冷域远离地面锋的这支顺时针环流主体可被地形完全阻塞在迎风坡.当静止冷锋移离地形时,由于地形作用可在锋面暖域、地形下游形成一个背风槽.地形对锋区的垂直运动影响主要通过地形与边界层共同作用,改变锋区流场辐合辐散的分布及地形强迫抬升两条途径实现.由于边界层摩擦的辐合作用,在地面冷锋的前缘可形成一支范围较窄、强度较大的上升运动带,当冷锋位于迎风坡时,其强度增强,当冷锋位于背风坡时,其强度减弱.当冷锋位于背风坡时,在暖区沿锋面上升的暖空气运动范围增大,可以出现沿锋面相间隔的多个上升区.  相似文献   

20.
孙力  董伟  药明  朱丹  李倩 《气象学报》2015,73(1):36-49
利用中尺度非静力模式WRF对2012年第15号台风“布拉万”在中国东北地区造成的暴雨过程进行了数值模拟,结合观测资料对模拟结果进行了验证,利用模式输出的高分辨率资料,对“布拉万”台风造成的强降水及其非对称性分布的成因进行了诊断分析。结果表明,模式很好地再现了台风登陆过程中的路径、强度变化和降水分布,受中纬度西风槽带来的干冷空气影响,“布拉万”台风登陆后的降水和环流结构具有明显的不对称性,降水主要集中在台风中心西北侧的能量锋区附近。水汽散度通量和水汽螺旋度能够较好地描述强降水过程的发生、发展及其非对称性分布的时空特征,在强降水区,水汽散度通量表现为正值强信号,而水汽螺旋度表现为负值强信号,在非降水区和弱降水区,两者均表现为弱信号。等熵位涡分析显示,对流不稳定只是此次台风暴雨前期和初始阶段的不稳定条件,而湿位涡(MPV)的湿斜压项(MPV2)则是暴雨增强和出现非对称性分布的主要机制。在暴雨形成过程中,由于冷空气侵入造成了在台风环流西北侧湿等熵面的陡立倾斜和水平风垂直切变的增强,导致了气旋性涡度的显著增强,气旋性涡度增强造成的强烈上升运动将降水区东南侧输送过来的暖湿空气向上输送,从而导致了暴雨的发生,这其中条件性对称不稳定是降水得以加强的一种重要不稳定机制。  相似文献   

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