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1.
以1983年4月28日影响江淮地区的冷锋天气过程为例,讨论了高空急流加速与锋生函数之间的关系。计算结果表明了在这次冷锋天气过程的前期,高空急流加速对对流层中层锋生具有重要贡献。而在这次冷锋天气过程的后期,低层锋生可能是由斜压波从基流中获得发展的能量而诱使低层锋生。  相似文献   

2.
"0907"长江下游梅雨锋暴雨的数值模拟和诊断分析   总被引:10,自引:8,他引:2       下载免费PDF全文
赵娴婷  苗春生  于波 《气象科学》2012,32(2):194-201
利用常规观测资料、卫星TBB资料以及客观再分析资料,对2009年7月6—7日(简称"0907")的长江下游梅雨锋暴雨过程进行了数值模拟和天气分析,重点研究了中尺度系统的发生发展机制。结果表明:7月6—7日对流层低层,长江下游北侧存在的一次天气尺度低压,其发展和东移,促使锋生加强,低空急流发生。WRF中尺度模式数值模拟结果显示,在次天气尺度低压的南侧不断形成β中尺度和γ中尺度对流系统。对其中一个β中尺度对流系统的分析研究表明:低空中尺度急流和中尺度辐合首先发生。之后中尺度辐散迅速加强。高层强辐散、低空中尺度急流核和中尺度低涡的相互耦合作用使系统不断发展并东移。高层相对干冷空气的侵入促使系统衰减消亡。  相似文献   

3.
滇黔准静止锋诱发贵州春季暴雨的锋生机制分析   总被引:3,自引:0,他引:3  
利用卫星云图、常规地面观测资料和逐6 h的1°×1°NCEP再分析资料,对2003-2006年春季滇黔准静止锋背景下,出现的5次贵州暴雨天气过程进行了诊断分析和总结。结果表明:在准静止锋背景下,贵州春季暴雨是由高低空急流、高空槽、冷空气与准静止锋的共同作用产生的。低空急流将大量的水汽从孟加拉湾和北部湾输送到贵州,不断积累对流有效位能;高空急流的加速增强了"高层辐散、低层辐合"的大尺度上升运动,并通过急流下侧的正环流圈带动冷空气南下,使得准静止锋活跃锋生,是暴雨天气过程的触发机制。锋生现象分析表明,高空急流加速导致对流层中高层极锋锋区内锋生和对流层中层正环流圈的形成,加强了准静止锋附近的水平变形和垂直运动,进而促使锋生加强。水平变形和垂直运动对暴雨的产生也有直接影响:水平变形项范围越大则降雨强度越强,与垂直运动相关的倾斜项移动与在准静止锋附近生成的强对流云团的移动方向一致。准静止锋与贵州春季的暴雨过程关系密切,暴雨落区集中分布在准静止锋南侧1个纬距带内。高空急流加速度、冷锋附近的水汽辐合强度以及对流有效位能的高能舌区范围对暴雨范围和强度有指示作用。基于以上锋生机制,提炼了滇黔准静止锋诱发贵州春季暴雨的物理模型。  相似文献   

4.
隆霄  潘维玉  邱崇践  赵建华 《高原气象》2009,28(6):1335-1347
利用常规观测资料\, 卫星观测的高时空分辨率TBB资料以及客观分析资料, 对2002年6月22~23日(“02.6”)一次非典型的梅雨锋暴雨过程进行了天气分析。在此基础上, 利用中尺度数值模式MM5对此次梅雨锋暴雨过程进行了数值模拟, 并分析了暴雨中尺度系统的结构特征。结果表明: (1)天气分析显示, “02.6”梅雨锋暴雨过程与α中尺度低涡的东移发展和对流层低层的两支低空急流的增强发展有关。对流层低层700 hPa为一个缓慢东移与南压的东北西南向冷式切变线, 暖式切变线不太明显, 这与通常的江淮切变线梅雨锋暴雨不同。对流层500 hPa的副热带高压非常强, 高层200 hPa对流层高层的反气旋环流非常强并与高空急流相伴, 南亚高压中心位于我国江南地区。(2)TBB资料分析表明, 此次暴雨过程产生与多个β中尺度系统合并发展成α中尺度系统以及此后从α中尺度系统中不断分裂出β中尺度系统发展演变密切相关; 强中尺度对流系统主要在中尺度低涡冷、 暖切变线的的南侧发生和发展, 并不是在中尺度低涡的冷暖切变线上发展。(3)垂直结构分析显示: 在中尺度系统开始发展阶段, 中尺度系统具有强的垂直于剖面的风分量切变、 低空急流核以及高空强辐散低空强辐合, 这有利于中尺度系统的发展; 当中尺度低涡发展到相对成熟的阶段, 其后部不断分裂出中小尺度系统, 对流层低层的θe具有明显暖心结构, 由于气块绝热上升冷却效应比对流潜热释放作用强, 导致在800~600 hPa层上 θe比环境的低, 加之在强上升运动的顶部两侧的下沉补偿气流也比较弱, 这不利于中尺度低涡的维持。  相似文献   

5.
文中根据一个二维半地转模式用比容作为等熵垂直坐标,研究由汇全强迫产生的非粘滞、干燥和绝热流体中的高空锋生。初始条件是在地面有温度对比存在的情况下用一给定的连续解析位涡场来确定。由于地面与模式最低几层相交,下边界条件需做适当处理。文中讨论了中低对流层位涡水平变化在高空急流锋系统加强中所起的作用,与暖气团相关的冷气团的去稳作用有助于高空急流强度的增强。  相似文献   

6.
高空急流加速与低层锋生   总被引:27,自引:10,他引:27  
本文从动力学上找到了低层锋生函数同急流区内纬向平均风加速的关系,指出高空急流加速有利于大气低层锋生,并从天气学的角度给出了高空急流加速同低层大气锋生的环流形态特征。即高空波的动量和热量通量在急流区的辐合,促使高空急流加速,并引起急流入口区上下层之间的质量调整,在急流轴高度以下出现一个反环流,反环流的上升支同其下原有的弱锋前的上滑爬升气流发生耦合,造成上滑气流加强,低层锋面坡度变陡,冷暖对比明显,引起大气低层锋生。  相似文献   

7.
文中利用包括湍流摩擦耗散的原始方程模式研究了高空西风急流、低空南风急流和水汽凝结过程对锢囚锋环流时间演变和降水强度变化的影响 ,计算结果表明 ,水汽凝结过程与高空西风急流或低空南风急流的共同作用对锢囚锋环流的演变起非常重要的作用 ,能在锢囚锋区形成强中尺度深对流系统 ,与干大气中高空西风急流对锢囚锋环流的作用远大于低空南风急流的情况相反 ,在存在水汽凝结过程的湿大气中 ,低空南风急流对锢囚锋的影响远大于高空西风急流 ,它产生的降水过程时间更长 ,降水强度更大 ,降水范围更广 ,是锢囚锋区产生强中尺度降水的重要因子。  相似文献   

8.
一次梅雨期暴雨与中层锋生、β中尺度小高压的关系   总被引:2,自引:2,他引:0  
利用实况资料和中尺度WRF模式对2007年7月9—10日一次江淮梅雨期暴雨过程进行了数值模拟与诊断分析。结果表明,此次过程中,在雨带的北部有β中尺度小高压的维持及破坏过程。在小高压维持时,暴雨相对较小,被破坏时,降水加强,同时中层有明显的锋生过程。β中尺度高压产生与消失的原因与高空急流的非地转质量调整有关。小高压存在时有利于梅雨锋切变线的维持,但其南部的偏东气流,没有为暴雨提供较强的辐合场,且阻挡了北方的冷空气南下,因此不利于强降水的产生。当其减弱消失时,使得北方的动量直接指向暴雨区,有利于辐合上升运动的加强,从而强降水发展加强。最强锋生、降水以及有效位能出现在小高压被破坏后。利用锋生函数计算得出,暴雨时,中层的水平辐散项与变形项对锋生的影响明显。通过湿位涡的计算发现其对低层锋生和降水的预报有着一定的指示和预报意义。  相似文献   

9.
梅雨锋云带内α-中尺度对流系统周边水汽风的分析   总被引:4,自引:0,他引:4  
刘启汉  陈受钧 《气象学报》2004,62(2):237-242
应用准静止卫星水汽图像导出的风 (简称为水汽风 )分析东亚梅雨锋云带内中尺度对流系统 (MCS)在对流层上层的流出通道。结果表明梅雨锋云带内MCS有二类流出通道。一类MCS在对流层上层呈现为一个中尺度反气旋。MCS的东部有一支中尺度高空急流 ,这支中尺度高空急流向东流出后转向南 ,流入 2 0°N附近的南亚东风急流内 ,是MCS在对流层上层的主要流出通道。另一类MCS发生在中纬度西风急流的南侧。中纬度西风与MCS南部的偏东北风构成一个反气旋环流带。MCS前方的流出通道 (中尺度高空急流 )是中纬度西风急流的一个中尺度分支。梅雨锋云带内垂直方向水平风速切变小于 1m/ (s·10 0hPa) ,垂直方向“不通风”有利于云带内MCS的维持。初步分析验证了以前数值模拟得到的中尺度高空急流及其流出通道。  相似文献   

10.
为了研究浙中西(浙江省中部和西部)梅雨锋强降水的锋生及环流特征,以2016年6月15日一次典型梅雨为代表,采用ERA-INTERIM(0.25°×0.25°)再分析资料、FY-2E卫星云顶亮温和雷达资料,运用风场分解、合成分析等方法对锋生与强降水的对应关系及环流结构进行分析。结果表明:此次典型梅雨处于有利的天气尺度背景下,强降水区与中低层锋生区有较好对应。锋区维持时,强降水区伴随中层倾斜锋生和形变锋生;锋区南压时,强降水区伴随中层倾斜锋生和低层水平锋生。低层梅雨锋北侧为超地转偏西气流,南侧为非地转东南气流,它们分别影响了北侧非平衡偏北气流和南侧平衡西南气流的发展,从而影响锋生系统。在锋区存在低层地转偏差辐合、高层辐散的上升运动,形成次级环流上升支,锋后反之。此外,锋前低空纬向风为次地转,而锋后低空纬向风为超地转,高空纬向风为次地转,这进一步促进了次级环流的发展。合成场中,在200 hPa西风槽槽后及槽前分别存在西北气流和西南气流显著增强区;在700 hPa浙北(浙江北部)地区存在东北气流显著增强区。合成锋生各分解项的水平及垂直分布与典型个例较类似。低层锋生主要由散度项贡献,形变项次之,倾斜项则起负作用;中层锋生主要由倾斜项贡献,形变项次之;高层锋消主要由倾斜项贡献。  相似文献   

11.
华南局地锋生及对流系统发展的模拟分析研究   总被引:5,自引:1,他引:4  
2009年3月28日一条东西向的锋面出现在华南25°N附近。伴随着锋面的活动,对流降水回波午后开始在广西的梧州附近发展,并在随后几小时向东移动,组织发展成为中尺度对流系统(MCS),为广东中西部及珠三角地区带来了雷暴、暴雨、冰雹等灾害天气。应用地面自动站、雷达回波、卫星云图以及NCEP-FNL再分析资料和WRF模式的模拟结果,对锋面暴雨形成的天气特征进行了诊断分析,考察了中尺度对流系统的发展演变过程及其与局地锋生的相互关系。结果表明,锋面对流系统形成发展于一个东西向水平尺度约200km的地面中尺度辐合线附近,对流起始发展于具有较大对流有效位能(CAPE)和较小对流抑制位能(CIN)的区域。伴随着对流的发展,锋面强度增强。锋生函数的计算发现,非绝热项和倾斜项分别在由对流引起的次级环流的上升运动支和下沉运动支起锋生作用,是引发中尺度锋生的主要影响因子。而相对来说,水平辐合项和形变项的作用却比较小。这与大尺度的锋生过程不同,中尺度锋生更主要的是由热力直接触发的非地转环流所驱动。涡度场的演变分析还发现,沿着850hPa锋区大的正涡度区与500hPa的强上升运动区对应良好,对流系统发展与中尺度锋生之间存在着类似于第二条件不稳定机制的相互作用,对流增强了锋生过程,锋面则对中尺度对流系统的发展起组织作用。中尺度锋生对对流组织发展的作用作为此类灾害天气形成的原因值得关注。  相似文献   

12.
Summary The problem of along-stream ageostrophic frontogenesis is studied by employing a numerical model at meso-alpha and meso-beta scales in simulations of the downstream circulations over the Front Range of the Rocky Mountains. Three-dimensional real data simulations at these two scales of motion are used to diagnose the transition from semigeostrophic cross-stream frontogenesis accompanying a propagating baroclinic upper-level jet streak to midtropospheric along-stream ageostrophic frontogenesis. This along-stream ageostrophic frontogenesis results from the perturbation of the jet streak by the Rocky Mountain range. The case study represents an example of internal wave dynamics which are forced by the drag of the Rocky Mountains on a strong jet streak in the presence of a low-level inversion.The simulation results indicate that, unlike semi-geostrophic frontogenesis, a front (which is alligned perpendicular to the axis of the jet stream) may form when significant adiabatic heating occurs within a stratified shear flow over horizontal length scales shorter than the Rossby radius of deformation. The mechanism responsible for the frontogenesis is the growth of the divergent along-stream wind velocity component which becomes coupled to the front's along-stream pressure gradient force. This nonlinear interaction produces hydrostatic mesoscale frontogenesis as follows: 1) vertical wind shear in the along-stream plane strengthens resulting in the increasingly nonuniform vertical variation of horizontal temperature advection as the ageostrophic wind component grows in magnitude downstream of the meso-scale terrain-induced adiabatic heating, 2) increasing along-stream differential vertical motions (i.e., along-stream thermally indirect circulation with warm air sinking to the west and cold air rising to the east) tilt the vertical gradient of isentropes into the horizontal as the vertical temperature gradient increases due to the previous process in proximity to horizontal gradients in the along-stream component of the ageostrophic wind, 3) as tilting motions act to increase the along-stream horizontal temperature gradient, the along-stream confluence acts to nonuniformly increase the along-stream frontal temperature gradient which increases the along-stream pressure gradient force resulting in further accelerations, ageostrophy, and frontal steepening as part of a scale contraction process.The evolution of the aforementioned processes results in the three-dimensional hydrostatic frontogenesis accompanying the overturning of isentropic surfaces. These adjustments act to turn air parcels to the right of the southwesterly geostrophic wind vector at successively lower atmospheric levels as the scale contraction continues. This simulated along-stream front is verified from diagnostic analysis of the profiler-derived temperature and wind fields.With 17 Figures  相似文献   

13.
A generalized frontogenesis function and its application   总被引:3,自引:0,他引:3  
With the definition of generalized potential temperature, a new generalized frontogenesis function, which is expressed as the Lagrangian change rate of the magnitude of the horizontal generalized potential temperature gradient, is derived. Such a frontogenesis function is more appropriate for a real moist atmosphere because it can reflect frontogenesis processes, in which the atmosphere in a frontal zone is typically characterized by neither completely dry nor uniform saturation. Furthermore, by derivation, the expression of generalized frontogenesis function includes both temperature and humidity gradients, which is different from and superior to the traditional frontogenesis function in moist processes, which also uses equivalent potential temperature. Diagnostic studies of real cases are performed and show that the generalized frontogenesis function in non- uniformly saturated moist atmosphere indeed provides a useful tool for frontogenesis, compared to using the traditional frontogenesis function. The new frontogenesis function can be used in situations involving either a strong temperature or moisture gradient and is closely correlated with precipitation.  相似文献   

14.
冷锋雨带中湿物理过程与非绝热锋生的相互作用   总被引:3,自引:0,他引:3  
利用包含冰相微物理过程参数化方案的三维非静力中尺度/云模式(ARPS)模拟了与冷锋有关的冷锋雨带(NCFR)结构,着重分析了锋面云系发展演变的主要特征。模拟结果表明,锋面云系是由位于锋面前沿处的锋面次级环流的上升运动激发的;锋面强度与冷锋云(雨)带中的潜热释放之间的正反馈引起的持续非绝热锋生是锋面以及冷锋雨带得以长时间维持的主要物理机制。进一步分析表明,锋区两侧位温梯度的增加是与沿着冷锋表面的倾斜上升运动引起的云水及水汽的再分布密切相关的,即在冷气团中由云水蒸发发冷却形成冷池,而在暖气团中由水汽凝结以及雨滴冻结等形成暖池,这种冷/暖池在冷/暖气团上的叠加是引起非绝热锋生的关键。  相似文献   

15.
1991年梅雨锋暴雨与锋生环流的诊断分析   总被引:3,自引:5,他引:3  
利用原始方程模式锋生环流诊断方程对1991年7月一次梅雨锋暴雨过程进行诊断分析。计算结果表明,锋面横向次级环流在低层是一个热力正环流,低空急流出口区的次级环流使锋面附近的上升运动得到加强:100hPa青藏高压东侧的偏北风与中层的偏南风耦合形成择流层上层的反环流叠加在锋面横向环流上形成深厚的上升气流区是暴雨发生的动力条件。  相似文献   

16.
Summary The effects of varying horizontal and vertical grid resolution on the numerical simulation of upper-tropospheric frontal structures are examined using a, two-dimensional, dry, hydrostatic sigma-coordinate primitive equation model. These effects are illustrated with the results of 72 h model integrations in which frontogenesis is forced solely by confluence. Four different horizontal grid spacings, ranging from 100 km to 12.5 km, and four different vertical, grid resolutions, varying from 10 to 70 layers (90 mb to 13 mb), are considered.The intensity and integrity of the frontogenesis as a function of grid resolution are diagnosed in terms of time histories and spatial distributions of frontal parameters, such as the speed of the along-front jet, maxima of absolute vorticity and potential temperature gradient, and ageostrophic motions. The time histories show that, provided the vertical resolution is sufficient, increasing horizontal resolution leads to better-defined frontal structure due to the decrease in cross-frontal scale. They also indicate that for a given horizontal resolution there exists an optimal vertical resolution beyond which frontal parameters change only slightly. This optimal vertical resolution increases with increasing horizontal resolution, and apparently is related to the horizontal resolution through the slope of the frontal zone.The time histories for simulations combining low vertical resolution with high horizontal resolution exhibit substantial high-frequency variability. Cross sections show that this temporal variability appears to be manifested spatially in the form of gravity waves characterized by wavelengths on the order of 200 km and periods of 12 h, over the range of horizontal and vertical resolution that is considered. Although the source mechanism for these waves cannot be established definitively, it likely involves a grid-induced ageostrophic component of the along-front wind which disrupts thermal wind balance. This results thus demonstrates the potential risk of flawed frontal simulations, when incompatible combinations of horizontal and vertical resolution are used.With 7 Figures  相似文献   

17.
1. Introduction The relationship between frontogenesis and convec- ?tion has been studied intensively by many researchers ? ? ?(Orlanski and Ross, 1977 Ross and Orlansk…  相似文献   

18.
A new frontogenesis function is developed and analyzed on the basis of a local change rate of the absolute horizontal gradient of the resultant deformation. Different from the traditional frontogenesis function, the newly defined deformation frontogenesis is derived from the viewpoint of dynamics rather than thermodynamics. Thus, it is more intuitive for the study of frontogenesis because the compaction of isolines of both temperature and moisture can be directly induced by the change of a flow field. This new frontogenesis function is particularly useful for studying the mei-yu front in China because mei-yu rainbands typically consist of a much stronger moisture gradient than temperature gradient, and involve large deformation flow. An analysis of real mei-yu frontal rainfall events indicates that the deformation frontogenesis function works remarkably well, producing a clearer mei-yu front than the traditional frontogenesis function based on a measure of the potential temperature gradient. More importantly, the deformation frontogenesis shows close correlation with the subsequent(6 h later) precipitation pattern and covers the rainband well, bearing significance for the prognosis or even prediction of future precipitation.  相似文献   

19.
The development of symmetric disturbance superposed on the background field of Hoskins-Bretherton (1972) frontogenesis model is investigated by means of WKBJ approach,It is found thatthe forcing of large-scale deformation,the frontal circulation and the spatial-temporal variations ofstability parameters (F~2,N~2,M~2) can bring about the development of symmetric disturbance,even though the frontal baroclinic flow is symmetric stable (F~2N~2-M~2=q>0),Thefrontogenetical process of deformation confluence zone and the ascending branch of frontalcirculation are in favor of the development of symmetric disturbance,The actions of ageostrophicshear in frontal zone and the variation of stability parameters are dependent on the structure ofdisturbance.  相似文献   

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