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1.
2009年河南一次大暴雨过程的涡度方程诊断分析   总被引:2,自引:0,他引:2  
利用NCEP/NCAR再分析格点资料、常规气象资料及中尺度WRF模式,对2009年8月28—30日发生在河南南部的一次暴雨过程进行中尺度数值模拟及诊断分析。结果表明,WRF模式对此次暴雨过程模拟效果较好,模拟物理量能够较好地反映暴雨的实际特征,模拟暴雨强度及落区与实况较一致。高空槽、副热带高压、超低空东风急流及低层风切变是此次暴雨的主要影响系统。利用涡度方程对暴雨过程进行诊断分析发现,涡度方程各项收支中,涡度平流作用与辐合辐散作用对涡度局地变化的贡献最大,垂直输送项与扭转项对涡度局地变化的贡献较弱。涡度平流项对中低层涡度局地变化表现出正反馈作用,垂直输送项、扭转项及辐合辐散项起着负反馈作用。涡度平流作用使得中低层气旋武环流加强,有利于中低层辐合加强,局地涡度增加。垂直输送项、扭转项及辐合辐散项使得低层辐合减弱,气旋性涡度减小。此外,利用垂直螺旋度等模拟产品对暴雨诊断分析发现,暴雨落区与垂直螺旋度大值中心、水汽通量散度负值中心等相对应,此次暴雨正是在良好的动力、水汽及热力条件下产生的。  相似文献   

2.
利用NCEP/NCAR再分析格点资料、常规气象资料及中尺度WRF模式,对2009年8月28-30日发生在河南南部的一次暴雨过程进行中尺度数值模拟及诊断分析。结果表明,WRF模式对此次暴雨过程模拟效果较好,模拟物理量能够较好地反映暴雨的实际特征,模拟暴雨强度及落区与实况较一致。高空槽、副热带高压、超低空东风急流及低层风切变是此次暴雨的主要影响系统。利用涡度方程对暴雨过程进行诊断分析发现,涡度方程各项收支中,涡度平流作用与辐合辐散作用对涡度局地变化的贡献最大,垂直输送项与扭转项对涡度局地变化的贡献较弱。涡度平流项对中低层涡度局地变化表现出正反馈作用,垂直输送项、扭转项及辐合辐散项起着负反馈作用。涡度平流作用使得中低层气旋式环流加强,有利于中低层辐合加强,局地涡度增加。垂直输送项、扭转项及辐合辐散项使得低层辐合减弱,气旋性涡度减小。此外,利用垂直螺旋度等模拟产品对暴雨诊断分析发现,暴雨落区与垂直螺旋度大值中心、水汽通量散度负值中心等相对应,此次暴雨正是在良好的动力、水汽及热力条件下产生的。  相似文献   

3.
由台风低压倒槽引发的山东暴雨过程研究   总被引:4,自引:1,他引:3  
赵宇  崔晓鹏  王建国 《气象学报》2008,66(3):423-436
2004年8月26-28日发生在山东省的大到暴雨过程主要是由"艾莉"台风减弱的低压和西风带冷空气远距离相互作用造成的,台风倒槽的发展与低空东南气流的加强及台风低压外围热量和动量的向北输送密切相关.采用双向三重嵌套网格非静力模式MM5对这一过程进行了数值模拟,研究了台风倒槽的中尺度结构特征,并通过涡度收支探讨了台风倒槽及中尺度低涡发生发展的物理过程.结果表明,强降水是在台风倒槽顶部强风中心与弱风中心之间的强辐合作用下触发的,台风倒槽的增强和中尺度低涡的形成是低空急流及其动力作用的结果,降水的非绝热加热也起着重要作用.涡度方程的收支诊断表明,对流层低层的散度项、对流层中层的水平平流项和铅直输送项是正涡度的主要贡献者,在同一等压面上散度项和水平平流项的作用是相反的.对流层中层铅直输送项的贡献为正,扭转项为负贡献,涡度变化的总趋势是它们相互作用的净结果.等压面上相对涡度的变化趋势并不是均匀的,中尺度低涡的东南象限相对涡度局地变化较强,这是强降水发生在此的重要原因.低层正涡度的增加是由水平辐合引起的,而高层正涡度的增加是涡度由低层向高层垂直输送的结果.因此台风倒槽的发展和中尺度低涡的形成主要是由于低层的涡度制造,另一方面来自中低层涡度的垂直输送.  相似文献   

4.
本文利用一套具有中尺度分辨率的观测资料,对发生在1983年6月下旬的一次长江流域梅雨暴雨过程进行了诊断研究,并比较了该过程的对流降水活跃期和非活跃期的中尺度环境场特征。结果表明,两个时期的动量场存在明显差异,而水热场差异不大,Q1和Q2以及涡度收支也存在明显差异。在降水活跃期(暴雨集中期),积云对流对能量和涡度的垂直输送有着重要作用;在水热收支中,起主要作用的是垂直输送项,潜热加热基本上为抬升冷却所平衡,水汽的垂直输送是积云对流的主要水汽源;在涡度收支中,低层散度项和扭转项制造正涡度,并通过积云对流向上输送,无论在低层或高层积累的正涡度都被平流非线性过程所耗损。   相似文献   

5.
运用WRF模式对2009年7月华北地区的一次暴雨过程进行数值模拟,结果表明:WRF模式比较合理地再现了这次暴雨天气过程;本次暴雨过程的主要输送载体为西太平洋副热带高压外围及低槽前的西南急流;低层水汽通量散度的负值区与降水落区有较好的相关性;对水汽通量拓展分析研究表明,纬向水汽辐合及由风场辐合效应造成的水汽辐合贡献较大,经向水汽辐合和由于水汽分布不均而形成的平流差异所造成的水汽辐合贡献较小,且多为负贡献;水汽散度的垂直通量负异常区与云水、雨水混合比较大的区域对应得较好,它与降水的相关性也优于水汽通量散度。  相似文献   

6.
两次高原切变线诱发低涡活动的个例分析   总被引:10,自引:1,他引:9       下载免费PDF全文
使用NCEP/NCAR再分析格点资料,对2007年7月4~6日切变线在高原上发展,并诱发两次高原低涡造成高原中部大雨的活动过程进行了诊断分析。通过涡度收支等物理量计算,结果表明,垂直输送项和水平辐合辐散项对两次高原低涡的发展增强都起主要作用,在低涡不同发展阶段,二者贡献各有不同;在低涡二消亡阶段,水平平流项贡献增大。视热源和视水汽汇分析表明,这次降水过程以对流性降水为主,垂直运动的负值中心与视热源、视水汽汇中心对应,变化趋势基本一致,表明在降水过程大气加热是与大气上升运动密切相关,对流层中层的加热引起对流层低层抽吸作用会促进高原涡的发展,大气热源主要是降水过程的凝结潜热释放,水汽凝结起决定性作用。  相似文献   

7.
利用引入三相云显式降水方案后改进和发展的中尺度模式(MM4)模拟输出资料, 对"96.1"高原暴雪切变线发生、发展的结构进行了运动学和动力学诊断.涡度场演变指出, 高原上局地涡度中心和涡度带的生成和发展不仅与暴雪切变线的形成和发展密切相关, 而且有预测切变线生成的先兆意义; 涡度场、散度场、垂直速度场与相当位温场的剖面结构诊断表明, 运动场和热力场的相互配置与耦合关系极有利于暴雪切变线发展及暴雪形成与维持; 涡度变率诊断结果指出, 涡度正变率中心带初生于暴雪切变线附近, 其时空演变与切变线生成和发展相伴的正涡度中心带垂直结构及演变基本一致.在对涡度变率贡献的诸因子中, 非线性相互作用涡度变率的相对数值最大; 时间平均涡度变率的贡献次之; 与强波扰气流有关的扰动涡度变率贡献最小.在总涡度变率的诸强迫项中, 散度项贡献最大; 水平涡度平流项次之; 垂直涡度输送项和扭转项的贡献相反, 基本上互相抵消.  相似文献   

8.
一次缓慢东移的黄河气旋暴雨的诊断分析   总被引:1,自引:0,他引:1  
利用NCEP/NCAR再分析资料和常规气象资料,对2001年6月28-29日发生在河南的一次黄河气旋暴雨过程进行了诊断分析。结果表明:黄河气旋的稳定少动是造成这次暴雨的直接原因,高层辐散与中层正涡度平流对黄河气旋形成和发展起了重要作用。这次过程的水汽主要来自副高东南侧的海上,孟加拉湾的水汽也有一定的贡献。暴雨区的中低层对称不稳定的存在,导致上升运动和水汽输送的加强,造成降水的增幅。  相似文献   

9.
本文对2016年“7·19”华北特大暴雨进行观测分析和数值模拟,并设置了改变地形高度的敏感性试验,以探究该过程降水系统的发生发展机制以及太行山地形的作用。结果表明:(1)本次强降水过程发生在“东高西低”的有利环流形势下,受太行山地形和平原环流系统影响,低层东风急流造成强的对流性降水和低涡作用的叠置造成“7·19”华北地区持续性暴雨的维持和加强;(2)第一阶段为对流性降水,太行山东麓大气对流不稳定能量释放,大气逐渐转为稳定层结;第二阶段为低涡降水,涡度收支分析表明水平散度项和扭转项对低涡维持和发展起到了主要的正贡献,同时伴随有较强的上升运动和垂直风切变,垂直风切变的增强促使水平涡度向垂直涡度转变;(3)太行山地形在持续性暴雨中对两阶段降水、低涡和水汽的作用存在差异。地形高度敏感性试验中,地形高度增高对低层气流的阻挡和强迫抬升作用增强,使得地形降水增强,低涡路径东移,且强度增大。水平散度项使得对流层低层辐合上升运动增强,造成涡度的垂直输送,这是低涡发展和维持的重要原因之一。太行山地形阻挡截留东部平原水汽,且水汽回流加强,有利于太行山东麓水汽的输送与辐合。  相似文献   

10.
南海地区中层气旋的生成   总被引:1,自引:0,他引:1       下载免费PDF全文
本文对12个中层气旋生成时的环境场作综合分析,选出两个生成位置靠近平均位置的气旋,分4个时次进行涡度和热量的收支计算。结果表明,大尺度的涡度倾向是气旋生成的必要条件,尤其是散度项的贡献最为显著。在低纬地区地转参数(f)比中纬度小,散度项的贡献较大程度地取决于相对涡度(?)的大小。在对流层中下层,散度项值最大,气旋也首先在这里生成。气旋生成时涡管倾斜度很大,由于积云对流将低层的正涡度向上层输送,使涡管变垂直,促使气旋发展成熟。计算得到的小尺度涡度输送和实际降水量分布十分一致。积云对流释放出来的潜热可直接加热中层大气,但上层大气是靠补偿动力下沉增温的。  相似文献   

11.
Study on cut-off low-pressure systems with floods over Northeast Asia   总被引:4,自引:0,他引:4  
Summary The cut-off lows (COLs) during the period from June to August 1998 leading to the record flood in Northeast Asia, especially in Northeast China, has been investigated in this paper. The results are as follows: the blocking highs benefited significantly the formation and maintenance of COLs over Northeast China; an obvious frontogenesis zone existed in Northeast China and it implies that baroclinity played an important role in the initiation of COLs, especially in middle and upper troposphere; the maxima of the potential vorticity anomaly were located in the upper troposphere, then extended downwards to the middle and the lower troposphere. The pronounced interaction between systems in upper-middle and low troposphere can be revealed; the moisture supply was from South China, and even from East China Sea and South China Sea. The strong southerly current transported very rich moisture to Northeast China. The maximum of the convergence of moisture flux was below 850 hPa. Obvious interaction between the middle and lower latitude systems was found in the study. Also, the summer monsoon showed significant impacts on the sustained heavy rainfalls related with the COLs over Northeast China; the upward motion could be caused by the lifting of the large scale dynamic forcing and there was no obvious releasing of latent heating in the upper-middle troposphere. The cold dome in the COLs was quite different both from the warm core in tropical cyclone and from the weaker warm core in Meiyu (Baiu) front low. The calculation of vorticity budget shows that both the horizontal advection term and horizontal divergence term contributed importantly to the maintenance and the strengthening of positive relative vorticity. Finally, the complex dynamical characteristics regarding the COLs are discussed and further investigation is proposed.  相似文献   

12.
The Community Atmosphere Model version 3 (CAM3) temperature simulation bias is examined in this paper. We compare CAM3 output with European Centre for Medium-Range Weather Forecasts (ECMWF) 40 year reanalysis (ERA-40) data. We formulate a time mean temperature bias equation then evaluate each term in the equation. Our focus is on the Northern Hemisphere winter time. We group the temperature equation terms into these categories: linear advection terms, nonlinear advection terms, transient eddy terms and diabatic heating, and find that linear advection and diabatic bias are the largest. The nonlinear terms (velocity bias advection of temperature bias) are much smaller than each of the other groups of terms at all levels except near the surface. Linear advection terms have dipolar pattern in the Atlantic (negative NW of positive) which reflects the shift of the CAM3 model North Atlantic storm track (NAST) into Europe, especially in the upper troposphere; opposite sign dipolar structure occurs over Alaska (positive) and the north Pacific storm track (negative). The transient advection terms in middle latitudes are larger in the upper troposphere and generally positive along the Atlantic storm track. Along the north Pacific storm track (NPST), the transient terms are negative in the mid and lower troposphere over much of the NPST (positive in upper troposphere). The diabatic heating bias has large values in the tropics along the Intertropical Convergence Zone (ICZ) and along the midlatitude storm tracks. During this time of year the ICZ is mainly in the Southern Hemisphere, but CAM3 emphasizes an ICZ-like heating in the northern hemisphere of the Atlantic and Pacific Oceans. CAM3 tends to have a weaker ICZ, especially in the Atlantic. In midlatitudes, we find large bias in heating by precipitation and vertically averaged net radiation over the NAST, Europe, and the Middle East.  相似文献   

13.
Severe flooding occurred in Northeast China (NEC) in summer 2013. Compared with the rainfall climatology of the region, the rainy season began earlier in 2013 and two main rainy periods occurred from late June to early July and from mid July to early August, respectively. During the summer season of 2013, the western Pacific subtropical high (WPSH) was located farther westward, which strengthened the southerly winds on its west side in the lower troposphere. Under this circulation pattern, more water vapor was transported to North China and NEC. Another moisture transport pathway to NEC was traced to the cross-equatorial flow over the Bay of Bengal. In mid–high latitudes in summer 2013, the Northeast Cold Vortex (NECV) was much stronger and remained stable over NEC. Thus, the cold air flow from its northwest side frequently met with the warm and wet air from the south to form stronger moisture convergence at lower levels in the troposphere, resulting in increased precipitation over the region. Correlation analysis indicated that the NECV played a more direct role than the WPSH. Synoptic analyses of the two heaviest flood cases on 2 and 16 July confirmed this conclusion. The four wettest summers in NEC before 2000 were also analyzed and the results were consistent with the conclusion that both the WPSH and the NECV led to the intense rainfall in NEC, but the NECV had a more direct role.  相似文献   

14.
利用常规观测、卫星数据及ERA5再分析数据,从动力和热力角度对引发2020年5月24-25日广西北部暴雨过程的低涡发展维持机制进行了诊断分析。结果表明:低涡在滇黔桂交界一带生成,随后逐渐发展东移,对流云团及降水落区主要分布在低涡东侧及南侧。涡度方程诊断表明,低涡的发展维持主要受涡度平流项和水平散度项影响。水平风场对涡度的输送使得局地涡度减小,而水平风场的辐合效应使得局地涡度增大。将原始风场分解为地转风和非地转风分量后发现,非地转风分量主导了局地涡度的变化,非地转风水平散度项正贡献最大,扭转项次之,两者是造成低涡发展维持的主要原因。在热力作用方面,低涡发展移动过程中对流层中层附近的潜热加热正反馈也有利于低层低涡的发展维持。  相似文献   

15.
The impact of mid- and upper-level dry air, represented by low relative humidity (RH) values, on the genesis of tropical cyclone (TC) Durian (2001) in the South China Sea was investigated by a series of numerical experiments using the Weather Research and Forecasting model. The mid-level RH was lowered in different regions relative to TC Durian (2001)'s genesis location. Results suggest that the location of dry air was important to Durian (2001)'s genesis and intensification. The rapid development of the TC was accompanied by sustained near-saturated mid- and upper-level air, whereas low humidity decelerated its development. Water vapor budget analysis showed that moisture at mid and upper levels was mainly supplied by the vertical convergence of moisture flux and the divergence terms, and consumed by the condensation process. The horizontal convergence of moisture flux term supplied moisture in the air moistening process but consumed moisture in the air drying process. With a dryer mid- and upper-level environment, convective and stratiform precipitation were both inhibited. The upward mass fluxes and the diabatic heating rates associated with these two precipitation types were also suppressed. Generally, convection played the dominant role, since the impact of the stratiform process on vertical mass transportation and diabatic heating was much weaker. The vorticity budget showed that the negative vorticity convergence term, which was closely related to the inhibited convection, caused the vorticity to decrease above the lower troposphere in a dryer environment. The negative vorticity tendency is suggested to slow down the vertical coherence and the development rate of TCs.  相似文献   

16.
Surface rainfall and cloud budgets associated with three heavy rainfall events that occurred over eastern China during the mei-yu season in June 2011 were analyzed using 2D cumulus ensemble model simulation data.Model domain mean rainfall showed three peaks in response to three prescribed ascending motion maxima,primarily through the mean moisture convergence during the torrential rainfall period.Prescribed ascending motion throughout the troposphere produced strong convective rainfall during the first (9 June) and third (17-18 June) rainfall events,whereas strong prescribed ascending motion in the mid and upper troposphere and weak subsidence near the surface generated equally important stratiform and convective rainfall during the second rainfall event (14 June).The analysis of surface rainfall budgets reveals that convective rainfall was associated with atmospheric drying during the first event and moisture convergence during the third event.Both stratiform and convective rainfall responded primarily to moisture convergence during the second event.An analysis of grid data shows that the first and third mean rainfall maxima had smaller horizontal scales of the precipitation system than the second.  相似文献   

17.
东亚寒潮高压的位涡诊断研究   总被引:5,自引:2,他引:5       下载免费PDF全文
用位势涡度方程对1980年1月26—30日东亚寒潮高压的演变做了诊断研究,表明高压中心地区低层是低值位涡区,位涡值随高压增强(减弱)而变小(变大);随着高压的发展加强,位涡最小值由对流层中层降到近地面层,随着高压的减弱,最小值中心又上升;对流层高层的位涡值随着地面高压的增强而加大,反映高空冷槽、地面高压同时在发展。位涡收支方程各项对高压发展、减弱有着不同的作用。作用最大的是地转风水平平流项和地转偏差风的散度项,其次是地转偏差风的平流项和辐射项,扭转项和热成风偏差项均甚小,可忽略不计。  相似文献   

18.
冬季华南准静止锋的结构和类型特征研究   总被引:4,自引:2,他引:2  
查书瑶  伊兰  赵平 《大气科学》2015,39(3):513-525
利用12年(2000~2011年)逐日的FNL(Final Operational Global Analysis)分析资料和逐日的中国站点降水资料, 定义了一个冬季华南准静止锋强度指数, 并根据该指数挑选出强准静止锋事件, 研究了强事件的结构特征、环流分型及其与降水的关系。结果表明:冬季强准静止锋事件多发于1、2月, 其发生频次在近12年里呈现明显上升趋势。强准静止锋锋区表现为等假相当位温线、等温线的密集带, 但是锋区湿度变化不明显, 并有明显逆温, 锋区由南北风辐合构成, 上升气流主要位于锋区上部, 纬向有两个次级环流与锋区相对应, 伴随正相对涡度和水汽通量辐合。根据850 hPa风场在锋区的辐合情况, 强准静止锋可分为北风辐合型、南北风辐合型、南风辐合型三种类型。在这三种类型中, 北风辐合型对应的北方冷空气最强, 华南降水最少;南风辐合型对应的南支槽最活跃, 华南降水最多;南北风辐合型介于两者之间。冬季华南准静止锋与冬季华南降水有一定相关, 在强准静止锋的背景下, 降水偏多时, 锋区低层的水汽通量辐合和上升运动偏强, 华南处于偏强南支槽前。  相似文献   

19.
屠妮妮  李跃清 《干旱气象》2014,32(6):962-971
利用NCEP再分析格点资料、常规观测资料、自动站降水资料、0.1°×0.1°的FY-2E云顶亮温资料,对2013年6月29日至7月1日发生在四川东部的大暴雨过程进行分析,结合涡度收支方程重点分析了引发这次大暴雨的西南涡结构。结果表明:在西南低涡发生发展过程中,对低涡发展起直接作用的是水平辐合辐散项和水平平流项,低涡形成前水平辐合辐散项起主要贡献,低涡形成后水平平流项贡献增大,并在对流层中低层以正贡献为主,扭转项贡献最小,而垂直输送项在低涡形成前期以正贡献为主,低涡减弱阶段以负贡献为主;在西南低涡形成前期,对流层高层有位涡大值区向下传输至中层,中高层正位涡叠加在低层负位涡之上,有利于低层低涡的发展及不稳定能量的存储与释放,是低涡维持发展的重要因素。  相似文献   

20.
一次引发暴雨的东北低涡的涡度和水汽收支分析   总被引:11,自引:0,他引:11  
对2005年7月25~29日引发较大范围持续性暴雨的东北低涡的结构、涡度和水汽收支进行了分析研究,结果表明:1)东北低涡是一个较深厚的冷性涡旋.初期,气旋性涡度出现在对流层中层,然后向中低层及高层伸展.而低涡加强阶段,气旋性涡度在对流层高层增加得最快,并逐渐向中低层传播,诱发地面气旋的发展;由于高低空锋生的相互作用,在低涡南部形成了深厚的近乎垂直的低层略前倾的"弓形"锋区.2)对涡度收支的计算表明,水平涡度平流项和水平辐散项对低涡的发展、加强起到最主要的作用.但在不同阶段,这两项的作用和大小各不相同.3) 对流层高层位涡大值区在低涡东部向下传播,有利于低涡的发展加强,与低涡暴雨的落区位置较为接近.此外对卫星云顶亮度温度(TBB)的分析,发现低涡暴雨典型的涡旋云带中对流活动旺盛的地区与局地暴雨的位置对应.4) 低涡暴雨的水汽初期主要来自北部,随着低纬地区西南季风的增强,沿副高西侧从低纬到中高纬建立起一条较强的水汽输送带,东北地区水汽收支以南北向的辐合为主.5)将2005年和1998年夏季6~8月的东北低涡暴雨个例的天气形势配置进行逐月比较,发现持续的较大范围的低涡暴雨过程与亚洲中高纬的阻塞形势、低涡的维持、西太平洋副热带高压的位置及夏季风和低纬系统的水汽输送有密切的关系.  相似文献   

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