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1.
By use of a three-dimensional compressible non-hydrostatic convective cloud model with detailed microphysics featuring spectral bins of cloud condensation nuclei (CCN), liquid droplets, ice crystals, snow and graupel particles, the spatial and temporal distributions of hydrometeors in a supercell observed by the (Severe Thunderstorm Electrification and Precipitation Study) STEPS triple-radar network are simulated and analyzed. The bin model is also employed to study the effect of CCN concentration on the evolution characteristics of the supercell. It is found that the CCN concentration not only affects the concentration and spectral distribution of water droplets, but also influences the characteristics of ice crystals and graupel particles. With a larger number of CCN, more water droplets and ice crystals are produced and the growth of graupel is restrained. With a small quantity of CCN the production of large size water droplets are promoted by initially small concentrations of water droplets and ice crystals, leading to earlier formation of small size graupel and restraining the recycling growth of graupel, and thus inhibiting the formation of large size graupel (or small size hail). It can be concluded that both the macroscopic airflow and microphysical processes influence the formation and growth of large size graupel (or small size hail). In regions with heavy pollution, a high concentration of CCN may restrain the formation of graupel and hail, and in extremely clean regions, excessively low concentrations of CCN may also limit the formation of large size graupel (hail).  相似文献   

2.
针对现行冰雹云参数化模式中假定冰雹谱服从特定的负指数分布,冰雹增长率依赖其加权平均末速度以及粒子间的数浓度转换不守衡等局限性,作者建立和发展了一个包括云滴、云冰、雨滴、雪团,霰和雹的云中主要水成物场及凝结、撞冻等37种主要微物理过程,可用于预测和研究三维强冰雹云降雹过程的冰雹分档模式,模式能够提供在雹云参数化模式中无法提供的关于冰雹增长与分布的信息。研究共分三部分:模式的建立及冰雹的循环增长机制;冰雹的分档分布特征;冰雹产生与增长的微物理过程。第一部分,通过建立模式及模拟一个多单体风暴个例,对多单体中冰雹的增长机制进行了数值模拟研究。  相似文献   

3.
利用WRF模式6种适合高分辨率且包含多种固态水成物粒子的云微物理参数化方案,分别对2012年5月16日江苏北部一次飑线过程进行数值试验,结果表明:LIN方案模拟的飑线回波反射率、强降水TS评分、结构和强度等均要优于其余5种微物理参数化方案。分析不同参数化试验结果中不同水成物粒子占比随时间的变化特征,并针对LIN方案采取敏感性试验和水成物转化微物理过程分析指出,在此次飑线过程中的各水成物粒子中,霰/雹粒子占比最大,是降水过程中最重要的粒子;地面降水直接来源是雨水,雨水主要来源于中层霰/雹粒子的融化,小部分来源于云水的自动转化;中层霰/雹粒子最主要来源是通过雨霰转化过程中的雨水撞冻冰雹微物理过程,其次是霰撞冻云水的微物理过程,而冰相物质雪晶和云冰的碰并、撞冻和自动转化过程微乎其微。  相似文献   

4.
采用WRF模式与包含了云凝结核(Cloud Condensation Nuclei,CCN)浓度和霰雹密度预报的NSSL(National Severe Storm Laboratory,国家强风暴实验室)微物理方案,模拟不同CCN初始浓度条件下南京地区的一次冰雹云过程,分析不同CCN初始浓度影响下冰雹云过程的宏微观演变特征,以及对流发展不同阶段的水凝物粒子及流场、温度场的垂直分布特征。研究发现:1)较大的CCN初始浓度虽然抑制了前期对流降水,但对后期对流降水的产生有促进作用;2)CCN初始浓度的增加使得模拟雷达回波的强回波区域(大于40 dBz)缩小,中等强度区域(小于40 dBz)扩张。3)CCN初始浓度增大不利于对流发展初期云雨自动转化过程的发生,但是促进了冰晶与雪的产生,使得冰雹含量峰值出现的时间推迟。4)CCN浓度增大抑制了雨水产生,间接使得霰粒子更倾向于干增长,平均密度更小;5)较大的CCN浓度促使冰雹云单体的发展时间增长。  相似文献   

5.
冰雹形成的微物理机理是人工防雹的重要科学依据,但对我国西南地区冰雹形成的微物理机理研究很少。利用中国科学院大气物理研究所三维冰雹分档云模式对云南2016年7月11日一次冰雹云过程进行了数值模拟研究,揭示了冰雹形成的微物理机理。此次冰雹云生成发展快,强度大,是西南山区典型夏季冰雹云。数值模拟的降水、降雹和回波强度等物理量与对应的观测量基本一致。模拟的冰雹云的最大上升气流速度达到28.7 m s?1。通过对冰雹形成的微物理过程分析研究表明,雹/霰胚的主要生成来源是通过过冷雨滴的概率冻结产生的冻滴,占95%,而冰晶碰冻雨滴产生的雹/霰胚仅占5%,这与国外和我国其他地区雹/霰胚产生的来源和冻滴所占比例有明显差别;形成的雹/霰胚直径多数集中在0.3 mm至3.0 mm范围,雹/霰胚主要通过对过冷云水的碰并过程实现增长,直径小于0.3 mm的雹/霰胚较难增长;大雨滴冻结成较大直径的雹胚,可促成短时间内形成冰雹;在雹云发展过程中存在短时的过冷雨水累积带,但过冷雨水累积带对雹/霰胚的增长贡献不大。  相似文献   

6.
In order to study mechanisms of hailstone formation and hail suppression with seeding and toobtain optimum seeding technique for hail cloud,a 3-D compressive numerical seeding model forhail cloud is developed.The water substance in hail cloud is divided into 8 categories,i.e.,watervapor,cloud droplet,raindrop,ice crystal,snow.graupel,frozen drop and hail,and the detailedmicrophysical processes are described in a spectrum with two variable parameters and morereasonable particle number/size distributions.Then,the model is able to predict concentration andwater content of various particles.Especially.it can calculate the number of hailstones whosecores are graupel or frozen drop and apply to study mechanism of hailstone formation.Additionally,a conservative equation of AgI as seeding or glacigenous agent is found andnucleation by condensation of artificial nucleus,and nucleation by freezing of cloud droplet or raindrop which contact with AgI particle are considered.The dynamic energy flux of hail shooting onground is used to verify seeding effect.Therefore the model is also used to study mechanism of hailsuppression with seeding and the seeding technique,  相似文献   

7.
In order to study mechanisms of hailstone formation and hail suppression with seeding and to obtain optimum seeding technique for hail cloud,a 3-D compressive numerical seeding model for hail cloud is developed.The water substance in hail cloud is divided into 8 categories,i.e.,water vapor,cloud droplet,raindrop,ice crystal,snow.graupel,frozen drop and hail,and the detailed microphysical processes are described in a spectrum with two variable parameters and more reasonable particle number/size distributions.Then,the model is able to predict concentration and water content of various particles.Especially.it can calculate the number of hailstones whose cores are graupel or frozen drop and apply to study mechanism of hailstone formation.Additionally,a conservative equation of AgI as seeding or glacigenous agent is found and nucleation by condensation of artificial nucleus,and nucleation by freezing of cloud droplet or rain drop which contact with AgI particle are considered.The dynamic energy flux of hail shooting on ground is used to verify seeding effect.Therefore the model is also used to study mechanism of hail suppression with seeding and the seeding technique.  相似文献   

8.
A comprehensive parameterized model of microphysical processes in cumulonimbus clouds is presented.The transformation rates of the water contents and number concentrations of the cloud droplets,rain drops,ice crystals,graupels and hails are deduced on theoretical and experimental results for 26 kinds of micro-physical processes,which include condensation,deposition,evaporation,collection,ice nucleation,ice mul-tiplication,melting,freezing,and autoconversions of cloud to rain,ice to graupel and graupel to hail.  相似文献   

9.
Numerical simulations are carried out to investigate the effect of cloud condensation nuclei(CCN) concentrations on microphysical processes and precipitation characteristics of hailstorms. Two hailstorm cases are simulated, a spring case and a summer case, in a semiarid region of northern China, with the Regional Atmospheric Modeling System. The results are used to investigate the differences and similarities of the CCN effects between spring and summer hailstorms. The similarities are:(1) The total hydrometeor mixing ratio decreases, while the total ice-phase mixing ratio enhances, with increasing CCN concentration;(2) Enhancement of the CCN concentration results in the production of a greater amount of small-sized hydrometeor particles, but a lessening of large-sized hydrometeor particles;(3) As the CCN concentration increases, the supercooled cloud water and rainwater make a lesser contribution to hail, while the ice-phase hydrometeors take on active roles in the growth of hail;(4) When the CCN concentration increases, the amount of total precipitation lessens,while the role played by liquid-phase rainfall in the amount of total precipitation reduces, relatively, compared to that of icephase precipitation. The differences between the two storms include:(1) An increase in the CCN concentration tends to reduce pristine ice mixing ratios in the spring case but enhance them in the summer case;(2) Ice-phase hydrometeor particles contribute more to hail growth in the spring case, while liquid water contributes more in the summer case;(3) An increase in the CCN concentration has different effects on surface hail precipitation in different seasons.  相似文献   

10.
三维冰雹云催化数值模式   总被引:89,自引:10,他引:79  
洪延超 《气象学报》1998,56(6):641-653
为了研究冰雹形成机制、催化防雹机制和通过数值试验获得冰雹云优化催化技术,在以前工作的基础上,发展了一个3维弹性冰雹云催化数值模式。模式考虑了冰雹云中详细的微物理过程,各种粒子采用双变参数谱,将云中水物质分成水汽、云水、雨水、冰晶、雪、霰、冻滴和雹8类,可以预报粒子的比浓度和比含量,尤其可以计算以霰或冻滴为胚胎的雹块的数量,非常适合研究冰雹的形成机制。此外,建立了催化剂AgI的守恒方程,考虑了人工冰核的凝华核化及与云、雨滴接触的冻结核化过程,并用地面降雹动能通量检验催化防雹效果,因此,也可以研究催化防雹机制和对雹云的催化技术。  相似文献   

11.
The effects of the initial cloud condensation nuclei(CCN) concentrations(100–3000 mg~(-1)) on hail properties were investigated in an idealized non-severe hail storm experiment using the Weather Research and Forecasting(WRF) model, with the National Severe Storms Laboratory 2-moment microphysics scheme. The initial CCN concentration(CCNC) had obvious non-monotonic effects on the mixing ratio, number concentrations, and radius of hail, both in clouds and at the surface, with a CCNC threshold between 300 and 500 mg~(-1). An increasing CCNC is conducive(suppressive) to the amount of surface hail precipitation below(above) the CCNC threshold. The non-monotonic effects were due to both the thermodynamics and microphysics. Below the CCNC threshold, the mixing ratios of cloud droplets and ice crystals increased dramatically with the increasing CCNC, resulting in more latent heat released from condensation and frozen between 4 and 8 km and intensified updraft volume. The extent of the riming process, which is the primary process for hail production, increased dramatically. Above the CCNC threshold, the mixing ratio of cloud droplets and ice crystals increased continuously, but the maximum updraft volume was weakened because of reduced frozen latent heating at low level. The smaller ice crystals reduced the formation of hail and smaller clouds, with decreased rain water reducing riming efficiency so that graupel and hail also decreased with increasing CCNC, which is unfavorable for hail growth.  相似文献   

12.
徐戈  孙继明  牛生杰  周碧  王永庆 《大气科学》2016,40(6):1297-1319
霰和冻滴是深对流降水的主要来源。由于二者密度差异造成的不同下落末速度必然会导致云微物理过程的变化以及降水时空分布的改变。我们在以色列特拉维夫大学二维轴对称对流云全分档模式的基础上,将水成物粒子从34档增加到40档,修改了霰和雪的密度,加入冻滴分档处理的微物理过程,发展了一个包括液滴、冰晶、雪、霰和冻滴更为详细的云微物理分档模式。利用改进后的模式模拟了一次理想的强对流天气过程,分析了改进模式与原模式模拟的云微物理量场以及水成物粒子的时空分布特征,模拟结果表明:(1)由于冻滴的产生,较大的下落末速度导致在云内-3℃至-8℃较早地出现了冻滴,并造成了大量的冰晶繁生。(2)冻滴形成前期,液态水中心区域位于垂直上升速度大值中心上方,形成液态水累积区;冻滴形成期,液态水累积区位于0℃层以上,雨滴冻结生成冻滴,霰与半径大于100 μm的液滴碰并生成冻滴;冻滴增长期,在垂直上升气流的支撑下,冻滴碰并过冷水增长,导致冻滴含量增大,液态水含量减小。因此,改进模式能较好的模拟冻滴的形成过程,可以将该分档处理的微物理方案耦合到三维WRF(Weather Research and Forecasting model)模式中,更深入地研究强雷暴风切变在冰雹生成过程中的作用。  相似文献   

13.
14.
Summary A moderate snowfall event in North China is simulated using the high-resolution mesoscale model MM5. A fourfold-nest experiment, with a minimum horizontal grid size of 2 km, is run. In order to study the cloud microphysics processes associated with the snowfall, two experiments were conducted in two inner domains, one using the Goddard scheme (Goddard experiment), and the other using the Reisner scheme (Reisner experiment). The analysis focused on the comparison of the cloud microphysics processes which occurred in the experiments. It is shown that there is no implicit precipitation of cumulus parameterization in the domain of grid scale 18 km. The snowfall distribution patterns in the experiments are slightly different, but the microphysical characteristics and processes may have considerable differences between the two experiments: (1) The water substances in the cloud have cloud water, cloud ice and snow, but no rainwater and graupel in the Goddard experiment. However, the water substances in the cloud have cloud ice, snow, and graupel, but no cloud water and rainwater in the Reisner experiment. (2) The cloud ice mixing ratios in the Goddard experiment are larger than those in the Reisner experiment. (3) In the Goddard experiment, the dominant cloud microphysical processes include the growth of cloud water by the condensation of supersaturated vapor, the depositional growth of cloud ice, the initiation of cloud ice, the accretion of cloud ice by snow, the accretion of cloud water by snow, the deposition growth of snow and the Bergeron process of cloud ice. In the Reisner experiment, the dominant cloud microphysical processes include the depositional growth of cloud ice, the conversion of cloud ice to snow, the deposition of snow, and the deposition growth of graupel. (4) There is only snowfall in the Goddard experiment. Meanwhile, there is ice fall, snow fall, and graupel in the Reisner experiment. But the ice fall and graupel in the Reisner experiment is very slight and can be ignored.  相似文献   

15.
冰雹云中微物理过程研究   总被引:26,自引:7,他引:19  
利用三维冰雹云模式通过实例模拟研究了云中冰相物理过程,结果表明,云中粒子产生有一源地,在雹云发展阶段早期,霰、冻滴,雹和雨水的极大产生率都位于6.0 km高度附近,这里是雹胚及冰雹形成的源区,从"利益竞争"概念出发,人工防雹的催化部位应在此高度附近;粒子产生高度与其源项发生高度及主要增长方式有关,粒子产生和增长过程在云的发展不同阶段也是不同的.在冰雹形成过程中,作为雹胚的霰和冻滴主要通过撞冻过冷水增长.撞冻增长占增长量的大部分,云中存在丰富的过冷水对冰雹胚胎和冰雹形成、增长都是十分重要的.在"冰晶-过冷水-雹胚-冰雹"这一链环中,没有过冷水参与很难形成强烈降雹.通过两例雹云的对比研究,发现若雹云云底温度降低和湿度增大,由于霰撞冻过冷水尤其是撞冻过冷云水增长量大幅度提高,霰的尺度加大,提高向冰雹的转化率,使霰胚数量大大增加.  相似文献   

16.
应用MM5中尺度模式,选用4种不同云微物理方案(Dudhia简单冰相方案、Reisner混合相方案、Reisner2霰方案和Schultz微物理方案),对2002年7月12-13日祁连山区降水过程进行了数值模拟试验。模拟结果的对比分析表明,不同云微物理方案在祁连山区降水的模拟中对降水落区的模拟均偏南;除Reisner2霰方案外,其他3种方案对降水中心落点的模拟影响不大,降水中心强度对云微物理方案不敏感;显式降水和参数化降水对云微物理方案有不同程度的依赖性;云微物理过程通过影响动力条件发生发展的时间和强度,来影响强降水发生的时间和强度。通过各云微物理参数的分析发现,各物理过程中微物理参数参与降水的过程不同:对Dudhia简单冰相方案来说,雨水和云水是形成降水的主要过程;Reisner混合相方案中降水的形成主要是由于雨水、云水、雪和霰的碰并过程,冰晶的碰并相对较弱;在Reisner2霰方案中,雨水、云水、冰晶、雪和霰均参与碰并碰冻过程;Schultz微物理方案中冰晶、雪和霰的碰并过程更为重要。  相似文献   

17.
陈宝君  肖辉 《大气科学》2007,31(2):273-290
利用中国科学院大气物理研究所开发的三维全弹性冰雹云模式,对美国对流降水协作试验(CCOPE)期间观测的1981年8月1日雹云进行模拟,讨论在过冷雨水低含量条件下冰雹形成和增长机制及其碘化银催化效果。结果表明:(1) 自然云的模拟与观测事实一致,如最大上升气流速度、云顶高度、流场结构以及雹胚组成等。(2) 雹胚以霰为主,霰主要来自冰雪晶与过冷小水滴的碰冻,其次来自雪的积聚转化;霰、冻滴和冰雹在形成后主要靠碰并过冷云水增长。(3)人工催化试验表明,碘化银主要以凝华核(包括凝结-冻结)的作用产生大量的人工冰晶,加速了过冷水向冰晶的转化,过冷云水因而大量减少;催化后霰和冻滴的数浓度增大,对过冷云水的竞争增强,其平均尺度减小导致转化成雹的数量减少;冰雹碰冻过冷云水的增长在催化后也被削弱,导致冰雹总质量进一步减少。此外,催化后降雨量也显著减少。  相似文献   

18.
一次降雹过程的AgI系列催化模拟研究   总被引:1,自引:1,他引:0       下载免费PDF全文
云数值模拟是研究降雹过程和人工防雹试验的重要手段。利用三维冰雹云AgI催化模式,对北京1996年6月10日的一次降雹过程进行AgI不同催化高度、催化剂量和催化时间的系列催化模拟试验,并优选催化方案,为外场防雹设计和作业提供依据。在催化系列模拟中发现,不同催化高度的催化剂均在上升到-5℃高度后开始核化。在2.1~4.9 km高度范围内催化,AgI成核率比较高,防雹效果较好。核化的人工冰晶有效弥补了该高度上自然冰晶的不足。小剂量催化,可在减雹的同时增加部分降雨量,而大剂量催化,在减雹的同时会减少降雨。在催化时间、剂量和高度的系列催化试验中得出,采用在模拟的第15分钟在5 km高度附近播撒AgI,连续4次以5×106 kg-1的催化剂量进行催化,催化效果较好,可减少降雹量约60%,同时可避免降雨量的大幅减少。  相似文献   

19.
黄丽萍  陈德辉  马明 《气象学报》2012,70(2):291-301
为了探索雷电天气的数值预报新方法,在高分辨GRAPES_Meso中尺度预报模式中添加了各种水成物电荷密度预报方程组,同时从传统基于云模式的三维雷电模式中剥离出起电过程和放电过程参数化方案,作为中尺度模式的一种物理过程参数化方案嵌套进中尺度模式,使得整套中尺度模式包含了大气动力、雷电过程及各种物理过程,建立了大气动力-物理过程和雷电过程一体化的数值预报模式GRAPES_LM,建立的GRAPES_LM模式包含了多种复杂的微物理过程参数化方案,其中,包括中国气象科学研究院开发研制的双参数对流云参数化方案;包含了霰/雹与冰晶/雪晶碰撞回弹的非感应起电、霰/雹与云滴碰撞的感应起电及霰碰撞大云滴造成冰晶繁生的次生冰晶起电3种起电参数化方案以及最新的随机双向放电参数化。并利用美国CCOPE观测试验中的个例观测资料(1981年7月19日),进行了初步应用模拟试验,对模式的雷电数值预报的可行性进行了验证分析。结果表明,高分辨率GRAPES_LM模式对1981年7月19日的雷电过程个例做出了成功的模拟预报,较好地给出了雷暴云的动力、微物理和电过程的时空演变,雷电天气数值预报新方法的可行性得到了初步验证。  相似文献   

20.
张小娟  陶玥  刘国强  彭宇翔 《气象》2019,45(3):415-425
利用中尺度数值模式WRF(Weather Research and Forecasting)的数值模拟,结合NECP/FNL再分析资料、地面、探空、多普勒雷达基数据和卫星产品等观测资料,综合分析了2014年3月30日发生在贵州省西南部的一次冰雹天气过程。研究了有利于冰雹发生的环流特征和环境条件,分析了冰雹云系的发展演变特征、云微物理结构特征,初步分析了冰雹形成的云物理机制。结果表明:此次冰雹天气是典型的低压辐合线型降雹类型,地面降雹位置位于700 hPa切变线和近地面辐合线附近及南侧;发生此次冰雹过程的对流云系经历了对流云系的初生阶段、合并加强阶段、成熟降雹阶段和东移阶段。贵州地区上空对流云系的微物理结构具有混合相云特征,高层为冰晶、雪,中层为云水、霰,低层为雨水、冰雹。霰和云水是形成雨水和冰雹的主要来源,霰撞冻过冷云水和霰的自动转化是冰雹形成的主要微物理机制。  相似文献   

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