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1.
云化学模式及其若干研究进展   总被引:1,自引:0,他引:1  
刘小红 《气象》1992,18(2):3-10
本文从云的微物理过程、云中化学反应、云水、雨水对污染气体和气溶胶的清除过程,云化学模式等方面,总结介绍了近几年来云化学模式的若干研究进展。  相似文献   

2.
河南省2002年秋季一次层状云降水过程的观测研究   总被引:3,自引:0,他引:3  
在涡旋云系和低槽切变云系的先后影响下,2002年10月16-20日河南省产生了主要由层状云形成的小到中雨天气。中低层对流不稳定层结和偏东偏南暖湿气流为降水提供了有利条件。较厚的云体多为混合相结构,雷达回波普遍有明显亮带,过冷云区冰相粒子含量较过冷水高,暖云区云水含量偏低,雨水浓度基本随雨滴直径指数递减,较大雨滴对雨强的贡献大。推测总体降水机制可能为,冷云过程强于暖云过程,冰粒子凝华增长是其主要增长方式,冰粒子融化对地面降水有较大贡献。云系宏微观结构和降水特征都表明在层状云系不同部位存在不均匀性。  相似文献   

3.
Partition, not kinetics, ultimately determines the concentration of highly soluble gases in cloud droplets. Partition equations are formulated and applied to idealized air-mass thunderclouds and precipitating stratus. Contribution to aqueous concentrations from sub-cloud scavenging of highly soluble gases is estimated at between 10 and 20% under relatively unpolluted conditions. Data indicate that evaporation can produce enhancements in concentration of as much as a factor of 3. The calculations give large-scale mean coefficients of wet removal of highly soluble gases of about 2.8×10-6 s-1 (4-day residence time) for air-mass thunderclouds and precipitating stratus. Removal is so effective that the mean scale heights of these gases should be decreased to 2 km or less. The criterion of high solubility in this paper is that K H (Henry's Law coefficient) > 105 mol l-1 atm-1. Gases that are effectively highly soluble include HCl, HNO3, H2SO4, H2O2, NH3 in acid droplets, SO2 in oxidizing droplets (and probably some light amines and sulfonic acids), but not SO2 in the absence of oxidants, nor HCHO. A variation of removal coefficient and scale height with solubility is presented. A comparison of atmospheric NH3 concentrations deduced from rain NH4 + and measured directly gives reasonable agreement.  相似文献   

4.
本文利用机载云粒子探测设备对2014年11月6日至12月25日期间在江西地区探测获得的7次暖云飞行个例资料,详细分析降水云和非降水云的微物理结构特征。云雨自动转化阈值函数(T)是描述云内碰并强度的重要微物理参量。我们发现T值在云内分布呈现云底较小,随着云内高度的增加T值逐渐增大,并且在云中部和上部达到最大值;研究还发现降水云的T值在0.6以上的频率远大于非降水云,表明降水云中的碰并过程更强,云滴更易通过凝结和碰并过程形成雨滴,符合暖云降水机制。降水云中云滴谱相对离散度(ε)和云滴数浓度(Nc)的负相关程度较非降水云更为显著,随着T的增大,二者的负相关程度增强;相比于云滴平均半径(ra)的变化,云滴谱标准差(σ)的变化主导ε–Nc负相关程度的增强。  相似文献   

5.
华南冷锋云系的中尺度和微物理特征模拟分析   总被引:16,自引:4,他引:12  
史月琴  楼小凤  邓雪娇 《大气科学》2008,32(5):1019-1036
利用中国气象科学研究院(CAMS)中尺度云分辨模式,结合实测地面雨量、卫星和雷达资料,对发生在2004年3月31日~4月1日的华南春季冷锋降水过程进行模拟分析。模拟云带的出现时间、位置、形状与走向以及随时间的演变均与卫星观测一致。模拟的雷达回波分布同实测一致,回波主要出现在地面锋线以及锋后冷空气一侧,呈西南-东北带状分布,锋面云系的不同部位回波单体的差异很大。模拟的主要降水时段内的地面雨量分布范围以及大小同实测接近,中尺度雨带呈西南-东北带状结构,随着冷锋的移动逐渐向东南方向移动。在中尺度雨带上有4个生命史超过3小时的强降水中心,强降水中心基本都是向东略偏南的方向移动,与回波单体的移动方向一致。锋面云系的垂直运动深厚,且基本与云区对应,云系产生在低层辐合、正涡度,高层辐散和高相当位温的区域。地面锋线附近的上升速度大,云水含量高,冰相粒子的淞附和雨滴碰并云滴是云中的主要微物理过程,暖雨过程和冷雨过程都重要;而在高空锋区宽雨带部分低层为下沉气流,上升气流只出现在高层,主要是过冷云水、霰和雪晶组成的混合云,雪晶是霰增长的主要源项,降水主要由霰的融化产生,冷云降水过程比较重要。  相似文献   

6.
崔云扬  周毓荃  蔡淼 《大气科学》2019,43(3):618-633
本文利用河北邢台测站Ka波段微雨雷达(MRR)观测到的一次冷锋云系降水过程分析降水的垂直分布及演变特征。将MRR观测结果与天气雷达、地面雨滴谱仪、雨量计观测结果进行对比以检验MRR数据的可靠性。同时将MRR与雨滴谱仪和激光云高仪结合,研究了不同相对湿度阶段特征量、雨滴谱的平均垂直分布特征和降水特征量随时间、高度的演变特征。结果表明:MRR与雨量计及雨滴谱仪累计雨量结果较为接近,趋势一致。MRR 200 m雨强值与地面雨滴谱仪雨强值偏差最小,平均偏差为0.05 mm h?1,相关系数为0.93。相比雨滴谱仪,MRR观测到的小滴数浓度出现高估,大滴数浓度出现低估,中滴数浓度较为一致。降水在云内和云外受不同微物理过程影响,垂直变化特征不同。降水初期平均反射率和雨强在云底以下明显减小,小滴和中滴平均数浓度明显减小,蒸发作用影响较强。而在其余时间段在云内随高度降低平均反射率和雨强略有增加,小滴平均数浓度变化较小,中滴大滴平均数浓度增加,表明云内有云滴与雨滴间的碰并发生。而在云外低层,随高度降低平均有效直径明显增加,平均雨滴总数浓度明显减小,小滴平均数浓度显著减小,大滴平均数浓度显著增加,表明在云外低层雨滴间的碰并作用较强。  相似文献   

7.
周志敏  崔春光  胡扬  康兆萍 《大气科学》2021,45(6):1292-1312
梅雨锋暴雨中的云微物理过程对降水的演变有着重要影响。本文通过WRF模式(3.4.1版本),针对2018年6月29~30日一次梅雨锋背景下的暴雨过程进行数值模拟,分别采用了Morrison、Thompson和MY云微物理参数化方案进行对比分析,结果发现:(1)三个方案模拟的背景场在天气尺度上,都与ERA5再分析资料一致,能够模拟出有利于强降水发生的环流场。云微物理过程对梅雨期暴雨的局地环流有着显著影响,不同方案存在明显差异,本次过程中,Thompson方案模拟出更强的局地环流系统变率和上升气流。三个方案的模拟降水均有所夸大,小时降水率始终大于观测值。冰相粒子融化或雨滴搜集云滴的高估可能是造成降水模拟值偏强的重要原因之一,总体来看,Morrison方案的模拟效果相对最优。(2)冰相粒子融化、雨滴搜集云滴是雨滴增长的关键源项,蒸发则是其最重要的汇项。总的来说,雨滴对云滴的搜集量大于冰相粒子融化。但上述过程在不同方案中存在空间上的差异,从而使得模拟降水的空间分布存在差异。(3)Thompson方案中,冰相粒子融化量最大,雨滴蒸发项显著大于其它两个方案,在底层表现得最为明显。同时,该方案水汽凝结效应最强,使得雨滴搜集更多云滴。该方案模拟的雨滴最多,降水最强。该方案中凝华的主要产物为雪,且其在与过冷水碰并增长过程中占主导地位,故模拟的雪最多。(4)Morrison方案中,水汽主要凝华为雪和少量霰(冰晶忽略不计);Thompson方案中水汽基本凝华为雪,其它冰相粒子极少;MY方案中,水汽主要凝华为雪和冰晶,冰晶总量略少于雪,但显著大于其它方案。(5)云滴在凇附过程中的总体贡献大于雨滴。Morrison和MY方案中,霰粒子搜集云滴增长的量均最大。Morrison方案中,其它凇附过程不同程度发挥作用,而MY方案中,其它凇附过程几乎可忽略不计。并且,霰粒子搜集云滴的增长量大于凝华过程产生的雪粒子总量。贝吉龙及凇附效应的差异,是不同方案中冰相粒子分布差异的关键原因之一。  相似文献   

8.
A heavy rainfall event in south China was simulated by the Weather Research and Forecasting (WRF) model with three microphysics schemes, including the Morrison scheme, Thompson scheme, and Milbrandt and Yau scheme (MY), which aim to evaluate the capability to reproduce the precipitation and radar echo reflectivity features, and to evaluate evaluate their differences in microphysics and the associated thermodynamical and dynamical feedback. Results show that all simulations reproduce the main features crucial for rainfall formation. Compared with the observation, the MY scheme performed better than the other two schemes in terms of intensity and spatial distribution of rainfall. Due to abundant water vapor, the accretion of cloud droplets by raindrops was the dominant process in the growth of raindrops while the contribution of melting was a secondary effect. Riming processes, in which frozen hydrometeors collect cloud droplets mainly, contributed more to the growth of frozen hydrometeors than the Bergeron process. Extremely abundant snow and ice were produced in the Thompson and MY schemes respectively by a deposition process. The MY scheme has the highest condensation and evaporation, but the lowest deposition. As a result, in the MY scheme, the enhanced vertical gradient of condensation heating and evaporation cooling at low levels produces strong positive and weak negative potential vorticity in Guangdong, and may favor the formation of the enhanced rainfall center over there.  相似文献   

9.
It is well known that the emissions of hot gases from various power stations and other industrial sources in the regional atmosphere cause decrease in rainfall around these complexes. To overcome this shortage, one method is to introduce artificially conducive aerosol particles in the atmosphere using aeroplane to increase rainfall. To prove the feasibility of this idea, in this paper, a nonlinear mathematical model is proposed involving five dependent variables, namely, the volume density of water vapour, number densities of cloud droplets and raindrops, and the concentrations of small and large size conducive aerosol particles. It is assumed that two types of aerosol particles are introduced in the regional atmosphere, one of them is of small size CCN type which is conducive to increase cloud droplets from vapour phase, while the other is of large size and is conducive to transform the cloud droplets to raindrops. The model is analyzed using stability theory of differential equations and computer simulation. The model analysis shows that due to the introduction of conducive aerosol particles in the regional atmosphere, the rainfall increases as compared to the case when no aerosols are introduced in the atmosphere of the region under consideration. The computer simulation confirms the analytical results.  相似文献   

10.
During the pre-summer rainy season, heavy rainfall occurs frequently in South China. Based on polarimetric radar observations, the microphysical characteristics and processes of convective features associated with extreme rainfall rates(ERCFs) are examined. In the regions with high ERCF occurrence frequency, sub-regional differences are found in the lightning flash rate(LFR) distributions. In the region with higher LFRs, the ERCFs have larger volumes of high reflectivity factor above the freezin...  相似文献   

11.
李如祥  黄世鸿 《气象科学》1996,16(4):362-367
本文利用云内成雨清除模式和云下雨水冲刷清除模式讨论了云内和云下致酸物质的清除、酸化过程。计算结果表明,雨不酸化主要是在云内形成、而云底之下雨水对清除酸化过程是不重要的。而对流引起的上升气流和下沉气流对污染层内致酸物质的浓度变化有较大影响。  相似文献   

12.
High-resolution numerical simulation data of a rainstorm triggering debris flow in Sichuan Province of China simulated by the Weather Research and Forecasting (WRF) Model were used to study the dominant cloud microphysical processes of the torrential rainfall. The results showed that: (1) In the strong precipitation period, particle sizes of all hydrometeors increased, and mean-mass diameters of graupel increased the most significantly, as compared with those in the weak precipitation period; (2) The terminal velocity of raindrops was the strongest among all hydrometeors, followed by graupel’s, which was much smaller than that of raindrops. Differences between various hydrometeors’ terminal velocities in the strong precipitation period were larger than those in the weak precipitation period, which favored relative motion, collection interaction and transformation between the particles. Absolute terminal velocity values of raindrops and graupel were significantly greater than those of air upward velocity, and the stronger the precipitation was, the greater the differences between them were; (3) The orders of magnitudes of the various hydrometeors’ sources and sinks in the strong precipitation period were larger than those in the weak precipitation period, causing a difference in the intensity of precipitation. Water vapor, cloud water, raindrops, graupel and their exchange processes played a major role in the production of the torrential rainfall, and there were two main processes via which raindrops were generated: abundant water vapor condensed into cloud water and, on the one hand, accretion of cloud water by rain water formed rain water, while on the other hand, accretion of cloud water by graupel formed graupel, and then the melting of graupel formed rain water.  相似文献   

13.
A precipitating convective cloud is simulated successfully using the Lagrangian cloud model, in which the flow field is simulated by large eddy simulation and the droplets are treated as Lagrangian particles, and the results are analyzed to investigate precipitation initiation and to examine the parameterization of cloud microphysics. It is found that raindrops appear initially near the cloud top, in which strong turbulence and broadened droplet spectrum are induced by the entrainment of dry air, but high liquid–water mixing ratio is maintained within cloud parts because of insufficient mixing. Statistical analysis of the downward vertical velocity of a droplet W reveals that the transition from cloud droplets to raindrops occurs in the range 20 μm < r < 100 μm, while the variation of W depends on turbulence as well as the droplet radius r. The general pattern of the raindrop size distribution is found to be consistent with the Marshall–Palmer distribution. The precipitation flux can be underestimated substantially, if the terminal velocity $w_{\text{s}}$ is used instead of W, but it is not sensitive to the choice of the critical droplet radius dividing cloud drops and raindrops. It is also found that precipitation starts earlier and becomes stronger if the effect of turbulence is included in the collection kernel.  相似文献   

14.
成都地区雨滴谱特征   总被引:5,自引:1,他引:4       下载免费PDF全文
选取成都信息工程学院气象观测场LNM激光雨滴谱仪获得的2009—2011年175次降水过程的观测资料,依据产生降水云的性质进行统计分类,基于微物理特征参量讨论了成都地区积云、积层混合云以及层状云降水雨滴谱的总体特征,同时结合3个典型个例的微结构参量进行对比分析。结果表明:成都地区积云降水和积层混合云降水的雨滴谱比层状云宽且雨滴数密度比层状云多,特别是在大雨滴和甚小雨滴部分;4种反映雨滴谱特性的特征直径从大到小依次为积云降水、积层混合云降水、层状云降水;成都地区层状云降水的雨强主要来自于小雨滴,而积云降水和积层混合云降水的雨强主要来自于大雨滴;雨强取决于大雨滴的数量,小雨滴贡献率与雨强呈负相关,中数体积直径对雨强变化有一定指示作用。对成都地区雨滴谱特征的研究,有利于进一步了解该地区降水的微物理特性及成雨机制,为降水数值预报工作积累资料和经验。  相似文献   

15.
Cloud microphysical and rainfall responses to radiative processes are examined through analysis of cloud-resolving model sensitivity experiments of Typhoon Fitow(2013) during landfall.The budget analysis shows that the increase in the mean rainfall caused by the exclusion of radiative effects of water clouds corresponds to the decrease in accretion of raindrops by cloud ice in the presence of radiative effects of ice clouds,but the rainfall is insensitive to radiative effects of water clouds in the absence of radiative effects of ice clouds.The increases in the mean rainfall resulting from the removal of radiative effects of ice clouds correspond to the enhanced net condensation.The increases(decreases) in maximum rainfall caused by the exclusion of radiative effects of water clouds in the presence(absence) of radiative effects of ice clouds,or the removal of radiative effects of ice clouds in the presence(absence) of radiative effects of water clouds,correspond mainly to the enhancements(reductions) in net condensation.The mean rain rate is a product of rain intensity and fractional rainfall coverage.The radiation-induced difference in the mean rain rate is related to the difference in rain intensity.The radiation-induced difference in the maximum rain rate is associated with the difference in the fractional coverage of maximum rainfall.  相似文献   

16.
刘卫国  陶玥  周毓荃  党娟  谭超  高扬 《气象学报》2021,79(2):340-358
层状云降水效率通常较低,但却具有较高的云水资源开发潜力,是人工增雨作业的重要对象。随着中国南方地区生态改善、水库增蓄、抗旱等社会需求的增加,针对这些地区降水云系的人工增雨研究显得愈发重要。使用三维中尺度冷云催化模式,对2018年10月21日湖北省一次层状云飞机人工增雨作业过程进行了数值模拟研究,并将模拟结果与卫星、降水和机载云物理观测数据进行了对比。模式合理地模拟出了云和降水的主要宏、微观特征,观测和模拟结果均显示作业云区具有较好的冷云催化条件,在此基础上,按照实际作业中的飞机播撒轨迹,完整地模拟了此次催化作业过程。对数值模拟结果的分析表明:凝结冻结核化和凝华核化是碘化银催化剂的主要核化方式;90%以上碘化银粒子的局地活化比为0.01%—2%,平均活化比为0.07%—0.27%;云系降水是由冷云降水和暖云降水两种机制共同作用的结果,催化作业使两种降水机制均有增强,增雨效果明显;催化后4 h,整个评估区内的累计净增雨量为2.12×108 kg,局地增雨率为?51.1%—306.7%,区域平均增雨率为8.1%;催化作业也使部分地区出现减雨,主要是由于催化过程中的潜热释放引起过冷层动力场扰动,一部分云区的上升气流减弱,从而导致降水粒子的成长减弱,地面出现减雨;在过冷云区,碘化银核化使冰晶浓度升高,导致冰晶-雪、雪-霰的转化过程增强,雪、霰粒子总量增加,更多的雪、霰粒子从冷区落入暖区,在暖区上层产生更多的大雨滴,从而使暖区的云雨粒子碰并过程增强,最终地面降水增加,这是此次催化作业导致增雨的主要微物理链条。   相似文献   

17.
Henry's law coefficients of 15 alkyl nitrates, keto-, hydroxy-, and dinitrates of atmospheric interest have been measured, mostly over the temperature range 1–25°C. The compounds are stable in aqueous solution. Where literature data were available, Henry's law coefficients are in very good agreement. It is concluded that dissolution in cloud and rain water is not an important loss process for alkyl mononitrates in the atmosphere. The residence times of the more soluble bifunctional organic nitrates, however, are significantly affected or even controlled by washout and rainout. Gas chromatographic analysis of bifunctional nitrates in preconcentrated atmospheric samples may be adversely affected by the adsorptive properties of these compounds.  相似文献   

18.
The relationships between the physical and chemical properties of mixed-phase clouds were investigated at Storm Peak Laboratory (3220m MSL) located near the continental divide in northwestern Colorado. Interstitial aerosol particles, cloud droplets and snow crystals were concurrently collected when the laboratory was enveloped by a precipitating cloud. All samples were analyzed for trace elements, soluble anions, electrical conductivity and acidity.The results show average trace constituent concentration ratios of cloud water to snow water range from 0.4 to 26. All but six of the 32 elements and ions measured had ratios greater than one. This result suggests a chemical species dependency of in-cloud aerosol particle scavenging processes. Evidence of a decrease of in-cloud aerosol particle scavenging efficiency by snow due to increases in aerosol concentration is also presented.Differences between the chemical composition of cloud water and snow water are manifested most strongly when snow crystals grow by vapor deposition. In-cloud scavenging efficiencies by snow crystals for most aerosol particle chemical species are dependent on the growth of the snow crystals by accretion of cloud droplets. This chemical fractionation of the atmospheric aerosol by snow crystal formation and growth should be most active where narrow, continental cloud droplet size distributions and low liquid water contents are prevalent, enhancing the probability of snow crystal growth by diffusion.  相似文献   

19.
华南冷锋云系的人工引晶催化数值试验   总被引:13,自引:3,他引:10  
史月琴  楼小凤  邓雪娇 《大气科学》2008,32(6):1256-1275
在对华南2004年3月31日~4月1日的冷锋降水天气过程进行正确模拟的基础上, 通过向云中引入人工冰晶研究了催化效应, 结果表明: 催化使地面雨量在催化后30 min开始增加, 80 min时达到峰值, 120 min时减小到最小值。被催化的云团随着自然雨带逐渐向东南方向移动, 并且催化云影响其周围的云团, 造成了催化的下风方域外效应, 使催化效果可以延长到催化后10个小时, 随着自然云的消散而结束。人工冰晶的引入, 使得大量过冷雨滴快速转变为霰粒, 霰粒通过淞附云水和碰并雨滴过程增长, 使降水提前发展, 之后霰粒的融化使地面雨量增加。大量冻结潜热的释放, 使云中温度增加, 上升速度增强, 说明 “静力催化作用” 和 “动力催化作用” 是相互关联不可割裂的。在云体发展早期冷云降水过程还没有启动之前引入人工冰晶的催化效果优于云体发展接近成熟时的催化效果, 而只由催化剂量的不同造成的增雨差异较小。  相似文献   

20.
不同云底温度雹云成雹机制及其引晶催化的数值研究   总被引:24,自引:1,他引:23  
用二维准弹性冰雹云模式模拟了中国不同地区的冰雹云的成雹机制和人工引晶催化的效果,结果表明:强对流云中自然初始降水元的形成主要同云雨自动转化相关;云底温度较低的冰雹云的雹胚形成以云霰转化过程为主,暖云底的雹云则以雨霰转化为主。人工引晶的作用有三:(1)加强云中冰霰转化过程,雹胚过多争食防雹;(2)促进雨霰转化过程,使雹胚浓度增加,并且减少过冷雨滴,抑制冰雹碰冻过冷雨滴的增长;(3)使云的下部霰量增加,降低降水粒子的增长轨迹,阻碍霰雹的增长。多次催化有时比一次大剂量催化的防雹增雨效果好。  相似文献   

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