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1.
采用中尺度模式WRF中"Aerosol-aware"Thompson云微物理方案,分别进行了干净、污染、重度污染大气情景下的3个试验,研究了背景场凝结核浓度对理想热带气旋(Tropical Cyclone,TC)强度的影响。结果表明,凝结核增加导致TC强度减弱,而最大风速半径和外围风圈半径变化不明显。不同试验眼墙降水的时空分布差异较大,但降水总量的变化较小。重度污染大气下的云滴数量远大于干净大气下,不同试验中水物质变化及其形态间转换的分布存在较大差异。正是这种差异导致了不同的潜热加热分布特征,与热力动力过程作用,对TC强度产生了不同影响。如重度污染下发展的TC外围潜热增加,减少了和TC中心的气压梯度,导致水平方向气压梯度力减弱,TC强度减弱。TC减弱和外雨带的发展也密切相关,外雨带降水过程中,形成地面冷池流入TC眼墙,可导致TC强度减弱。这表明"Aerosol-aware"Thompson方案对气溶胶影响描述较为合理。  相似文献   

2.
巨盐核对云滴活化影响的数值模拟研究   总被引:1,自引:1,他引:0  
利用包含云凝结核(CCN)与巨核(GCCN)的核化,云滴凝结和碰并增长的分档气块模式模拟研究了不同的CCN数浓度、上升气流速度、CCN中值半径以及云底温度等情况下GCCN对CCN活化的影响,结果表明,在水汽供应相对充足的情况下GCCN对云滴活化数浓度的影响并不明显;而当水汽供应相对不充足时,增加GCCN至1 cm-3的量级以上可以有效减少CCN的活化数浓度.在水汽供应不充分且其他条件相同的情况下,增大CCN的平均直径或是增加云底温度都可以使GCCN对云滴活化的抑制作用增强.对比分析不同的GCCN数浓度对清洁大气和污染大气云底以上300 m高度处粒子谱型的影响可以看出,在水汽供应不充分的条件下加入GCCN,初始时刻CCN的数浓度对GCCN产生的大云滴数目及云滴谱宽的影响较小.在水汽供应相对充足的情况下,GCCN对CCN活化基本没有抑制作用,但此时在高过饱和度峰值下生成的大量小云滴争食水汽,反而导致云滴群凝结增长速度小于水汽供应相对不充足的情况,此时加入的GCCN可以先活化形成大云滴.  相似文献   

3.
本文利用热带测雨卫星TRMM(Tropical Rainfall Measuring Mission)微波成像仪TMI(TRMM Microwave Imager)2A12 水汽凝结物(Hydrometeor)反演资料,对西北太平洋地区从1998~2009 年的236 个热带气旋个例的1776 个“快照”(snapshot)的水汽凝结物的结构特征进行了分析,并探讨了水汽凝结物的时空变化与热带气旋强度演变联系。研究结果表明:(1)TMI 2A12 水汽凝结物资料显示出了热带气旋内部的细致结构及变化特征,水汽凝结物的峰值集中于数十公里到一百多公里的热带气旋眼壁及云墙区;在热带气旋发展过程中,随着热带气旋强度的增强,水汽凝结物增多且往其中心靠拢,从发展阶段到成熟阶段,水汽凝结物的大值中心基本上集中在距离热带气旋中心约50 km 区域,而且强度越强的热带气旋,水汽凝结物的大值中心与热带气旋中心的距离越近;在热带气旋消亡的过程中,水汽凝结物不断减弱且往外围扩散,逐渐扩展到远离中心的区域;(2)热带气旋强度与水汽凝结物的分布关系密切,热带气旋强度变化与热带气旋中心附近200 km 范围内的水汽凝结物含量存在显著的正相关,而200 km 以外的外围水汽凝结物含量存在负相关;(3)热带气旋强度变化与水汽凝结物的变化存在时间差,水汽凝结物的变化超前于热带气旋强度的变化,在热带气旋迅速发展之前数小时,热带气旋中心0~50 km 环状区域的水汽凝结物含量就已经提前增加了,在热带气旋减弱前数小时到十数小时,即使热带气旋还处于它强度的鼎盛时期,其中心0~50 km 环状区域的水汽凝结物含量就已经提前显著减少了,这种水汽凝结物的变化超前于热带气旋强度的变化的现象,可能是热带气旋强度预报的潜在线索。  相似文献   

4.
影响登陆台风降水量的主要因素分析   总被引:2,自引:0,他引:2  
利用1952—2000年气象资料,采用气候统计分析与数值模拟相结合的方法,研究影响热带气旋降水的因素。分析结果表明:热带气旋强度是影响台风降水中心强度的主要因素之一;地形作用使迎风坡及降水中心雨量增加,背风坡雨量减少,从而使降水分布更不对称、更不均匀;冷空气入侵热带气旋外围可大幅度增加热带气旋外围及倒槽的降水量,但入侵到热带气旋中心附近的冷空气使热带气旋强度减弱,造成中心附近降水明显减少;大陆及其近海湿度场对热带气旋降水起到较大影响作用;台风及其倒槽影响时间长短直接影响总降水量。  相似文献   

5.
南京不同天气和能见度下云凝结核的观测分析   总被引:3,自引:1,他引:2  
王惠  刘晓莉  安俊琳  丁伟 《气象科学》2016,36(6):800-809
利用美国DMT公司生产的云凝结核(Cloud Condensation Nuclei,CCN)计数器(DMTCCNC),对2013年4—12月南京地区CCN进行观测。对不同天气条件下CCN活化谱拟合,霾天C值最高,为13 085 cm-3,雨后C值降至8 054 cm-3,属于大陆性核谱。不同能见度条件下CCN活化谱特征有明显差异,南京地区不同程度霾天CCN数浓度均远高于轻雾天,浓雾时期CCN数浓度显著偏高。CCN数浓度受到气象要素和天气状况、气溶胶源排放等因素影响。南京地区气溶胶凝结核(Condensation Nuclei,CN)数浓度和CCN数浓度的拟合结果显示出较好的相关性。CCN数浓度值:冬季春季秋季夏季,春季CCN数浓度日变化有三峰趋势,夏季基本呈单峰型,秋季、冬季双峰特征突出。气溶胶源排放、环境气象条件和气溶胶理化特性均会影响CCN数浓度的季节变化。  相似文献   

6.
华北部分地区云凝结核的观测分析   总被引:1,自引:0,他引:1  
利用美国DMT公司生产的连续气流单过饱和度云凝结核计数器对华北部分地区地面和空中云凝结核(CCN)进行了观测研究。地面观测结果表明,太原由于污染严重CCN数浓度高于石家庄。CCN数浓度日最大值、日平均值均随过饱和度的增加而增大。CCN数浓度具有明显的日变化特征,与气象因子、人类活动有关。降水对地面CCN具有明显的冲刷作用。利用关系式N=CSk拟合太原地面CCN活化谱,C〉2200cm-3,k〈l,C、k值很高,属于典型的大陆型核谱。飞机观测资料显示,CCN主要来源于地面,数浓度随高度增加明显减少。高空风向发生变化时,长距离气团输送提供CCN二次源。云对CCN有消耗作用,云内CCN比云外明显减少。  相似文献   

7.
利用连续气流纵向热梯度云凝结核仪对华北地区空中云凝结核(CCN)进行观测研究.2009年飞机观测结果表明,同一块云内CCN数浓度变化范围和平均数浓度随高度增加逐渐减小,云的低层CCN数浓度变化趋势与云滴变化呈负相关,中高空CCN数浓度的水平分布规律与CN并不完全相关;比较三类不同天气条件下不同高度层的CCN谱分布特征发现,阴天和晴天谱型变化较小且较雨天的谱宽,雨天谱分布不连续.  相似文献   

8.
热带气旋的登陆及其与中纬度环流系统相互作用的研究   总被引:36,自引:6,他引:36  
雷小途  陈联寿 《气象学报》2001,59(5):602-615
热带气旋的主要灾害往往在登陆前后造成,登陆问题是当今热带气旋 研究的重点。热带气旋与中纬度环流系统相互作用,不仅影响热带气旋的结构和强度变化, 也对中纬度地区天气产生重大影响。西风槽强度的变化可使热带气旋的降水突然 增幅30%。环境场的急剧调整常引起热带气旋运动突变,在弱环境场中,热带气旋的异常运 动与非对称结构关系紧密。中纬度系统对热带气旋的非对称结构有重要影响。另一方面,热 带气旋向极移动过程中携带了大量可供中纬度地区降水的水汽,在气旋性切变的环境场中, 热带气旋还向环境场输送能量,并激发和增强中纬度气旋性环流系统的发展,触发严重的灾 害性天气。热带气旋有时也会截断低纬向中纬度的水汽输送及中纬度波动的能量频散,95% 左右的南海热带气旋对梅雨有显著影响,其中约86%的热带气旋会导致梅雨减弱中断甚至结 束。  相似文献   

9.
利用WRF模式设计两个数值试验:敏感性试验(背景场云凝结核浓度为2 000 cm-3)和控制试验(背景场云凝结核浓度为300 cm-3)模拟气溶胶对登陆台风“莫拉克”(2009年第8号台风)降水的影响。结果显示大量气溶胶进入外围雨带中起到云凝结核作用,凝结水汽生成水滴,释放潜热有利于对流发展;气溶胶含量增多引起水滴半径减小,雨滴生成的时间加长,降水时间延后;大量液态水上升至冻结高度以上发生相变释放潜热,固态水物质含量增多;台风外围雨带的中小尺度对流云团增强,降水增加。   相似文献   

10.
黄山地区不同高度云凝结核的观测分析   总被引:2,自引:0,他引:2  
李力  银燕  顾雪松  陈魁  谭稳  杨磊  袁亮 《大气科学》2014,38(3):410-420
为研究华东高山地区云凝结核(Cloud Condensation Nuclei,CCN)沿山峰的垂直变化特征,2011年6月利用云凝结核计数器(Cloud Condensation Nuclei Counter,CCNC)在黄山三个不同高度处对CCN进行观测。观测结果表明,不同高度的CCN浓度随时间的变化趋势基本一致,CCN浓度随高度的升高而减小,过饱和度为0.8%时山顶、山腰、山底CCN浓度平均值分别为1105.62、1218.39和1777.78 cm-3,山底的高CCN浓度(大于1000 cm-3)出现频率大于山腰和山顶,表明山底受周边污染源的影响较山顶和山腰大。山顶和山底的日变化曲线均为双峰型,两个峰值分别出现在午前和午后,与大气边界层高度及山谷风变化有关。利用公式N=CSk拟合了山顶在不同天气条件下CCN活化谱,并分析了其变化特征。结果显示,晴天、雨天和雾天的C值分别为2798、384、765,小于一些污染城市,属于清洁大陆型核谱。本文结果有助于改进对华东背景地区云凝结核时空分布的认识,为该地区云雾核化在数值模式中的表达提供观测依据和参数化方案。  相似文献   

11.
The impacts of dry air on tropical cyclone (TC) development at different latitudes with no mean flows are investigated with idealized simulations. It is found that the effective radius of the dry air is sensitive to its vertical distribution and the background earth rotation. The effect of low-level dry-air layer in inhibiting TC development decreases with increasing latitude. At lower latitudes, the greater boundary layer gradient wind imbalance results in a strong low-level inflow, and the dry air can easily penetrate into the TC inner-core region. The intruding dry air inhibits the inner-core deep convection and leads to marked asymmetric convective structure, which significantly suppresses TC development. In contrast, at higher latitudes, the dry air gets moistened before reaching the TC inner-core region due to a weaker radial inflow but can suppress the development of the outer spiral rainbands. The suppressed outer spiral rainbands lead to a weaker barrier effect to the boundary layer inflow and help TC development. Furthermore, the lower the altitude of dry-air layer resides, the greater the impact on TC intensification. The low-level pathway associated with the boundary layer inflow plays an important role on how dry-air layer acts on a TC without considering the mean flow effects. Through examining the climatological distribution of the moisture field, we expect that the intrusion of dry air can be more frequent in the North Atlantic area and therefore has more effects on TC development than in the western North Pacific.  相似文献   

12.
麻素红 《气象学报》2019,77(4):662-673
2016年中国国家气象中心区域台风模式(GRAPES_TYM)对第18号热带气旋(记为TC 1618)的路径预报出现了较大的误差:其平均路径误差显著大于全年的平均误差。分析了涡旋初始化方案(包括涡旋重定位以及涡旋强度调整)对其路径预报的影响。结果显示,涡旋强度调整是造成TC1618预报路径平均误差偏大的主要原因。不同的强度调整半径(r0=12°,9°,6°,3°)对TC1618路径影响的敏感性试验结果显示,强度调整半径越大,其平均路径预报误差越大。500 hPa副热带高压以及平均海平面涡旋尺度分析发现:较大的强度调整半径(r0=12°,9°)其初始时刻的涡旋尺度较大,涡旋北侧邻近区域副热带高压等值线相对偏北,副热带高压相对偏弱。尺度大的涡旋其北移速度较大,并且在积分过程中其环流邻近区域副热带高压进一步减弱,导致涡旋环流会更早与其西北侧东移的西风槽结合,移速偏快。   相似文献   

13.
Surface heat and moisture fluxes are important to the evolution of a tropical storm after its landfall. Soil moisture is one of the essential components that influence surface heating and moisture fluxes. In this study, the impact of soil moisture on a pre-landfall numerical simulation of Tropical Storm Bill(2015), which had a much longer lifespan over land, is investigated by using the research version of the NCEP Hurricane Weather Research and Forecasting(HWRF) model. It is found that increased soil moisture with SLAB scheme before storm's landfall tends to produce a weaker storm after landfall and has negative impacts on storm track simulation. Further diagnoses with different land surface schemes and sensitivity experiments indicate that the increase in soil moisture inside the storm corresponds to a strengthened vertical mixing within the storm boundary layer, which is conducive to the decay of storm and has negative impacts on storm evolution. In addition, surface diabatic heating effects over the storm environment are also found to be an important positive contribution to the storm evolution over land, but their impacts are not so substantial as boundary layer vertical mixing inside the storm. The overall results highlight the importance and uncertainty of soil moisture in numerical model simulations of landfalling hurricanes and their further evolution over land.  相似文献   

14.
In this study, the sensitivity of tropical cyclone (TC) track to the moisture condition in a nearby monsoon gyre (MG) is investigated. Numerical simulations reveal that TC track is highly sensitive to the spatial distribution of relative humidity (RH). In an experiment conducted with higher (lower) RH in the eastern (western) semicircle of an MG, the TC experiences a sharp northward turning. In contrast, when the RH pattern is reversed, the simulated TC does not show a sharp northward turning. The RH distribution modulates the intensity and structure of both the TC and MG, so that when the TC is initially embedded in a moister environment, convection is enhanced in the outer core, which favors an expansion of the outer core size. A TC with a larger outer size has greater beta-effect propagation, favoring a faster westward translational speed. Meanwhile, higher RH enhances the vorticity gradient within the MG and promotes a quicker attraction between the TC and MG centers through vorticity segregation process. These cumulative effects cause the TC to collocate with the MG center. Once the coalescence process takes place, the energy dispersion associated with the TC and MG is enhanced, which rapidly strengthens southwesterly flows on the eastern flanks. The resulting steering flow leads the TC to take a sharp northward track.  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.
The sensitivity of tropical cyclone (TC) intensification to the ambient rotation effect under vertical shear is investigated. The results show that the vortices develop more rapidly with intermediate planetary vorticity, which suggests an optimal latitude for the TC development in the presence of vertical shear. This is different from the previous studies in which no mean flow is considered. It is found that the ambient rotation has two main effects. On the one hand, the boundary layer imbalance is largely controlled by the Coriolis parameter. For TCs at lower latitudes, due to the weaker inertial instability, the boundary inflow is promptly established, which results in a stronger moisture convergence and thus greater diabatic heating in the inner core region. On the other hand, the Coriolis parameter modulates the vertical realignment of the vortex with a higher Coriolis parameter, favoring a quicker vertical realignment and thus a greater potential for TC development. The combination of these two effects results in an optimal latitude for TC intensification in the presence of a vertical shear investigated.  相似文献   

17.
This study investigates aerosol indirect effects on the development of heavy rainfall near Seoul, South Korea, on 12 July 2006, focusing on precipitation amount. The impact of the aerosol concentration on simulated precipitation is evaluated by varying the initial cloud condensation nuclei (CCN) number concentration in the Weather Research and Forecasting (WRF) Double-Moment 6-class (WDM6) microphysics scheme. The simulations are performed under clean, semi-polluted, and polluted conditions. Detailed analysis of the physical processes that are responsible for surface precipitation, including moisture and cloud microphysical budgets shows enhanced ice-phase processes to be the primary driver of increased surface precipitation under the semi-polluted condition. Under the polluted condition, suppressed auto-conversion and the enhanced evaporation of rain cause surface precipitation to decrease. To investigate the role of environmental conditions on precipitation response under different aerosol number concentrations, a set of sensitivity experiments are conducted with a 5?% decrease in relative humidity at the initial time, relative to the base simulations. Results show ice-phase processes having small sensitivity to CCN number concentration, compared with the base simulations. Surface precipitation responds differently to CCN number concentration under the lower humidity initial condition, being greatest under the clean condition, followed by the semi-polluted and polluted conditions.  相似文献   

18.
Aerosol particles are of particular importance because of their impacts on cloud development and precipitation processes over land and ocean. Aerosol properties as well as meteorological observations from the Department of Energy Atmospheric Radiation Measurement(ARM) platform situated in the Southern Great Plains(SGP) are utilized in this study to illustrate the dependence of continental cloud condensation nuclei(CCN) number concentration(NCCN) on aerosol type and transport pathways. ARM-SGP observations from the 2011 Midlatitude Continental Convective Clouds Experiment field campaign are presented in this study and compared with our previous work during the 2009–10 Clouds, Aerosol, and Precipitation in the Marine Boundary Layer field campaign over the current ARM Eastern North Atlantic site. Northerly winds over the SGP reflect clean, continental conditions with aerosol scattering coefficient(σ_(sp)) values less than 20 Mm~(-1) and NCCNvalues less than 100 cm~(-3). However, southerly winds over the SGP are responsible for the observed moderate to high correlation(R)among aerosol loading(σ_(sp) 60 Mm~(-1)) and NCCN, carbonaceous chemical species(biomass burning smoke), and precipitable water vapor. This suggests a common transport mechanism for smoke aerosols and moisture via the Gulf of Mexico,indicating a strong dependence on air mass type. NASA MERRA~(-2) reanalysis aerosol and chemical data are moderately to highly correlated with surface ARM-SGP data, suggesting that this facility can represent surface aerosol conditions in the SGP, especially during strong aerosol loading events that transport via the Gulf of Mexico. Future long-term investigations will help to understand the seasonal influences of air masses on aerosol, CCN, and cloud properties over land in comparison to over ocean.  相似文献   

19.
Typhoon Megi, the 13th typhoon of the 2010 typhoon season, was selected for case study by utilizing the Weather Research and Forecasting (WRF) model. Twelve sensitivity experiments with various initial tropical cyclone (TC) intensities and sizes were conducted to investigate their impacts on the simulation of typhoon track. Interaction between TC and the western Pacific subtropical high (WPSH) was also analyzed to explore the mechanism for the impact on TC track of the initial TC intensity and size. Numerical results indicate that the simulated TC size and TC track are sensitive to initial TC intensity and size. Stronger initial TC intensity and larger initial TC size often lead to larger simulated TC size and make TC turn northward earlier. Further analysis suggests that, with the increase of initial TC intensity and size, more air mass enters into the TC region, which subsequently reduces the extent of WPSH. As a result, the steering flow changes significantly and eventually causes the TC to turn northward earlier. The present study confirms that the initial TC intensity and size have certain influences on the TC track simulation, which demonstrates the importance of accurate initial condition for successful simulation of the TC intensity and TC track. Moreover, it also deepens our understanding of the interaction between TC and WPSH, provides helpful clues for the TC track change study, and discusses the future directions for improvement of TC track forecast.  相似文献   

20.
云凝结核浓度对雷暴云电过程影响的数值模拟研究   总被引:1,自引:0,他引:1  
邓美玲  银燕  赵鹏国  肖辉 《大气科学》2017,41(1):106-120
本文将非感应起电机制耦合到WRF中尺度模式中,选取Morrison双参数微物理方案,采用整体放电参数化方案,改变初始云凝结核(CCN)浓度(浓度变化从500 cm-3到4000 cm-3),共模拟15组试验,讨论了CCN浓度(nCCN)对雷暴云起电强度的影响。通过研究发现:随nCCN增加,霰粒子数浓度减少,混合比增加,导致霰粒子平均尺度增加;冰晶粒子数浓度增加,混合比基本不变,导致冰晶粒子平均尺度减小。此外,霰粒子平均尺度增大,下落末速度增大,冰晶粒子平均尺度减小,下落末速度减小,二者末速度差值增加,导致单次碰撞电荷分离量增加。综上所述,气溶胶浓度增加使霰粒子与冰晶粒子碰撞分离过程增强,单次碰撞电荷分离量增加,正负电荷密度平均值增加,从而增强雷暴起电强度。  相似文献   

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