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1.
利用2015—2017年秋冬季在江苏北部观测到12次雾过程的雾滴谱数据及常规气象观测资料,统计分析了轻雾、大雾、浓雾、强浓雾和特强浓雾等级下的微物理特征量及雾滴谱分布,并通过一次雾过程的分析,探讨了不同雾等级下的主要微物理过程。结果表明:随着雾等级的提升,雾滴数浓度、含水量增长明显,而轻雾、大雾和浓雾的雾滴平均直径和最大直径差异不大,但当能见度小于200 m时,平均直径和最大直径显著增大;能见度下降时,平均数浓度谱和含水量谱的谱线上抬,从浓雾到强浓雾,粒径大于10 μm的大雾滴增长明显;雾滴数浓度主要由小雾滴控制,雾滴含水量受大雾滴影响;东海县郊平均的雾滴含水量与南京观测结果相差不大,但雾滴数浓度仅为南京的一半左右,平均直径大约是南京的2.3倍;个例分析中,能见度从1000 m下降到50 m,凝结核活化并凝结增长是主要微物理过程,但可凝结水汽是影响该过程效果的一个重要因子,可使雾滴数浓度和平均直径呈现不同的相关关系;能见度降到50 m以下时,碰并过程效果显著;日出后雾滴蒸发作用显现并逐步增强。   相似文献   

2.
张浩  石春娥  杨军  倪婷 《大气科学》2021,45(6):1217-1231
雾对交通运输有不利影响,尤其是强浓雾。本文利用2019年1月上中旬在寿县国家气候观象台应用FM-100型雾滴谱仪测量的雾滴谱数据和常规气象观测数据,分析了不同强度雾的微物理特征,以及能见度与含水量、雾滴数浓度、相对湿度之间的关系,在此基础上建立了能见度参数化方案。结果表明:(1)随着雾的强度增强,雾中含水量显著增大,大雾、浓雾和强浓雾阶段含水量平均值分别为0.003 g m?3、0.01 g m?3和0.09 g m?3;当含水量大于0.02 g m?3,出现强浓雾的比例高达95%。(2)雾滴数浓度、雾滴尺度随着雾强度增强而增大,从大雾到浓雾,雾滴数浓度显著增加(增幅67%),而从浓雾到强浓雾,雾滴尺度显著增大,平均直径、平均有效半径分别增加62%、135%;当雾滴有效半径大于4.7 μm,出现强浓雾的比例高达95%。(3)强浓雾、浓雾、大雾雾滴数浓度谱分布均为双峰结构,谱分布整体偏向小粒子一端,强浓雾谱型为Deirmendjian分布,浓雾、大雾均为Junge分布;强浓雾的雾水质量浓度谱呈现多峰特征,最大峰值出现在21.5 μm处,浓雾雾水质量浓度谱为双峰分布,大雾为单峰型,最大峰值均出现在5 μm处。(4)含水量、数浓度与能见度均呈反相关关系,含水量对能见度的影响最为显著;分别采用全样本和分段方式建立了四种能见度参数化方案,评估检验结果表明,基于含水量的能见度分段拟合方案对能见度的估算效果最好。  相似文献   

3.
利用宏、微观观测资料,分析了济南4次出现爆发性增强冬季雾过程的类型以及形成、发展、减弱和消散的主要机制,研究了形成、发展、成熟和减弱阶段,以及爆发性增强期间的微物理演变特征,探讨了爆发性增强的触发机制。结果表明:1)夜间地面长波辐射及弱冷空气入侵造成的气温下降是济南冬季雾形成和发展的主要因素,干冷空气入侵或日出后太阳辐射加热升温,近地层相对湿度下降是雾消散或减弱的主要机制。2)形成阶段,核化和凝结增长过程启动但并不活跃,碰并强度很弱,以未碰并和偶发碰并为主;发展阶段,核化和凝结增长等微物理过程开始活跃,碰并过程启动,大滴开始增多;成熟阶段,核化、凝结和碰并增长非常活跃,各微物理量均达到最大值,谱最宽;减弱阶段,核化、凝结过程减弱,碰并过程减弱并消失,雾滴蒸发,能见度增大。3)爆发性增强的宏观物理特征主要表现为极大风速增大、气温下降、相对湿度增大、水汽压下降;微观物理特征主要表现为数浓度、液态含水量等微物理量出现跃增,以及谱型由“单峰”结构突变为“多峰”结构。4)相对湿度增大主要与气温下降有关,水汽压下降则与异常活跃的凝结增长有关;气温下降是济南冬季雾爆发性增强的直接原因,弱水汽输送产生的增湿作用对爆发性增强具有一定的促进意义。  相似文献   

4.
基于华北雾-霾综合观测试验资料,分析了2011年12月4日河北涿州一次浓雾过程爆发性增强的微物理特征及形成机理。结果表明:此次浓雾过程除具有均压场、地面辐射降温、逆温层、静稳天气等特征外,还具有雾微物理过程出现爆发性增强的特征,10 min内,小雾滴浓度显著增加,含水量增大了3个量级,雾滴谱由15 μm拓宽到35 μm,能见度由500 m骤降至70 m。夜间地面长波辐射冷却效应导致近地层雾的形成,而近地层雾的形成反过来快速地增强了地面长波辐射冷却效应,促使大量小雾滴的形成和碰并过程的产生,这是一种正反馈效应;大量雾滴形成释放的潜热,促使雾体抬升和向下长波辐射增强,又使地面长波辐射冷却效应减弱,产生负反馈效应。相对于南京辐射雾过程,此次涿州浓雾的小雾滴粒子数浓度高,液态水含量明显偏小,这与华北高浓度气溶胶和弱水汽输送有关。  相似文献   

5.
2016年12月19日—2017年1月9日,受静稳天气影响,济南接连出现了10次大雾天气过程,期间最低能见度不足50 m。利用10次冬季雾过程收集的雾滴谱资料、自动气象观测站加密资料、NCEP/NCAR再分析资料以及常规气象资料,分析了济南冬季雾期间的环流背景、雾类型以及微物理结构特征等。结果表明:济南冬季雾中以小滴为主,直径8 μm以下的小滴占总数的88%以上,小滴数与数浓度具有较好的线性关系;谱型有“单峰窄谱”和“多峰宽谱”之分,“单峰窄谱”雾谱宽不超过13 μm,小雾滴所占比例很高,液态含水量与数浓度具有较好的线性关系,各微物理量较小,“多峰宽谱”雾平均谱宽在34 μm以上,液态含水量与直径12 μm以上的大滴数具有较好的线性关系,各微物理量较大;平流辐射雾的数浓度和液态含水量最大,辐射雾次之,蒸发雾最小;冬季雾具有明显的地域性特征,与南京和上海相比,济南冬季雾数浓度明显偏小;辐射雾和平流辐射雾中液态含水量偏小1~2个数量级,且谱宽明显偏窄。  相似文献   

6.
湛江东海岛一次春季海雾的宏微观结构及边界层演变特征   总被引:5,自引:0,他引:5  
吕晶晶  牛生杰  张羽  徐峰 《气象学报》2014,72(2):350-365
2011年2—3月利用雾滴谱仪、能见度仪、风廓线雷达及100 m边界层气象要素梯度观测塔在湛江东海岛开展海雾综合观测试验。选取2011年2月23—24日一次约15 h的浓雾过程,从宏微观角度着重分析了其间近地层风、温、湿结构和热、动力演变,微物理过程和爆发性增长特征,及湍流通量输送。结果表明:来自南海暖海面的偏东南暖湿气流平流至广东省沿岸冷海面,发生冷却并达到饱和形成海雾。偏东南暖湿气流为浓雾的酝酿、生成及成熟提供了充沛水汽和稳定的逆温层结条件,逆温强度与暖湿气流强度关系密切。海雾多发生在270 m以下,当630—870 m 高度层存在明显的下沉运动时,150—390 m高度层则可保持近似等温和弱逆温层,阻止了下层(270 m以下)水汽与其上层(390 m以上)干冷空气交换,导致下层大气持续高湿稳定状态。整个过程中,雾滴数浓度(N)、含水量(W)、平均直径(Dave)、谱宽(Dmax)和有效半径(Reff)的平均值分别为248 cm-3、0.102 g/cm3、5.2 μm、36.0 μm和7.0 μm。雾滴数浓度(N)与平均直径(Dave)在雾发展初期(生成、发展)和末期(消散)多成正相关趋势,而在成熟阶段两者多成反相关趋势。雾前4小时稳定层结及偏东南暖湿气流持续增湿可认为是雾层爆发性增长的酝酿阶段,雾滴谱拓宽是经过活跃—稳定—爆发的3阶段完成,湍流混合对其影响不大;浓雾快速消散是雾滴蒸发、重力碰并沉降、湍流碰并沉降等共同作用造成的,其中直径大于21 μm液滴的大量耗散是消散的重要阶段。雾前,湍流由强转弱。雾发生后,湍流持续较弱。由于东南急流引发的风切变导致湍流增强,感热通量出现向上强输送,这与冷海雾维持阶段高层热量交换过程类似。雾消散时,湍流逐渐转强。平均动能在雾前和雾中的两次跃增与偏东南暖湿气流显著增强有关,而雾成熟期湍流动能大幅跃增主要是由雾顶辐射冷却产生的热力湍流和风切变引发的机械湍流增强所致。  相似文献   

7.
王庆  李季  樊明月  王洪 《气象》2019,45(9):1299-1309
受静稳天气影响,2017年1月3—6日我国华北、黄淮、长江中下游以及华南等中东部地区出现了大范围的持续性大雾天气,其中济南70 m以下的低能见度天气持续了6 h之久,最低能见度只有51 m。利用布设在山东省气象局院内的FM-120雾滴谱仪观测的微物理资料、自动气象站加密观测等资料,分析了此次浓雾天气过程的微物理结构,讨论了雾在4次"发展—减弱"过程中的主要特征,研究了雾在不同发展阶段以及爆发性增强期间的演变规律,探讨了雾的成因以及爆发性增强的原因。  相似文献   

8.
利用四川省153个气象观测站点的逐时能见度和相对湿度资料,根据水平能见度将雾分为大雾、浓雾、强浓雾和特强浓雾四个等级,分析了四川不同等级雾的时空分布、持续时间及生消时间,结果表明:四川地区,雾在冬季最多,夏季最少,特强浓雾在4~9月比较罕见;各等级雾均在后半夜到早上(03~09时)最为频发,午后到晚上最少,强浓雾和特强浓雾几乎不会在午后到晚上(13~20时)发生;四川盆地是雾的多发区,川西高原和攀西地区雾较少,四川大部地区没有强浓雾和特强浓雾发生;四川大雾和浓雾持续时间短,一般为1~3h;强浓雾和特强浓雾一旦形成,便不容易在短时间内消散;成雾时间主要在夜间到日出前,消雾时间主要在日出后。   相似文献   

9.
2006年12月南京连续4天浓雾的微物理结构及演变特征   总被引:16,自引:2,他引:14  
2006年12月24-27日南京地区出现了连续4天的浓雾天气,其中能见度小于50 m的强浓雾持续了40多个小时.利用FM-100型雾滴谱仪,连续观测了雾滴谱、数密度和含水量等微物理参量.结合自动气象站及能见度仪观测资料,分析了这次浓雾过程的微物理特征,并与1996年观测结果进行对比:雾滴的平均含水量和平均直径与1996年观测结果相当,含水量最大值比1996年观测结果大4倍,数密度比10年前小.认为前2个子过程的雾滴数密度、含水量很高,造成了南京奉次大雾能见度长时间低于50 m的恶劣天气.结合边界层探空资料,认为形成这种强浓雾的主要原因足近地层持续存在强盛的水汽平流,具有平流雾的特征.根据雾微物理参量的起伏变化,将浓雾过程分成4个子过稃,分析并比较了4个子过程的雾滴谱分布,总过程的谱分布及4个子过程的谱分布都服从Dcirmendjian分布,谱型都基本呈指数下降,雾滴主要集中存小滴段.最后,对第一个子过程微物理参量的变化特征进行了细致分析.发现这次浓雾是在夜间晴空辐射降温后形成的,午夜最强,日出后随着气温的升高逐渐减弱,反映了辐射雾的口变化特征.另外,还发现雾形成以后,开始变化不大,但随着进一步辐射降温,地面雾团不断产牛,雾爆发性发展.  相似文献   

10.
一次深厚浓雾过程的边界层特征和生消物理机制   总被引:6,自引:2,他引:4  
杨军  王蕾  刘端阳  李子华 《气象学报》2010,68(6):998-1006
2007年12月13-14日,南京出现一次厚度达600 m、持续近14 h的浓雾过程,其中强浓雾阶段维持4 h.通过系留气球边界层探测系统、涡动协方差测量系统、雾滴尺度分布和自动气象站等外场试验资料分析了此次深厚浓雾过程的边界层结构特征和生消物理机制.结果表明,此次雾过程首先由地面辐射冷却形成贴地雾层,而后因低空平流冷却形成低云.在发展阶段,伴随低云不断下伸,贴地雾层不断抬升.在贴地雾层受到地面弱冷空气平流降温影响下,雾中微物理过程迅速发展,雾滴数密度、含水量、平均直径、最大直径等微物理参数在15 min内跃增,雾体爆发性升高,最终导致地面雾和低云上下贯通形成深厚雾层,地面能见度骤降至15 m以下.雾体爆发性增强时,地面垂直动量通量和向下长波辐射通量密度增大,净辐射趋于零.整个雾过程中,由于贴地层持续弱冷平流降温和上层雾阻碍了下层雾的辐射降温,二者的共同作用使贴地强逆温结构始终维持.  相似文献   

11.
A persistent thick fog event occurred in Nanjing during 24-27 December 2006,and the bad visibility below 50 m lasted for more than 40 h.Microphysical characters and evolution of the fog event have been analyzed based on the continually observed data of drop-size distribution,number concentration,liquid water content(LWC),etc.,by an FM-100 fog particle spectrometer,as well as routine observations by an auto-weather station and a ZQZ-DN visibility meter during the fog episode.The results were compared with...  相似文献   

12.
Belonging to the southern subtropical moist type of monsoon climate,the Nanling mountainous area experiences heavy fogs whenever quasi-stationary fronts appear there from September to May.There can be as many as 15-18 days of heavy fogs per month.Fogs have more serious consequences in the Lechang-Ruyuan section of the Beijing-Zhuhai Expressway(the longest expressway in China)that passes through the main part of the Nanling Mts.,where the road rises from 200m to more than 800m above sea level(ASL).For a major motorway in the mountainous areas of Nanling Mts.,two multidisciplinary integrated field observations were carried out,which measured visibility by the naked eyes,visibility by instrument,spectrum of fog- drops,liquid water content(LWC)of fog,tethered sounding,dual-parameter low-level sounding,turbulence diffusion within fog layers,aerosol spectra of size and composition,sampled fog water compositions,and sampled rainwater compositions.Typical cases were probed for their analyses of synoptics,micro- and macro-structures and microphysics.It is understood that heavy fogs take place with high frequency in the area and bring about serious consequences.Being typical advection and upslope fogs,they are in essence low-lying clouds appearing at high altitudes,which are closely related with the activity of South China frontal processes,especially the South China quasi-stationary fronts,and reflect on the role of local terrain as well.The heavy fogs are characteristic of long duration,extremely low visibility,well-organized lump- shaped structure,large-size fog-drops,moderate concentration,high LWC,and stronger turbulent diffusion within the fog layers than in fine sky.They differ much from radiation fogs,which are better documented in previous study in China.It is found that fog LWC is in significant anti-correlation with visibility so that large LWC is associated with small visual range.It is also noted that one of the reasons for the fluctuation of characteristic quantities of micro-structure such as the LWC of fog in the area is,in addition to the inhomogeneous structure of the fog itself,the effect of advection and inhomogeneous underlying surface; during the translation of fog with the ambient wind,irregular upslope and cross-over movement is another reason for the inhomogeneous structure and fluctuation of fog.The spectrum of the aerosol size displays itself as the power function of monotonous descent.The concentration of submicrometer particles is even higher.The high-concentration sulfate particles found in the aerosols of Nanling Mts.are actually good nuclei for condensation,which are favorable for the formation of fog.The presence of fog can help cleanse the trace compositions in the atmosphere so that fog droplets contain high levels of polluting elements.In the meantime,compared to cloud droplets,fog droplets are easier to be captured by the vertical surfaces of objects on the land surface,such as vegetation and buildings to constitute another kird of cleansing process. In vast stretches of forest like the Nanling Mts.,this kind of cleansing may be quite important.Studying the characteristic variation of fogs in the area realistically assists in setting up a forecast and warning system for local fogs and provides basic information for fog dispersal experiments.  相似文献   

13.
Belonging to the southern subtropical moist type of monsoon climate, the Nanling mountainous area experiences heavy fogs whenever quasi-stationary fronts appear there from September to May. There can be as many as 15-18 days of heavy fogs per month. Fogs have more serious consequences in the Lechang-Ruyuan section of the Beijing-Zhuhai Expressway (the longest expressway in China) that passes through the main part of the Nanling Mts., where the road rises from 200 m to more than 800 m above sea level (ASL).For a major motorway in the mountainous areas of Nanling Mts., two multidisciplinary integrated field observations were carried out, which measured visibility by the naked eyes, visibility by instrument, spectrum of fogdrops, liquid water content (LWC) of fog, tethered sounding, dual-parameter low-level sounding, turbulence diffusion within fog layers, aerosol spectra of size and composition, sampled fog water compositions, and sampled rainwater compositions. Typical cases were probed for their analyses of synoptics, micro- and macro-structures and microphysics. It is understood that heavy fogs take place with high frequency in the area and bring about serious consequences. Being typical advection and upslope fogs, they are in essence low-lying clouds appearing at high altitudes,which are closely related with the activity of South China frontal processes, especially the South China quasi-stationary fronts, and reflect on the role of local terrain as well. The heavy fogs are characteristic of long duration, extremely low visibility, well-organized lump-shaped structure, large-size fog-drops, moderate concentration, high LWC, and stronger turbulent diffusion within the fog layers than in ne sky. They di er much from radiation fogs, which are better documented in previous study in China. It is found that fog LWC is in significant anti-correlation with visibility so that large LWC is associated with small visual range. It is also noted that one of the reasons for the fluctuation of characteristic quantities of micro-structure such as the LWC of fog in the area is, in addition to the inhomogeneous structure of the fog itself, the effect of advection and inhomogeneous underlying surface;during the translation of fog with the ambient wind, irregular upslope and cross-over movement is another reason for the inhomogeneous structure and fluctuation of fog. The spectrum of the aerosol size displays itself as the power function of monotonous descent. The concentration of submicrometer particles is even higher. The high-concentration sulfate particles found in the aerosols of Nanling Mts. are actually good nuclei for condensation, which are favorable for the formation of fog. The presence of fog can help cleanse the trace compositions in the atmosphere so that fog droplets contain high levels of polluting elements. In the meantime, compared to cloud droplets, fog droplets are easier to be captured by the vertical surfaces of objects on the land surface, such as vegetation and buildings to constitute another kind of cleansing process.In vast stretches of forest like the Nanling Mts., this kind of cleansing may be quite important. Studying the characteristic variation of fogs in the area realistically assists in setting up a forecast and warning system for local fogs and provides basic information for fog dispersal experiments.  相似文献   

14.
Microphysical properties of sea fog and correlations of these properties were analyzed based on the measurements from a comprehensive field campaign carried out from 15 March to 18 April 2010 on Donghai Island (21°35’’N, 110°32’5’’E) in Zhanjiang, Guangdong Province, China. There were four types of circula- tion pattern in favor of sea fog events in this area identified, and the synoptic weather pattern was found to influence the microphysical properties of the sea fogs. Those influenced by a warm sector in front of a cold front or the anterior part of low pressure were found to usually have a much longer duration, lower visibility, greater liquid water content, and bigger fog droplet sizes. A fog droplet number concentration of N≥1 cm-3 and liquid water content of L≥0.001 g m-3 can be used to define sea fogs in this area. The type of fog droplet size distribution of the sea fog events was mostly monotonically-decreasing, with the spectrum width always being >20 μm. The significant temporal variation of N was due in large part to the number concentration variation of fog droplets with radius <3 μm. A strong collection process appeared when droplet spectrum width was >10 μm, which subsequently led to the sudden increase of droplet spectrum width. The dominant physical process during the sea fog events was activation with subsequent condensational growth or reversible evaporation processes, but turbulent mixing also played an important role. The collection process occurred, but was not vital.  相似文献   

15.
利用地面自动站观测、风廓线雷达、ERA5再分析资料、葵花8号高分辨率卫星资料以及FM-120型雾滴谱资料,分析了2019年4月7日闽南沿海一次强浓雾过程的环流形势以及微物理特征。环流形势分析表明,此次海雾过程500 hPa为槽底偏西西北气流,700 hPa至地面为一致的偏南气流,探空形势稳定。海雾发生前,整层风速明显减小,弱风速层厚度迅速增大,为海雾的形成提供了稳定的环流背景。卫星监测分析表明,海雾首先快速形成于台湾海峡上,在偏南气流作用下,平流至沿海地区。水文条件分析表明,福建近海存在一条冷水带,从海峡中部至沿海海温梯度大,海温在18~24℃,近海气海温差介于0~2℃,有利于海峡内平流冷却雾的形成。雾滴谱分析表明,翔安站能见度显著下降伴随着粒子数浓度、液态水含量显著增加,雾滴谱爆发性拓宽。海雾过程中,5 min平均粒子数浓度最大超过200个·cm-3,瞬时数浓度最大达到468个·cm-3,雾过程平均数浓度为100个·cm-3。5 min平均液态水含量最高达到0.41 g·m-3,瞬时液态水含量最大达到1.35 g·m-3,雾过程平均液态水含量为0.17 g·m-3。粒子浓度呈现双峰结构特征,峰值分别位于4~6和22~26μm,表明小粒子和大粒子对海雾的形成均有明显的贡献。  相似文献   

16.
The microphysical properties of a long-lasting heavy fog event are examined based on the results from a comprehensive field campaign conducted during the winter of 2006 at Pancheng (32.2°N, 118.7°E), Jiangsu Province, China. It is demonstrated that the key microphysical properties (liquid water content, fog droplet concentration, mean radius and standard deviation) exhibited positive correlations with one another in general, and that the 5-min-average maximum value of fog liquid water content was sometimes ...  相似文献   

17.
选用2005-2009年沈阳地区5个气象站点的气象资料,总结了沈阳地区雾天的时空分布规律.沈阳地区一年中近一半的时间出现轻雾,大雾年平均16.4天;轻雾和大雾的季节分布都呈夏、秋季多,春季少的态势;大雾多发时段在清晨.在数值预报的基础上,利用UPS预报方法,进一步做出大雾天气订正预报,建立沈阳地区大雾天气UPS订正预报方法.当数值预报有大雾时,如T-Txover(最高气温出现时段温度露点差)≤5℃则可预报有大雾,当-4℃<T-Txover≤5℃时可预报未来会出现能见度小于等于500 m的浓雾;如T-Txover≤-4℃则预报未来会出现能见度小于等于200m的强浓雾.如T-Txover>5℃则有暖湿平流时预报有大雾,无暖湿平流时预报不会出现大雾.  相似文献   

18.
南岭大瑶山高速公路浓雾的宏微观结构与能见度研究   总被引:20,自引:2,他引:20  
南岭山地地处南亚热带湿润型季风气候区,每年9月至次年5月有华南准静止锋活动时均会有浓雾发生,每月浓雾日可高达15—18 d,尤其是中国目前最长的京珠高速公路通过南岭主脉大瑶山的乐昌—乳源段,路面海拔高度从200 m增至800多米,山地的抬升使雾害更加严重。在南岭大瑶山高速公路开展的两次多学科综合野外观测,内容包括目测能见度、器测能见度、雾滴谱、雾含水量、系留探空、双参数低空探空、雾层湍流扩散、气溶胶粒子谱、气溶胶成分谱、雾水样品成分、雨水样品成分。对典型个例进行了天气学分析,雾的宏观结构特征分析,雾的微物理特征分析。认识到南岭山地浓雾发生频率高,雾害十分严重,是典型的平流雾和上坡雾,实质上是出现在相对较高海拔高度上的低云,与华南锋面活动尤其是华南准静止峰的活动密切相关,局地地形的作用也非常重要。其特点是浓雾持续时间长、能见度极其恶劣、团块结构明显、雾滴尺度大、浓度不高、含水量较大、雾层内的湍流扩散能力比晴空区强,与中国过去研究较多的辐射雾差别较大。发现雾含水量与能见度呈明显的反相关关系,含水量较大时能见度较小;南岭山地雾含水量等微结构特征量的起伏变化,除与雾体本身的结构不均匀有关外,一个重要的原因是平流因素的影响,南岭山地下垫面的不均匀性,雾体随环境风的平移过程中,不规则的爬坡、翻越山坡的运动是造成雾体结构不均匀、振荡起伏变化的另一个重要原因。该地气溶胶粒子谱是呈单调下降的幂函数谱,次微米粒子浓度甚高,南岭山地气溶胶中含有高浓度的硫酸盐粒子,是优质凝结核,有利于雾的形成。雾的存在可以清除大气中的微量成分,雾滴可以包含浓度很高的污染物成分。同时,较之云滴而言,雾滴也很容易被地表物体(如植被、建筑物等)的垂直表面所截获,构成另一类清除过程。在南岭这样的大面积森林地区,这类清除过程可能是很重要的。研究本地区雾的特征变化,对建立本地区雾的预警预报系统有很大的现实意义,并为开展消雾试验提供了基本资料。  相似文献   

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