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141.
142.
143.
一次湖北暴雪天气的诊断与模拟 总被引:2,自引:1,他引:2
利用NCEP GFS资料分析了2007年1月15—16日鄂东南地区降雪过程,对造成暴雪过程的天气系统发生、发展背景场进行分析。并利用中尺度数值天气模式WRF模拟了这次暴雪过程,探讨了其发生发展的机制。天气系统的背景分析表明,这次暴雪过程主要是受700 hPa西南急流和地面冷空气的共同影响而产生的,降水过程与西南急流的变化密切联系。WRF模式较好地再现了此次暴雪的过程。模拟结果表明西南急流的减弱和移出,对应着降雪的开始和停止;在西南急流的左侧,由于低层涡度的增加,使低空辐合、高空辐散,在连续性原理和动力机制约束下导致上升运动的加强是该次暴雪的形成机制。模式结果说明,产生暴雪的上升运动要远小于产生暴雨的上升运动,且在暴雪过程中,中层为上升运动,近地层和高层伴随着下沉运动。 相似文献
144.
基于概率加权估计的中国极端气温时空分布模拟试验 总被引:32,自引:0,他引:32
引入一种计算简便、有效性高,并可代替极大似然法的优良参数估计方法--概率加权法(PWM),利用Gumbel分布对中国极端气温时空变化特征作"当前"与"未来"气候的模拟试验.结果表明,这种方法具有较高的拟合优度.利用适应性较强的Weibull分布拟合中国逐日高(低)气温的原始分布,在此基础上,借助于蒙特卡洛随机模拟产生未来平均气候情景下的极端高(低)气温统计概率特征.模拟试验表明,在未来气候条件下,若平均气温升高1.0℃,中国各大区域极端高(低)气温的概率有一定的变动规律可寻. 相似文献
145.
Jinshuai?Ruan Xiaohang?WenEmail author Guangzhou?Fan Deqin?Li Wei?Hua Bingyun?Wang Yi?Zhang Mingjun?Zhang Chao?Wang Lei?Wang 《Theoretical and Applied Climatology》2018,134(3-4):817-828
To study the land surface and atmospheric meteorological characteristics of non-uniform underlying surfaces in the semi-arid area of Northeast China, we use a “High-Resolution Assimilation Dataset of the water-energy cycle in China (HRADC)”. The grid points of three different underlying surfaces were selected, and their meteorological elements were averaged for each type (i.e., mixed forest, grassland, and cropland). For 2009, we compared and analyzed the different components of leaf area index (LAI), soil temperature and moisture, surface albedo, precipitation, and surface energy for various underlying surfaces in Northeast China. The results indicated that the LAI of mixed forest and cropland during the summer is greater than 5 m2 m?2 and below 2.5 m2 m?2 for grassland; in the winter and spring seasons, the Green Vegetation Fraction (GVF) is below 30%. The soil temperature and moisture both vary greatly. Throughout the year, the mixed forest is dominated by latent heat evaporation; in grasslands and croplands, the sensible heat flux and the latent heat flux are approximately equal, and the GVF contributed more to latent heat flux than sensible heat flux in the summer. This study compares meteorological characteristics between three different underlying surfaces of the semi-arid area of Northeast China and makes up for the insufficiency of purely using observations for the study. This research is important for understanding the water-energy cycle and transport in the semi-arid area. 相似文献
146.
北京市持续重污染天气分析 总被引:7,自引:0,他引:7
通过对2004-2008年北京市空气持续重污染过程的统计及其对非沙尘型持续重污染天气形势的特征分析,得到以下结论:持续重污染过程具有明显的季节分布特征,主要包括春季沙尘型污染和秋冬季节非沙尘型污染;非沙尘型持续重污染过程期间多对应着大雾、轻雾、霾、烟等低能见度天气,过程后期对应的天气现象多为大风或降水天气。其中大雾天气更易引发长时间持续的空气重污染事件。非沙尘型持续重污染的天气形势特点为:高空多为纬向环流,850 hPa多为暖脊控制,地面多处于弱气压场,鞍形场型污染尤为严重。北京持续重污染多对应区域性污染。 相似文献
147.
近百年全球平均气温年际变化型态的低频变率特征 总被引:6,自引:4,他引:6
利用时间上扩展的经验正交函数(TEEOF)分析方法,对近百年全球及南北半球平均气温一年、三年、六年和十年的变化形态及其频率进行诊断,结果表明,TEEOF第一模态占总方差贡献的50%以上,各种年际振动的第一模态基本上代表了与气候变化有关的年变化型,并能反映出气温的长期趋势变化,特别是十年际的第一模态,冬季气温湿示出较强的上升趋势,相应的第一时间主分量趋势与实际温度序列的走势非常一致。全球及南北半球各时域TEEOF除第一模态及一年TEEOF的第模态外,其它特同量所表示的年际变化型态各有差异,相应主分量都与一定的年际准周期振动结构的长期变率有关。年变化型态的T^2检验表明,南半球及全球的突变时间与年平均气温单要素t检验结果差异不大,而北半球的差异明显,表明T^2检验,对具有多变量的型态突变的检测比单要素的t检验理为合理。 相似文献
148.
2000—2009年5、6月华南暖区暴雨形成系统统计分析 总被引:6,自引:5,他引:6
利用2000—2009年5月和6月的NCEP 1 °×1 °再分析资料和气象台站常规资料,对产生华南暖区暴雨的500 hPa及以下的环流特征进行统计分析,并将影响暖区暴雨的环流系统划分为三大类型,即切变线型、低涡型和偏南风风速切变辐合型(简称偏南风型)。切变线型在南海夏季风爆发前以冷式切变为主,季风爆发后以暖式切变为主;低涡型在季风爆发前的发生次数远少于季风爆发后,在低涡中心的东北-东南方向最易产生暖区暴雨;偏南风型总体以西风风速切变辐合为主,而南风风速切变辐合在季风爆发后的比例有所增加。对影响暖区暴雨的高空槽分析发现,高原槽对暖区暴雨影响明显,其次为南支槽。低涡型最易受高空槽影响。对各种类型暖区暴雨的合成分析发现,各类型暖区暴雨500 hPa高空槽的位置特点均不相同,暴雨辐合中心均在850 hPa以下的低层,副高脊线距雨区约6~8纬距是产生华南暖区暴雨的重要天气形势。 相似文献
149.
This paper uses the ARW-WRF model to carry out a numerical simulation of a warm-sector heavy rainfall event over southern China on the 22–23 May, 2014. A composite analysis method was used to analyze the evolution process and structural features of the convective cells on a convection line during this rainfall event. This analysis identified three stages: (1) Stage of activation: the equivalent potential temperature surfaces as lower layers start to bulge and form warm cells and weak vertical convective cloud towers which are subject to the impact of low-level warm moist updrafts in the rainfall sector; (2) Stage of development: the warm cells continue to bulge and form warm air columns and the convective cloud towers develop upwards becoming stronger as they rise; (3) Stage of maturity: the warm air columns start to connect with the stable layer in the upper air; the convective cloud tower will bend and tilt westward with each increasing in height, and the convection cell is characterized by a “crescent-shaped echo” above the 700hPa plane. During this stage the internal temperature of the cell is higher than the ambient temperature and the dynamic structural field is manifested as intensive vertical upward movement. The large-value centers of the northerly and westerly winds in the middle layer correspond to the warm moist center in the cells and the relatively cold center south of the warm air column. Further analysis shows that the formation of the “crescent-shaped” convective cell is associated with horizontal vorticity. Horizontal vorticity in the center and west of the warm cell experiences stronger cyclonic and anticyclonic shear transformation over time; this not only causes the original suborbicular cell echo shape to develop into a crescent-like shape, but also makes a convection line consisting of cells that develop to the northwest. 相似文献
150.
THE STUDY OF STORM RAINFALL CAUSED BY INTERACTION BETWEEN THE NON-ZONAL HIGH LEVEL JET STREAK AND TYPHOON IN THE DISTANCE 总被引:1,自引:1,他引:1
In this paper, statistics were analyzed concerning correlation between the storm rainfall far from
typhoon and non-zonal upper-level jet stream. The results show that the jet stream at 200 hPa is constantly SW
(90.2 %) during the period in which storm rainfall occurs. Rainfall area lies in the right rear regions of the jet
axes. While the storm intensifies, the jet tends to be stronger and turn non-zonal. With the MM4 model, numerical
simulation and diagnosis were carried out for Typhoon No.9711 (Winnie) on August 19 to 20, 1997.
The distant storm rainfall is tightly correlative to the jet and low-level typhoon trough. The divergence field of
jet is related to the v component. The upper level can cause the allobaric wind convergence at low level. This is
the result of the form of low-level typhoon trough and the strength of the storm. By scale analysis, it is found
that there is a branch of middle scale transverse inverse circulation in the right entrance regions behind the jet
below the 300-hPa level, which is very important to the maintenance and strengthening of storm rainfall. This
branch of inverse circulation is relative to the reinforcement of jet's non-zonal characteristics. From the field of mesoscale divergence field and non-zonal wind field, we know that the stronger symmetry caused by transverse
circulation in the two sides of the jet, rainfall’s feedback and reinforcement of jet’s non-zonal characteristics
had lead to positive feedback mechanism that was favorable of storm rainfall’s strengthening. 相似文献