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71.
72.
中国大陆1951—2005年雾与轻雾的长期变化 总被引:10,自引:1,他引:10
雾的记录有明确的天气指示意义。通过分析1951—2005年中国大陆743个地面气象站的资料, 对中国大陆雾、轻雾的长期变化趋势有如下认识:我国大陆雾日地理分布基本气候特征呈现东南部多西北部少的特点, 冬半年雾日数多夏半年少。各年代的差异在不同地区不尽一致。西南地区是我国雾日最多的地区,四川盆地一年有雾日20余天;华北平原和东北平原在冬春季节会出现严重的持续性雾天气。长江以南各省的轻雾日数明显多于长江以北地区,而且1980年代以后轻雾日有明显增加;西南地区是我国轻雾日最多的地区,四川盆地一年有轻雾日100余天。 相似文献
73.
Meteorological conditions, particularly the vertical wind field structure, have a direct influence on the PM2.5 concentrations over the Pearl River Delta (PRD). In October 2012, an exceptional air pollution event occurred in the PRD, and a high concentration of PM2.5 was registered at some stations. During days with PM2.5 air pollution, the wind speed was less than 3 m s-1 at the surface, and the vertical wind field featured a weak wind layer (WWL) with a thickness of approximately 1000 m. The mean atmospheric boundary layer height was less than 500 m during pollution days, but it was greater than 1400 m during non-pollution days. A strong negative correlation was detected between the PM2.5 concentration and the ventilation index (VI). The VI was less than 2000 m2 s?1 during PM2.5 air pollution days. Because of the weak wind, sea–land breezes occurred frequently, the recirculation factor (RF) values were small at a height of 800 m during pollution days, and the zones with the lowest RF values always occurred between the heights of 300 and 600 m. The RF values during PM2.5 pollution days were approximately 0.4 to 0.6 below a height of 800 m, reducing the transportation capacity of the wind field to only 40% to 60%. The RF and wind profile characteristics indicated that sea–land breezes were highly important in the accumulation of PM2.5 air pollution in the PRD. The sea breezes may transport pollutants back inland and may result in the peak PM2.5 concentrations at night. 相似文献
74.
75.
利用激光雷达探测分析了兰州上空的高云与气溶胶的光学参数,并用LOWTRAN7定量模拟出高云对气溶胶辐射特性的影响。结果表明,消光系数廓线与相对湿度廓线随高度的变化一致性较好,气溶胶层主要在2km以下,低层气溶胶和高云的消光系数和相对湿度较大。白天,高云的存在使云下气溶胶短波加热率减小。有云和无云时气溶胶加热率的差别在地表处最为明显,中午前后差别较大,最大为11:00的0.096K.h-1。夜间,高云的存在使云下气溶胶长波冷却率减小,在1000m以下有云和无云时气溶胶冷却率的差别小,在1000m以上差别大,最大差别出现在1500m处(02:00~04:00),为0.033K.h-1。 相似文献
76.
热带沿海近地层大气的湍流结构和谱特征 总被引:5,自引:1,他引:5
利用1990年在海南省海口市天尾村的一次观测的资料,分析了速度分量谱、湍流强度等湍流特征量。这批资料多是有云影响情况下,稳定度参数(L)与热通量(wt)没有日变化规律,但湍能、平均温度仍具有日变化规律;湍谱的基本特征与晴天天气的谱基本相似,在惯性副区接近局地各向同性,速度谱符合相似理论的“-2/3”次方规律;根据M-O相似理论,探讨了各分量湍强δi/U*(i=u,v,w)与稳定度Z/L的关系,表明各分量湍强与稳定度Z/L仍具有“1/3”次方规律,但湍强和湍流能量比一般平坦地形下垫面的大 相似文献
77.
广州地区1984年6月小阵雨的微物理结构 总被引:5,自引:0,他引:5
本文分析了广州1984年小阵雨的雨滴谱分布。指出该地区小阵雨谱型以Ⅲ型谱(多峰谱)居多,不出现Ⅰ型谱(无峰谱)。滴浓度较小而平均尺度较大,最大滴直径达6.5mm。最突出的特点是起始直径较大,小滴明显不足而大滴较多,用指数谱描述不甚理想。 此外发现,W-I关系较Z-I关系的地区变异小得多;该地小阵雨的W-I,Z-I关系可分别表示为: W=0.0569I~(0.88), Z=345I~(1.39)。 相似文献
78.
In this paper, the chlorine ions nuclei data, observed at Yongxing (Xisha Islands) during November 1987, are analyzed. The main results are:1) The average concentration of chiorine ions nuclei with dry diameters larger than 2 μm is 878 per litre and the average salt content is 105. 4μg/m3, in which special giant nuclei with dry diameters larger than 4 μm are 19O per litre. The largest dry diameter of chloride ions observed reaches 57 μm, which are larger than that observed there during the southwest summer monsoon. The spetrum type shows quasi-unimodal and exponential lapse. 2) The salt content decreases with the height over sea surface. 3) The concentrations of chlorine ions nuclei reach the maximum value at 0800 (Local time, same below). and minimum at 0200. 相似文献
79.
Wavelet analysis was applied to lidar observations to retrieve the planetary boundary layer height(PBLH)over Guangzhou from September 2013 to November 2014 over Guangzhou. Impact of the boundary effect and the wavelet scale factor on the accuracy of the retrieved PBLH has been explored thoroughly. In addition, the PBLH diurnal variations and the relationship between PM_(2.5) concentration and PBLH during polluted and clean episodes were studied. Results indicate that the most steady retrieved PBLH can be obtained when scale factor is chosen between 300-390 m. The retrieved maximum and minimum PBLH in the annual mean diurnal cycle were ~1100 m and ~650 m, respectively. The PBLH was significantly lower in the dry season than in the wet season, with the average highest PBLH in the dry season and the wet season being ~1050 m and ~1200 m respectively. Compared to the wet season, the development of PBLH in the dry season was delayed by at least one hour due to the seasonal cycle of solar radiation. Episode analysis indicated that the PBLH was ~50% higher during clean episodes than during haze episodes. The average highest PBLH in the haze episodes and clean episodes were ~800 m and ~1300 m,respectively. A significant negative correlation between PBLH and PM_(2.5) concentration(r =-0.55**) is discovered.According to China"Ambient Air Quality Standard", the PBLH values in good and slightly polluted conditions were 1/6-1/3 lower than that in excellent conditions, while the corresponding PM_(2.5) concentration were ~2-2.5 times higher. 相似文献
80.
Particle number size distribution(PNSD) between 10 nm and 20 μm were measured in the Pearl River Delta(PRD) region in winter 2011.The average particle number concentration of the nucleation mode(10-20 nm),Aitken mode(20-100 nm),accumulation mode(100 nm-1μm) and coarse mode(1-20 μm) particles were 1 552,7 470,4 012,and 19 cm-3,respectively.The volume concentration of accumulation mode particles with peak at 300 nm accounted for over 70% of the total volume concentration.Diurnal variations and dependencies on meteorological parameters of PNSD were investigated.The diurnal variation of nucleation mode particles was mainly influenced by new particle formation events,while the diurnal variation of Aitken mode particles correlated to the traffic emission and the growth process of nucleation mode particles.When the PRD region was controlled by a cold high pressure,conditions of low relative humidity,high wind speed and strong radiation are favorable for the occurrence of new particle formation(NPF) events.The frequency of occurrence of NPF events was 21.3% during the whole measurement period.Parameters describing NPF events,including growth rate(GR) and source rate of condensable vapor(Q),were slightly larger than those in previous literature.This suggests that intense photochemical and biological activities may be the source of condensable vapor for particle growth,even during winter in the PRD. 相似文献