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DING Guoan CHAN Chuenyu GAO Zhiqiu YAO Wenqing LI Yoksheung CHENG Xinghong MENG Zhaoyang YU Haiqing WONG Kamhang WANG Shufeng MIAO Qiuju 《中国科学D辑(英文版)》2005,48(Z2)
The vertical structures and their dynamical character of PM2.5 and PM10 over Beijing urban areas are revealed using the 1 min mean continuous mass concentration data of PM2.5 and PM10 at 8, 100, and 320 m heights of the meteorological observation tower of 325 m at Institute of Atmospheric Physics, Chinese Academy of Sciences (IAP CAS tower hereafter) on 10―26 August, 2003, as well as the daily mean mass concentration data of PM2.5 and PM10 and the continuous data of CO and NO2 at 8, 100 (low layer), 200 (middle layer), and 320 m (high layer) heights, in combination with the same period meteorological field observation data of the meteorological tower. The vertical distributions of aerosols observed on IAP CAS tower in Beijing can be roughly divided into two patterns: gradually and rapidly decreasing patterns, I.e. The vertical distribution of aerosols in calm weather or on pollution day belongs to the gradually decreasing pattern, while one on clean day or weak cold air day belongs to the rapidly decreasing pattern. The vertical distributive characters of aerosols were closely related with the dynamical/thermal structure and turbulence character of the atmosphere boundary layer. On the clean day, the low layer PM2.5 and PM10 concentrations were close to those at 8 m height, while the concentrations rapidly decreased at the high layer, and their values were only one half of those at 8 m, especially, the concentration of PM2.5 dropped even more. On the clean day, there existed stronger turbulence below 150 m, aerosols were well mixed, but blocked by the more stronger inversion layer aloft, and meanwhile, at various heights, especially in the high layer, the horizontal wind speed was larger, resulting in the rapid decrease of aerosol concentration, I.e. Resulting in the obvious vertical difference of aerosol concentrations between the low and high layers. On the pollution day, the concentrations of PM2.5 and PM10 at the low, middle, and high layers dropped successively by, on average, about 10% for each layer in comparison with those at 8 m height. On pollution days, in company with the low wind speed, there existed two shallow inversion layers in the boundary layer, but aerosols might be, to some extent, mixed below the inversion layer, therefore, on the pollution day the concentrations of PM2.5 and PM10 dropped with height slowly; and the observational results also show that the concentrations at 320 m height were obviously high under SW and SE winds, but at other heights, the concentrations were not correlated with wind directions. The computational results of footprint analysis suggest that this was due to the fact that the 320 m height was impacted by the pollutants transfer of southerly flow from the southern peripheral heavier polluted areas, such as Baoding, and Shijiazhuang of Hebei Province, Tianjin, and Shandong Province, etc., while the low layer was only affected by Beijing's local pollution source. The computational results of power spectra and periods preliminarily reveal that under the condition of calm weather, the periods of PM10 concentration at various heights of the tower were on the order of minutes, while in cases of larger wind speed, the concentrations of PM2.5 and PM10 at 320 m height not only had the short periods of minute-order, but also the longer periods of hour order. Consistent with the conclusion previously drawn by Ding et al., that air pollutants at different heights and at different sites in Beijing had the character of "in-phase" variation, was also observed for the diurnal variation and mean diurnal variation of PM2.5 and PM10 at various heights of the tower in this experiment, again confirming the "in-phase" temporal/spatial distributive character of air pollutants in the urban canopy of Beijing. The gentle double-peak character of the mean diurnal variation of PM2.5 and PM10 was closely related with the evident/similar diurnal variation of turbulent momentum fluxes, sensible heat fluxes, and turbulent kinetic energy at various heights in the urban canopy. Besides, under the condition of calm weather, the concentration of PM2.5 and PM10 declined with height slowly, it was 90% of 8 m concentration at the low layer, a little lesser than 90% at the middle layer, and 80% at the high layer, respectively. Under the condition of weak cold air weather, the concentration remarkably dropped with height, it was 70% of 8 m concentration at the low layer, and 20%―30% at the middle and high layers, especially the concentration of PM2.5 was even lower. 相似文献
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2011年初湖南暴雪过程的成因和数值模拟分析 总被引:1,自引:0,他引:1
利用多种观测资料及NCEP再分析资料,对2011年1月1720日湖南一次大范围暴雪过程进行了诊断分析,并使用WRF模式对其云微物理特征及降水相态转换机制进行数值模拟,旨在探讨本次强雨雪过程降水相态变化和暴雪形成及其发展成因。结果表明:乌拉尔山前部南下的冷空气与来自孟加拉湾及南海的暖湿气流在湖南长时间交汇产生锋生强迫,在静止锋区上界形成强辐合上升运动,是湖南大范围暴雪天气持续的主要原因;强烈的上升运动和持续的水汽辐合为本次暴雪过程提供了动力、水汽条件,“冷空气楔”上爬升的暖湿气流维持时间较长,是持续性大范围暴雪产生的重要热力条件;WRF模式能较好地模拟降雪量级及强降雪落区。雪粒子的产生和发展不仅与液水比含量大小有关,还与其上空冰晶的含量及分布密切相关,雪的凝华增长、冰晶向雪的自动转化和雨水与雪碰并成雪可能是本次降雪发生、发展最主要的物理过程,冰雪粒子大值中心及强上升运动区对预报强降雪带位置有较好的指示作用。 相似文献
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河流冲刷对第四纪软弱地层岸坡的地质灾害起到控制性作用。本文以磨西台地冰水堆积物岸坡为例,充分考虑河流与岸坡地质灾害之间的内在联系,基于对实测地质灾害的分析结果,采用Logistic监督分类方法,评价各环境因子(尤其是河流冲蚀特性因子)在河流岸坡稳定性评价中的作用,进而采用高相关的环境因子进行地质灾害易发性预测。研究表明,河流弯曲度、河流流量、岸坡坡度、河床宽度、岸坡宽度与地质灾害的发育相关性强,采用这些参数和Logistic模型预测的地质灾害易发性能很好的反映现状和未来地质灾害的发育特点,进而提出了磨西台地岸坡地质灾害防治的初步建议。 相似文献
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聚氨酯泡塑富集硫脲解脱-石墨炉原子吸收光谱法测定地质样品中金铂 总被引:1,自引:4,他引:1
泡沫塑料常用于富集常规地质样品中的铂族元素,而富集后往往用高温灰化法解脱,此法操作繁琐,温度过高易使铂配合物分解为王水难以提取的不溶性残渣,导致测试结果不稳定、效率低;单独使用20 g/L硫脲溶液解脱,测试结果的重现性差。本文对此方法进行改进,采用50%王水封闭溶解试样,氯化亚锡还原,聚氨酯泡塑富集,20 g/L硫脲-20%盐酸溶液解脱,石墨炉原子吸收光谱法测定金和铂。在盐酸-氯化亚锡体系中,吸附温度为20℃,振荡时间为30 min时,金和铂的回收率均在95%以上,金和铂的检出限分别为0.23 ng/g和0.39 ng/g,精密度(RSD,n=10)分别为1.8%~10.3%和1.3%~13.3%。经国家一级标准物质验证,测定值和标准值基本相符。该方法泡塑解脱时无需高温灰化,用王水多次提取,在100℃沸水浴中即可一次完成,样品处理快捷。与高温灰化法相比,提取温度大为降低,分析流程简单,显著提高了单次测样量,且干扰小、空白值低,可以满足除王水难溶的铂矿种外大部分地质样品快速测定的需要。 相似文献
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基于帕默尔干旱指数的中国春季区域干旱特征比较研究 总被引:9,自引:1,他引:9
利用全国515个站(1957-2000年)气象资料,修正计算帕默尔干旱指数(Palmer drought severy index),进行干旱区划和研究春季区域演变特征.结果表明:中国干旱变化全区一致性程度低,干旱演变的区域差别大,存在着以内蒙古高原、南岭、华北北部及长白山脉、长江中下游、黄土高原、黄淮地区、天山北部、东北平原、河西走廊、云贵高原、塔里木盆地、青藏高原等为代表的12个干旱特征区.内蒙古高原区、华北北部及长白山脉区、黄土高原区、天山北部区域、东北平原区、河西走廊及其沙漠戈壁区春季干旱指数趋势变化呈下降趋势.南岭区、长江中下游区、黄淮区域、云贵高原区、塔里木盆地区、青藏高原区春季干旱指数趋势变化呈上升趋势.中国春季干旱指数大多存在5~8年的短周期年际周期变化,12~13年、15~16年的长周年际周期变化存在于部分区域,个别区域还存在20年长周期年际周期变化.中国干旱的区域特征差别显著. 相似文献
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三危山断裂位于青藏高原北缘NW向扩展的前缘位置,其最新地震活动反映了高原北部地区的构造变形特征。文中通过遥感影像解译、野外实地调查、古地震探槽及光释光年代样品测试,对三危山断裂敦煌段的古地震活动特征开展了研究。结果表明,断裂晚更新世以来发生过2次古地震事件,事件E1发生的年代约为距今(35.1±3.7)~(36.7±4.1) ka;事件E2发生的年代约为距今(76.5±8.8)~(76.7±8.3) ka。三危山断裂晚更新世以来的垂直滑动速率为(0.03±0.01) mm/a,相应的缩短速率为(0.09±0.01) mm/a。综合前人的研究结果,认为三危山断裂的地震活动具有分段性特征,中段、东段可能具有独立破裂的能力,也存在与敦煌段发生级联破裂的特征,复发间隔约为40ka,根据经验公式估算三危山断裂可能发生的震级范围为MW7.1~7.5。 相似文献