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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Aerosol vertical mass flux measurements during heavy aerosol pollution episodes at a rural site and an urban site in the Beijing area of the North China Plain
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Aerosol vertical mass flux measurements during heavy aerosol pollution episodes at a rural site and an urban site in the Beijing area of the North China Plain

机译:在农村遗址和北京地区的北京地区的大型气溶胶污染发作期间气溶胶垂直质量磁通量测量

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Due to excessive anthropogenic emissions, heavy aerosol pollution episodes (HPEs) often occur during winter in the Beijing–Tianjin–Hebei (BTH) area of the North China Plain. Extensive observational studies have been carried out to understand the causes of HPEs; however, few measurements of vertical aerosol fluxes exist, despite them being the key to understanding vertical aerosol mixing, specifically during weak turbulence stages in HPEs. In the winter of 2016 and the spring of 2017 aerosol vertical mass fluxes were measured by combining large aperture scintillometer (LAS) observations, surface PM2.5 and PM10 mass concentrations, and meteorological observations, including temperature, relative humidity (RH), and visibility, at a rural site in Gucheng (GC), Hebei Province, and an urban site at the Chinese Academy of Meteorological Sciences (CAMS) in Beijing located 100km to the northeast. These are based on the light propagation theory and surface-layer similarity theory. The near-ground aerosol mass flux was generally lower in winter than in spring and weaker in rural GC than in urban Beijing. This finding provides direct observational evidence for a weakened turbulence intensity and low vertical aerosol fluxes in winter and polluted areas such as GC. The HPEs included a transport stage (TS), an accumulative stage (AS), and a removal stage (RS). During the HPEs from 25 to 31?January?2017, in Beijing, the mean mass flux decreased by 51% from 0.0049mgm?2s?1 in RSs to 0.0024mgm?2s?1 in the TSs. During the ASs, the mean mass flux decreased further to 0.00087mgm?2s?1, accounting for approximately one-third of the flux in the TSs. A similar reduction from the TSs to ASs was observed in the HPE from 16 to 22?December?2016 in GC. It can be seen that from the TS to the AS, the aerosol vertical turbulent flux decreased, but the aerosol particle concentration within the surface layer increased, and it is inferred that in addition to the contribution of regional transport from upwind areas during the TS, suppression of vertical turbulence mixing confining aerosols to a shallow boundary layer increased accumulation.
机译:由于过度的人为排放,北京天津 - 河北(BTH)地区的冬季,冬季冬季冬季风暴污染事件(HPE)经常出现。已经进行了广泛的观察研究,以了解HPE的原因;然而,尽管它们是了解垂直气溶胶混合的关键,但在HPE中的弱湍流阶段,仍存在垂直气溶胶助熔剂的术语。 2016年冬天和2017年春天通过组合大型孔径闪烁计(LAS)观察,表面PM2.5和PM10质量浓度,以及气象观察,包括温度,相对湿度(RH)和能见度来测量气溶胶垂直质量通量。 ,在河北省古城(GC)的农村遗址,以及中国气象科学院(CAMS)的城市网站,北京位于东北100公里。这些基于光传播理论和表面层相似理论。近乎磨碎的气溶胶质量助熔剂在冬季较低,而不是在北京市城市农村春季和较弱。该发现提供了直接的观察证据,用于冬季和污染等冬季和污染等污染区域的湍流强度和低垂直气溶胶助熔剂。 HPE包括传输阶段(TS),累积阶段(AS)和去除阶段(RS)。在惠普在25到31岁以下?2017年1月份,在北京,平均质量磁通量从0.0049mgm的均值减少了51%?2s?1以0.0024mgm?2s?1在ts。在屁股期间,平均质量通量进一步降至0.00087mgm?2s?1,占TSS中的磁通量的约三分之一。在HPE中,从16到22日观察到从TSS与AS的类似减少?2016年12月在GC中。可以看出,从TS到AS,气溶胶垂直湍流通量降低,但是表面层内的气溶胶颗粒浓度增加,并且还推断出在TS期间从逆风区域的区域运输的贡献之外,抑制垂直湍流混合将气溶胶混合到浅边界层增加的积累。

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