双月刊

ISSN 1006-9895

CN 11-1768/O4

天山地区夏季大气气溶胶粒径分布和云凝结核活化特征
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南京信息工程大学

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西北人工影响天气项目(ZQCR18211),中国气象局西北区域人影建设研究试验项目(RYSY201902)


Characteristics of Aerosol Size Distribution and Cloud Condensation Nuclei Activation During the Summer in The Mountain Tianshans
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Nanjing University of Information Science and Technology

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    摘要:

    本研究于2019年8月4-25日使用气溶胶宽范围粒径谱仪和云凝结核计数器观测获得了新疆中天山地区气溶胶和云凝结核(CCN)数浓度数据,结合气象要素资料和HYSPLIT模型,分析了CCN和气溶胶粒径分布特征及其影响因素。结果表明:在观测期间,天山气溶胶数浓度均值为3607±4105cm-3,爱根核模态粒子占比最高(64.76%)。CCN数浓度在0.1%、0.2%、0.4%、0.6%和0.8%过饱和度下的均值分别为185±185cm-3、648±345cm-3、1578±1045cm-3、2077±1417cm-3和2408±1657cm-3。气溶胶数浓度平均谱分布呈单峰型,峰值粒径位于29.5nm。气溶胶数浓度日变化在08:00(北京时间,下同)、17:00,20:00出现峰值,主要受边界层高度日变化、山谷风和排放源等影响。不同模态气溶胶粒子数浓度日变化不同,爱根核模态粒子呈双峰型,积聚模态粒子呈三峰型,而核模态粒子数浓度日变化呈单峰型可能与新粒子生成有关。CCN活化谱拟合结果为N=3111S0.896(S为过饱和度,N为过饱和度S下CCN数浓度),属于清洁大陆型特征。CCN数浓度日变化在08:00、18:00和21:00出现峰值。新粒子生成事件有利于天山地区CCN数浓度的增加,在0.1%、0.2%、0.4%、0.6%和0.8%过饱和度下新粒子生成事件天CCN平均数浓度分别比非新粒子生成事件天高13%、18%、25%、22%和20%。相对湿度(RH)对核模态粒子数浓度影响较大, 对其他模态粒子数浓度影响较小,随着RH的增加,气溶胶谱分布向大粒径方向偏移。当RH>60%时,气溶胶及CCN数浓度随RH增加均出现减少的趋势。由于地形与山谷风的影响,偏北风与偏东风下气溶胶和CCN数浓度较高。天山气团主要有西方气团(占比29.2%)、西北气团(29.3%)、东北气团(27.0%)和南方气团(14.5%)四类。由于气团来向和移动路径的不同、以及北方城市带的影响,来自天山北面的东北气团气溶胶数浓度最大,为5449±3793cm-3,南方气团最低,为1971±2087cm-3。东北气团各过饱和度下CCN数浓度均较高,比最低的南方气团高100%-150%。

    Abstract:

    To analyze the characteristics of cloud condensation nodules (CCN) and aerosol particle size distribution and their influencing factors in the Middle Tianshan region of Xinjiang, aerosol and CCN number concentration data were measured using an aerosol wide-range particle size spectrometer and a Cloud Condensation Nodule Counter from August 4–25, 2019, and combined with meteorological element data and the HYSPLIT model for comprehensive analysis. The results show that during the observation period, the mean value of aerosol number concentration in Tianshan was 3607±4105cm-3, with the highest percentage of Aegean nuclear mode particles (64.76%). The mean values of CCN number concentration at 0.1%, 0.2%, 0.4%, 0.6% and 0.8% supersaturation were 185±185cm-3, 648±345cm-3,1576±1045cm-3, 2077±1417cm-3 and 2408±1657cm-3, respectively. The average spectral distribution of aerosol number concentration showed a unimodal distribution with peak particle size located at 29.5 nm. The diurnal variation of aerosol number concentration peaked at 08:00 (Beijing Time, the same below), 17:00 and 20:00, which was mainly affected by the diurnal variation of boundary-layer height, mountain-valley wind, emission sources, and other factors. The aerosol particles in the Tianshan mountains during summer were found to exhibit different modes of distribution. The Aitken mode particles displayed a bimodal distribution, while the accumulation mode particles had a trimodal distribution. The number concentration of nuclear mode particles showed a unimodal diurnal variation, which may be attributed to new particle formation. The CCN activation spectrum fitting result is N=3111S0.896 (N is the CCN number concentration at the supersaturation S), which is a clean continental type feature. The diurnal variation of CCN number concentration peaked at 08:00, 18:00 and 21:00. New particle formation (NPF) is beneficial to the increase of CCN number concentration at the mountain Tianshan. Under the supersaturation of 0.1%, 0.2%, 0.4%, 0.6% and 0.8%, the average concentration of CCN in NPF day is 13%, 18%, 25%, 22% and 20% higher than that in the non-NPF day, respectively. The relative humidity (RH) has a greater impact on the concentration of nucleation mode particles and a smaller impact on the concentration of other mode particles. As RH increases, the aerosol size distribution shifts towards larger particle sizes. When RH>60%, the number concentration of aerosol and CCN decreased with increasing RH. The aerosol and CCN number concentrations are higher under northerly and easterly winds due to the influence of topography and valley winds. There are four main types of air masses in Tianshan: western (29.2%), northwestern (29.3%), northeastern (27.0%), and southern (14.5%). The aerosol number concentration of the northeastern air mass from the northern Tianshan Mountains is the highest at 5449±3793cm-3 and the lowest at 1971±2087cm-3 due to the different direction and movement path of the air masses and the influence of the northern urban zone. The northeastern air mass has higher CCN number concentrations at all supersaturation levels, which are 100%-150% higher than the lowest southern air mass.

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  • 收稿日期:2023-03-08
  • 最后修改日期:2023-09-11
  • 录用日期:2023-09-15
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