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首页> 外文期刊>Annales Geophysicae >Temporal heterogeneity in aerosol characteristics and the resulting radiative impact at a tropical coastal station - Part 1: Microphysical and optical properties
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Temporal heterogeneity in aerosol characteristics and the resulting radiative impact at a tropical coastal station - Part 1: Microphysical and optical properties

机译:热带沿海站气溶胶特征的时间异质性及其所产生的辐射影响第1部分:微物理和光学特性

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In Part 1 of this two-part paper, we present the results of extensive and collocated measurements of the columnar and near-surface (in the well mixed region) properties of atmospheric aerosol particles at a tropical coastal location, Trivandrum (8.55° N; 76.97° E), located close to the southwest tip of Indian peninsula. These are used to evolve average, climatological pictures of the optical and micro-physical properties and to delineate the distinct changes associated with the contrasting monsoon seasons as well as the transition from one season to the other. Our observations show a dramatic change in the columnar aerosol optical depth (AOD) spectra, being steep during winter monsoon season (WMS, months of December through March) and becoming quite flat during summer monsoon season (SMS, June through September). The derived Aengstroem exponent (α) decreases from a mean value of 1.1 ± 0.03 in WMS to 0.32 ± 0.02 in SMS, signifying a change in columnar aerosol size spectrum from an accumulation mode dominance in WMS to a coarse mode dominance in SMS. The composite aerosols near the surface follow suit with the share of the accumulation mode to the total mass concentration decreasing from ~ 70% to 34% from WMS to SMS. The overall mass burden also decreases in tandem. The changes in α are well correlated to those in the accumulation fraction of the mass concentration. Long-term measurements of the concentration of aerosol black carbon (BC), show prominent annual variations, with its mean value decreasing from as high as 6 μg m~(-3) in WMS to 2 μg m~(-3) in SMS. Correspondingly, its mass mixing ratio to the composite aerosols comes down from 11 % to 4 %. The changes in AOD and α are significantly positively correlated to those of BC concentration. The columnar properties are, in general well associated with the features near the surface. The implications of these changes to the optical properties and single scattering albedo and the resulting impact on direct radiative forcing are examined in the companion paper (Part 2).
机译:在这个由两部分组成的文章的第1部分中,我们介绍了在热带沿海地区Trivandrum(8.55°N; 76.97°E),位于印度半岛西南端附近。这些被用来发展光学和微观物理特性的平均气候图像,并描绘出与季风季节相反以及从一个季节过渡到另一个季节相关的明显变化。我们的观察结果表明,柱状气溶胶光学深度(AOD)光谱发生了巨大变化,在冬季季风季节(WMS,从12月到3月的几个月)变陡,而在夏季季风季节(SMS,从6月到9月)变得很平坦。推导的Aengstroem指数(α)从WMS中的平均值1.1±0.03降低到SMS中的0.32±0.02,这表明柱状气溶胶尺寸谱从WMS中的累积模式优势变为SMS中的粗模式优势。从WMS到SMS,地表附近的复合气溶胶跟着累积模式,占总质量浓度的比例从〜70%降低到34%。总的质量负担也随之减少。 α的变化与质量浓度的累积分数的变化密切相关。长期测量气溶胶黑碳(BC)的浓度显示出显着的年度变化,其平均值从WMS中的6μgm〜(-3)降低到SMS中的2μgm〜(-3) 。相应地,其与复合气溶胶的质量混合比从11%降低到4%。 AOD和α的变化与BC浓度显着正相关。通常,柱状性质与表面附近的特征良好相关。这些变化对光学特性和单散射反照率的影响以及对直接辐射强迫的影响在第二篇论文中进行了研究。

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