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Solar radiometer sensing of multi-year aerosol features over a tropical urban station: direct-Sun and inversion products

机译:多年气雾剂的太阳能辐射计对热带城市站的特点:直连 - 太阳和反演产品

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The AErosol RObotic NETwork (AERONET) is the most developed ground-based network for aerosol remote sensing and has been playing a significant role not only in monitoring air quality for protecting human health but also in assessing the radiative budget of our planet Earth. In this paper, we report the direct-Sun and inversion products, comprising of spectral variation of aerosol optical depth (AOD), associated ?ngstr?m exponent (AE), fine- and coarse-mode aerosol fractions, aerosol size distribution (ASD), refractive index (RI), asymmetry parameter (AP), single scattering albedo (SSA), aerosol radiative forcing (ARF) and columnar concentration of gas constituents such as water vapor (H2O), obtained from a Cimel Sun–sky radiometer, functioning in Pune, India, under the AERONET program since October 2004. These long-term measurements carried out from 2005 to 2015 could serve as an urban aerosol optical long-term average or climatology. The AOD long-term variations at all wavelengths, considered in the study, exhibited an increasing trend, implying year-to-year enhancement in aerosol loading. The mean seasonal variations in AOD from cloud-free days indicated greater values during the monsoon season, revealing dominance of hygroscopic aerosol particles over the station. Contribution by different aerosol types to AOD has also been deduced and discussed, and dominance of a mixed type of aerosols (44.85%) found, followed by combination of biomass burning and urban industrial aerosols (22.57%) compared to other types of aerosols during the study period. The long-term datasets, derived aerosol and trace gas products play a significant role in understanding aerosol climate forcing, trends and evaluation of regional air pollution and validation of aerosol transport models over the study region.
机译:气溶胶机器人网络(AERONET)是最开发的基于气溶胶遥感的地面网络,并且不仅在监测保护人类健康的空气质量方面并在评估我们星球地球的辐射预算方面发挥了重要作用。在本文中,我们报告了直接阳光和反转产物,包括气溶胶光学深度(AOD)的光谱变异,相关的?NgstrΔM指数(AE),细小和粗模式气溶胶分数,气溶胶尺寸分布(ASD ),折射率(RI),不对称参数(AP),单散射Albedo(SSA),气溶胶辐射强制(ARF)和柱状浓度的气体成分,如水蒸气(H2O),从CIMEL SUN-SKY辐射计获得,自2004年10月以来,印度浦那的运作。从2005年到2015年开展的这些长期次数可以作为城市气溶胶光学长期平均或气候学。在研究中考虑的所有波长的AOD长期变化表现出越来越大的趋势,暗示了气溶胶荷载荷的年度迄今为止。 AOD的平均季节变化来自无云天的季节性在季风季节中表现出更大的值,揭示了在车站上吸湿气溶胶颗粒的主导地位。还推断出并讨论了不同气溶胶类型对AOD的贡献,并讨论了混合类型的气溶胶(44.85%)的优势,其次是与其他类型的气溶胶相比,生物量燃烧和城市工业气溶胶组合(22.57%)学习时段。长期数据集,衍生的气溶胶和痕量气体产品在了解气溶胶气候迫使,区域空气污染和对研究区域气溶胶运输模式的验证方面发挥着重要作用。

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