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Optical properties of the South Asian winter haze at a tropical coastal site in India

机译:印度热带沿海地区南亚冬季的光学特性烟霾

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Every year during the winter and pre-monsoon periods most of the Indian peninsula, Bay of Bengal and the adjoining Indian Ocean are affected by a polluted regional haze, known as the South Asian Winter Haze (SAWH). This article is the first of a series of three papers collectively anticipated at the central idea of retrieving aerosol component type and effective radius of the SAWH by incorporating experimental data of ground-based solar radiometer into Mie theory, and validation by collocated in-situ measurements. The work presented in this paper provides an approach to retrieve optical depths and their spectral curvature for SAWH at a tropical coastal station, Visakhapatnam (17.7~°N, 83.3~°E). A dataset comprised of 92 wintertime atmospheric optical depths are obtained from spectral extinction measurements of direct solar flux by means of a Multi-Wavelength Solar Radiometer during the period of October 2002 to February 2004. The inter-channel correlations established a linear relation and the airmass conditions specific to this dataset suggested a two-component linear model; the stable and variable components of which are analysed to obtain the mentioned optical parameters. Results indicate that the spectral curvature is best represented by a Lorentz model with a central wavelength of 0.40425 ± 0.02945 urn, a width of 0.40382 ± 0.10253 μm, a constant of 0.92623 ± 0.33793, and a wavelength independent component of 0.95778 ± 0.15678. Resonance-like structure of the obtained spectral curvature resembles wavelength dependent extinction characteristic of absorbing soot particles; thereby supports the key findings from INDOEX campaign.
机译:每年冬季和季风前期间,印度半岛,孟加拉湾和毗连的印度洋大部分地区都受到被污染的区域性霾的影响,该地区性霾被称为南亚冬季霾(SAWH)。本文是通过将地面太阳辐射计的实验数据纳入Mie理论并通过并置现场测量进行验证来检索SAWH的气溶胶成分类型和有效半径这一中心思想的三篇论文中的第一篇。本文提出的工作提供了一种在热带沿海站点维沙卡帕特南(17.7〜°N,83.3〜°E)的SAWH的光学深度及其光谱曲率的获取方法。在2002年10月至2004年2月期间,利用多波长太阳辐射计从直接太阳通量的光谱消光测量中获得了由92个冬季大气光学深度组成的数据集。通道间相关建立了线性关系和气团此数据集的特定条件建议采用两成分线性模型;分析其稳定和可变成分以获得上述光学参数。结果表明,光谱光谱曲率最好用Lorentz模型表示,中心波长为0.40425±0.02945 um,宽度为0.40382±0.10253μm,常数为0.92623±0.33793,与波长无关的分量为0.95778±0.15678。所得光谱曲率的共振状结构类似于吸收烟灰颗粒的波长相关的消光特性。从而支持INDOEX活动的主要发现。

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