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Angstrom exponent and bimodal aerosol size distributions

机译:埃指数和双峰气溶胶粒径分布

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Power laws have long been used to describe the spectral dependence of aerosol extinction, and the wavelength exponent of the aerosol extinction law is commonly referred to as the Angstrom exponent. The Angstrom exponent is often used as a qualitative indicator of aerosol particle size, with values greater than 2 indicating small particles associated with combustion byproducts, and values less than 1 indicating large particles like sea salt and dust. In this study, we investigate the relationship between the Angstrom exponent and the mode parameters of bimodal aerosol size distributions using Mie theory calculations and Aerosol Robotic Network (AERONET) retrievals. We find that Angstrom exponents based upon seven wavelengths (0.34, 0.38, 0.44, 0.5, 0.67, 0.87, and 1.02 μm) are sensitive to the volume fraction of aerosols with radii less then 0.6 μm but not to the fine mode effective radius. The Angstrom exponent is also known to vary with wavelength, which is commonly referred to as curvature; we show how the spectral curvature can provide additional information about aerosol size distributions for intermediate values of the Angstrom exponent. Curvature also has a significant effect on the conclusions that can be drawn about two-wavelength Angstrom exponents; long wavelengths (0.67, 0.87 μm) are sensitive to fine mode volume fraction of aerosols but not fine mode effective radius, while short wavelengths (0.38, 0.44 μm) are sensitive to the fine mode effective radius but not the fine mode volume fraction.
机译:幂律早已被用来描述气溶胶消光的光谱依赖性,并且气溶胶消光定律的波长指数通常被称为埃斯通指数。埃指数通常用作气溶胶粒径的定性指标,其值大于2表示与燃烧副产物相关的小颗粒,值小于1表示大颗粒,如海盐和粉尘。在这项研究中,我们使用Mie理论计算和气溶胶机器人网络(AERONET)检索来研究Angstrom指数与双峰气溶胶尺寸分布的模式参数之间的关系。我们发现基于七个波长(0.34、0.38、0.44、0.5、0.67、0.87和1.02μm)的埃指数对半径小于0.6μm的气溶胶体积分数敏感,但对精细模式有效半径不敏感。众所周知,埃指数也随波长而变化,通常称为曲率。我们展示了光谱曲率如何为埃斯特罗姆指数的中间值提供有关气溶胶尺寸分布的其他信息。曲率对可以得出的关于两波长埃指数的结论也有重要影响。长波长(0.67,0.87μm)对气溶胶的精细模式体积分数敏感,但对精细模式有效半径不敏感,而短波长(0.38,0.44μm)对精细模式有效半径敏感,对精细模式有效半径敏感。

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