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Effect of Relative Humidity on Arctic Aerosols

机译:相对湿度对北极气溶胶的影响

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In this paper, the authors investigated some microphysical and optical properties of arctic aerosols extracted from the data base Optical Properties of Aerosols and Clouds(OPAC) to determine the effect of hygroscopic growth at the spectral range of 0.25?m to 2.5?m and eight relative humilities (RHs) (0, 50, 70, 80, 90, 95, 98, and 99%).The microphysical properties extracted were radii, volume mix ratio, number mix ratio and mass mix ratio as a function of RH while the optical properties are scattering and absorption coefficients and asymmetric parameters. Using the microphysical properties, effective growth factors of the mixtures were determined while using optical properties enhancement parameters were determined and then parameterized using some models. We observed that the data fitted the models very well. The angstrom coefficients which determined the type of particles size distribution increases with the increase in RHs except at the delinquent point where it decreases with the increase in RHs. The mixture was determined to have bimodal type of distribution with the dominance of fine mode particles but non-spherical.
机译:在本文中,作者研究了从数据库中提取的北极气溶胶的微物理和光学特性,以确定在0.25?m至2.5?m的光谱范围和8个光谱范围内的吸湿性增长的影响相对湿度(RHs)(0、50、70、80、90、95、98和99%)。提取的微物理性质是半径,体积混合比,数量混合比和质量混合比作为RH的函数,而光学特性是散射系数和吸收系数以及不对称参数。使用微物理性质,确定混合物的有效生长因子,同时使用光学性质,确定增强参数,然后使用某些模型进行参数化。我们观察到数据非常适合模型。决定粒度分布类型的埃系数随RHs的增加而增加,除了在递减点随RHs的增加而降低的那一点之外。确定该混合物具有双峰分布类型,主要是细模颗粒,但非球形。

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