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Calculating the aerosol asymmetry factor based on measurements from the humidified nephelometer system

机译:基于潮湿的浊度计系统的测量来计算气溶胶不对称因子

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The aerosol asymmetry factor (g) is one of the most important factors for assessing direct aerosol radiative forcing. However, little attention has been paid to the measurement and parameterization of g. In this study, the characteristics of g are studied based on field measurements over the North China Plain (NCP) using the Mie scattering theory. The results show that calculated g values for dry aerosol can vary over a wide range (between 0.54 and 0.67). Furthermore, when ambient relative humidity (RH) reaches 90%, g is significantly enhanced by a factor of 1.2 due to aerosol hygroscopic growth. For the first time, a novel method of calculating g based on measurements from the humidified nephelometer system is proposed. This method can constrain the uncertainty of g to within 2.56% for dry aerosol populations and 4.02% for ambient aerosols, providing that aerosol hygroscopic growth is taken into account. Sensitivity studies show that aerosol hygroscopicity plays a vital role in the accuracy of predicting g.
机译:气溶胶不对称因子(G)是评估直接气溶胶辐射强制的最重要因素之一。但是,对于G的测量和参数化,已经注意到了很少的关注。在这项研究中,使用MIE散射理论基于北中国平原(NCP)的现场测量来研究G的特征。结果表明,所计算的干气溶胶的G值可以在宽范围内(0.54和0.67之间)变化。此外,当环境相对湿度(RH)达到90%时,由于气溶胶吸湿生长,G值显着增强了1.2因子。首次提出了一种基于来自加湿尼触切计系统的测量来计算G的新方法。该方法可以将G至2.56%内的不确定性约占干燥气溶胶种群的2.56%,对于环境气溶胶4.02%,提供了曝光气溶胶吸湿性生长。敏感性研究表明,气溶胶吸湿性在预测G的准确性中起着至关重要的作用。

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