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Influences of relative humidity on aerosol optical properties and aerosol radiative forcing during ACE-Asia

机译:ACE-Asia期间相对湿度对气溶胶光学特性和气溶胶辐射强迫的影响

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In situ measurements at Gosan, South Korea, and onboard C-130 aircraft during ACE-Asia were analyzed to investigate the influence of relative humidity (RH) on aerosol optical properties and radiative forcing. The temporal variation of aerosol chemical composition at the Gosan super-site was highly dependent on the air mass transport pathways and source region. RH in the springtime over East Asia were distributed with very high spatial and temporal variation. The RH profile onboard C-130 aircraft measurements exhibits a mixed layer height of about 2km. Aerosol scattering coefficient (U,p) under ambient RH was greatly enhanced as compared with that at dry RH (RH < 40%). From the aerosol optical and radiative transfer modeling studies, we found that the extinction and scattering coefficients are greatly enhanced with RH. Single scattering albedo with RH is also sensitively changed in the longer wavelength. Asymmetry parameter (g) is gradually increased with RH although g decreases with wavelength at a given RH. Aerosol optical depth (AOD) at 550 nm and RH of 50% increased to factors 1.24, 1.51, 2.16, and 3.20 at different RH levels 70, 80, 90, and 95%, respectively. Diurnal-averaged aerosol radiative forcings for surface, TOA, and atmosphere were increased with RH because AOD was increased with RH due to hygroscopic growth of aerosol particles. This result implies that the hygroscopic growth due to water-soluble or hydrophilic particles in the lower troposphere may significantly modify the magnitude of aerosol radiative forcing both at the surface and TOA. However, the diurnal-averaged radiative forcing efficiencies at the surface, TOA, and atmosphere were decreased with increasing RH. The decrease of the forcing efficiency with RH results from the fact that increasing rate of aerosol optical depth with RH is greater than the increasing rate of aerosol radiative forcing with RH. (c) 2006 Elsevier Ltd. All rights reserved.
机译:分析了在韩国Gosan和ACE-Asia期间机载C-130飞机的原位测量,以研究相对湿度(RH)对气溶胶光学特性和辐射强迫的影响。戈山超级站点的气溶胶化学成分的时间变化高度依赖于空气质量传输路径和源区。东亚春季的相对湿度分布时空变化很大。在C-130飞机上进行的RH轮廓测量显示混合层高度约为2 km。与干RH(RH <40%)相比,在环境RH下的气溶胶散射系数(U,p)大大提高。从气溶胶的光学和辐射传递模型研究中,我们发现RH的消光和散射系数大大提高。具有RH的单散射反照率在更长的波长上也会敏感地改变。尽管g在给定的RH下随波长减小,但不对称参数(g)随RH逐渐增大。 550 nm的气溶胶光学深度(AOD)和RH分别为50%,70%,80%,90%和95%在不同RH水平下分别增加到系数1.24、1.51、2.16和3.20。 RH增加了表面,TOA和大气的日平均气溶胶辐射力,这是因为由于吸湿性气溶胶颗粒的生长,AOD随着RH的增加而增加。该结果表明,由于对流层下部的水溶性或亲水性颗粒引起的吸湿性增长可能会显着改变表面和TOA上气溶胶辐射强迫的大小。但是,随着RH的增加,地表,TOA和大气的日平均辐射强迫效率降低。相对于RH的强迫效率降低是由于以下事实:相对于RH的气溶胶光学深度增加率大于相对于RH的气溶胶辐射强迫的增加率。 (c)2006 Elsevier Ltd.保留所有权利。

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