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首页> 外文期刊>Journal of Aerosol Science >Radiative transfer simulation of dust-like aerosols: Uncertainties from particle shape and refractive index
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Radiative transfer simulation of dust-like aerosols: Uncertainties from particle shape and refractive index

机译:尘埃状气溶胶的辐射传递模拟:颗粒形状和折射率的不确定性

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摘要

The composition, particle shape, number concentration, size distribution, and spatial and temporal distributions of dust aerosols cause significant uncertainties in relevant radiative transfer simulations. The spherical particle approximation has been generally recognized to introduce errors in radiative transfer calculations involving dust aerosols. Although previous studies have attempted to quantify the effect of non-spherical particles, no consensus has been reached as to the significance of the dust aerosols non-spherical effect on flux calculations. For this study, we utilize a newly developed ultra-violet-to-far-infrared spectral database of the single-scattering properties of tri-axial ellipsoidal, mineral dust-like aerosols to study the non-spherical effect on radiative forcing. The radiance and flux differences between the spherical and ellipsoidal models are obtained for various refractive indices and particle size distributions. The errors originating from using the spherical model and the uncertainties in the refractive indices are quantified at both the top and bottom of the atmosphere. The dust non-spherical effect on the net flux and heating rate profile is obtained over the entire range of the solar spectrum. The particle shape effect is found to be related to the dust optical depth and the surface albedo and can be an important uncertainty source in radiative transfer simulation. The particle shape effect is largest over water surfaces and can cause up to a 30% difference in dust forcing at the top of the atmosphere.
机译:尘埃气溶胶的成分,颗粒形状,数量浓度,尺寸分布以及时空分布在相关的辐射传递模拟中造成了很大的不确定性。球形颗粒近似已被普遍认为会在涉及粉尘气溶胶的辐射传递计算中引入误差。尽管先前的研究试图量化非球形颗粒的影响,但关于粉尘气溶胶非球形影响对通量计算的重要性尚未达成共识。在这项研究中,我们利用新开发的紫外至远红外光谱数据库,对三轴椭圆形,矿物粉尘状气溶胶的单散射特性进行了研究,研究了非球形对辐射强迫的影响。对于各种折射率和粒径分布,可以获得球形和椭圆形模型之间的辐射和通量差异。使用球形模型产生的误差和折射率的不确定性在大气的顶部和底部都被量化。在太阳光谱的整个范围内,获得了粉尘对净通量和加热速率分布的非球形影响。发现颗粒形状效应与尘埃光学深度和表面反照率有关,并且可能是辐射传递模拟中的重要不确定性来源。颗粒形状的影响在水面上最大,并且可能导致大气顶部的灰尘强迫差异高达30%。

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