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A numerical model of the cloud-topped planetary boundary-layer: cloud processing of aerosol particles in marine stratus

机译:云顶行星边界层的数值模型:海洋地层中气溶胶颗粒的云处理

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摘要

In a numerical study with the one-dimensional chemical microphysical stratus model CHEMISTRA the effect of stratiform clouds on aerosol particles is investigated. The microphysical part of CHEMISTRA consists of a detailed description of cloud microphysical processes by means of a joint two-dimensional particle distribution for aerosols and cloud droplets. In the chemical part of the model the particle spectrum is subdivided into three categories referring to inactivated aerosols, small and large cloud droplets. Aqueous phase chemical reactions are separately treated in the two droplet size classes. Numerical results are presented demonstfat- ing that the uptake of trace gases by cloud drops and the sulfate production yield a distinct modification of the physico-chemical microstructure of the activated aeroso1s. After cloud evaporation a local minimum evolves in the aerosol spectra separating cloud processed from interstitial aerosols. The residual aerosols have an increased mass forming a second maximum in the accumulation mode of the size distributions.
机译:在一维化学微物理层模型CHEMISTRA的数值研究中,研究了层状云对气溶胶颗粒的影响。 CHEMISTRA的微物理部分通过对气溶胶和云滴的联合二维颗粒分布,详细描述了云的微物理过程。在模型的化学部分中,粒子光谱分为三类,分别是灭活的气溶胶,大大小小的云滴。水相化学反应按两种液滴尺寸分类分别处理。数值结果表明,云滴对微量气体的吸收和硫酸盐的产生明显改变了活化气溶胶的物理化学微观结构。云团蒸发后,在气溶胶光谱中出现局部最小值,从而将处理后的云层与间隙气溶胶分开。残留的气溶胶在尺寸分布的累积模式下质量增加,形成第二个最大值。

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