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增加的气溶胶可通过辐射途径逆转水云中的Twomey效应。

Increased aerosols can reverse Twomey effect in water clouds through radiative pathway.

作者信息

Khatri Pradeep, Hayasaka Tadahiro, Holben Brent N, Singh Ramesh P, Letu Husi, Tripathi Sachchida N

机构信息

Center for Atmospheric and Oceanic Studies, Tohoku University, Sendai, Japan.

National Aeronautics and Space Administration, Goddard Space Flight Center, Greenbelt, USA.

出版信息

Sci Rep. 2022 Nov 30;12(1):20666. doi: 10.1038/s41598-022-25241-y.

Abstract

Aerosols play important roles in modulations of cloud properties and hydrological cycle by decreasing the size of cloud droplets with the increase of aerosols under the condition of fixed liquid water path, which is known as the first aerosol indirect effect or Twomey-effect or microphysical effect. Using high-quality aerosol data from surface observations and statistically decoupling the influence of meteorological factors, we show that highly loaded aerosols can counter this microphysical effect through the radiative effect to result both the decrease and increase of cloud droplet size depending on liquid water path in water clouds. The radiative effect due to increased aerosols reduces the moisture content, but increases the atmospheric stability at higher altitudes, generating conditions favorable for cloud top entrainment and cloud droplet coalescence. Such radiatively driven cloud droplet coalescence process is relatively stronger in thicker clouds to counter relatively weaker microphysical effect, resulting the increase of cloud droplet size with the increase of aerosol loading; and vice-versa in thinner clouds. Overall, the study suggests the prevalence of both negative and positive relationships between cloud droplet size and aerosol loading in highly polluted regions.

摘要

在固定液态水路径条件下,气溶胶通过随着气溶胶增加而减小云滴大小,在调节云特性和水文循环中发挥重要作用,这被称为第一气溶胶间接效应或Twomey效应或微物理效应。利用来自地面观测的高质量气溶胶数据并统计解耦气象因素的影响,我们表明,高负荷气溶胶可通过辐射效应抵消这种微物理效应,导致水云中云滴大小根据液态水路径出现减小和增大的情况。气溶胶增加导致的辐射效应降低了水汽含量,但增加了较高海拔处的大气稳定性,产生有利于云顶夹卷和云滴合并的条件。这种辐射驱动的云滴合并过程在较厚云层中相对较强,以抵消相对较弱的微物理效应,导致云滴大小随着气溶胶负荷增加而增大;而在较薄云层中情况相反。总体而言,该研究表明在高污染地区云滴大小和气溶胶负荷之间同时存在负相关和正相关关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4675/9712532/f54279579c2d/41598_2022_25241_Fig1_HTML.jpg

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