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Estimating seasonal variations in cloud droplet number concentration over the boreal forest from satellite observations

机译:从卫星观测估算北方林林云液滴数集中的季节变化

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Seasonal variations in cloud droplet number concentration (NCD) in low-level stratiform clouds over the boreal forest are estimated from MODIS observations of cloud optical and microphysical properties, using a sub-adiabatic cloud model to interpret vertical profiles of cloud properties. An uncertainty analysis of the cloud model is included to reveal the main sensitivities of the cloud model. We compared the seasonal cycle in NCD, obtained using 9 yr of satellite data, to surface concentrations of potential cloud activating aerosols, measured at the SMEAR II station at Hyyti?l? in Finland. The results show that NCD and cloud condensation nuclei (CCN) concentrations have no clear correlation at seasonal time scale. The fraction of aerosols that actually activate as cloud droplet decreases sharply with increasing aerosol concentrations. Furthermore, information on the stability of the atmosphere shows that low NCD is linked to stable atmospheric conditions. Combining these findings leads to the conclusion that cloud droplet activation for the studied clouds over the boreal forest is limited by convection. Our results suggest that it is important to take the strength of convection into account when studying the influence of aerosols from the boreal forest on cloud formation, although they do not rule out the possibility that aerosols from the boreal forest affect other types of clouds with a closer coupling to the surface.
机译:通过云光学和微神经特性的云林和微神经性质的云森林覆盖云液滴数浓度(NCD)的季节变化估计使用亚绝热云模型来解释云属性的垂直剖面。包括对云模型的不确定性分析,以显示云模型的主要敏感性。我们比较在NCD季节性周期,使用9年卫星数据的获得,对潜在的云激活气溶胶的表面浓度,在在Hyyti?升涂片II站测量?在芬兰。结果表明,NCD和云凝结核(CCN)浓度在季节性时间范围内没有明确的相关性。随着云液滴的实际激活的一部分随着气溶胶浓度的增加而急剧下降。此外,关于大气稳定性的信息表明,低NCD与稳定的大气条件相关。结合这些调查结果导致得出的结论是,在北方森林上对研究的云液体激活是有限的。我们的研究结果表明,在研究北方森林的影响云层森林中的影响时,对对流的力量很重要,尽管它们不排除北方森林的气溶胶影响其他类型的云的可能性靠近表面的耦合。

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