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Characterization of the cloud microphysical and optical properties and aerosol-cloud interaction in the Arctic from in situ ground-based measurements during the CLIMSLIP-NyA campaign, Svalbard

机译:在CLIMSLIP-NyA活动期间,斯瓦尔巴特群岛进行的原地地面测量,表征了北极的云微物理和光学特性以及气溶胶-云相互作用

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摘要

This study will focus on cloud microphysical and optical characterization of three different types of episodes encountered during the ground based CLIMSLIP-NyA campaign performed in Ny-Alesund, Svalbard: the Mixed Phase Cloud (MPC), snow precipitation and Blowing Snow (BS) events. These in situ cloud measurements will be combined with aerosol measurements and air mass backtrajectory simulations to qualify and parameterize the arctic aerosol cloud interaction and to assess the influence of anthropogenic pollution transported into the Arctic.The results show a cloud bimodal distribution with the droplet mode at 10 µm and the crystal mode centered at 250 µm, for the MPC cases. The precipitation cases presents a crystal distribution centered around 350 µm with mostly of dendritic shape. The BS cases show a higher concentration but smaller crystals, centered between 150 and 200 µm, with mainly irregular crystals.A case, where aerosol properties are influenced by anthropogenic emission from Europe and East Asia, was compared to a case with local aerosol sources. These anthropogenic emissions seem to cause higher Black Carbon, aerosol and droplet concentrations, a more pronounced accumulation mode, smaller droplet sizes and a higher activation fraction F. Moreover, the activation diameter decreases as the droplet diameter increases and F increases showing that smaller particles are activated and droplets grow when the aerosol number decreases. This is in agreement with the first (Twomey) and second (Albrecht) aerosol indirect effect. The quantification of the variations of droplet concentration and size leads to (Indirect Effect) and (Nucleation Efficiency) coefficients values around 0.2 and 0.43, respectively. These values are close to those found by other studies in the arctic region which confirms these parameterizations of arctic aerosol-cloud interaction in climate models.
机译:这项研究的重点是在斯瓦尔巴群岛的Ny-Alesund进行的地面CLIMSLIP-NyA活动期间遇到的三种不同类型的事件的云微物理和光学特征:混合相云(MPC),降雪和吹雪(BS)事件。这些原位云测量将与气溶胶测量和空气质量反轨迹模拟相结合,以限定和参数化北极气溶胶云相互作用,并评估人为污染向北极输送的影响,结果表明,在液滴模式为时的云双峰分布对于MPC情况,为10μm,晶体模式为250μm。析出情况表明晶体分布集中在350μm左右,大部分呈树枝状。 BS案例显示出较高的浓度,但晶体较小,中心在150至200μm之间,主要是不规则晶体。与欧洲当地和本地气溶胶来源的案例比较,该案例的气溶胶特性受欧洲和东亚人为排放的影响。这些人为排放物似乎导致更高的黑碳,气溶胶和液滴浓度,更明显的积累模式,较小的液滴尺寸和较高的活化分数F。此外,活化直径随着液滴直径的增加而减小,而F的增加表明较小的颗粒是气溶胶数量减少时,活性被激活并且液滴生长。这与第一(Twomey)和第二(Albrecht)气溶胶间接作用是一致的。液滴浓度和大小变化的量化导致(间接效应)和(成核效率)系数值分别约为0.2和0.43。这些值接近于北极地区其他研究发现的值,这些值证实了气候模型中北极气溶胶-云相互作用的这些参数化。

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