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Impacts of long-range transport of aerosols on marine-boundary-layer clouds in the eastern North Atlantic

机译:气溶胶远程运输对东部大西洋海洋边界层云的影响

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Vertical profiles of aerosols are inadequately observed and poorly represented in climate models, contributing to the current large uncertainty associated with aerosol–cloud interactions. The US Department of Energy (DOE) Atmospheric Radiation Measurement (ARM) Aerosol and Cloud Experiments in the Eastern North Atlantic (ACE-ENA) aircraft field campaign near the Azores islands provided ample observations of vertical distributions of aerosol and cloud properties. Here we utilize the in situ aircraft measurements from the ACE-ENA and ground-based remote-sensing data along with an aerosol-aware Weather Research and Forecast (WRF) model to characterize the aerosols due to long-range transport over a remote region and to assess their possible influence on marine-boundary-layer (MBL) clouds. The vertical profiles of aerosol and cloud properties measured via aircraft during the ACE-ENA campaign provide detailed information revealing the physical contact between transported aerosols and MBL clouds. The European Centre for Medium-Range Weather Forecasts Copernicus Atmosphere Monitoring Service (ECMWF-CAMS) aerosol reanalysis data can reproduce the key features of aerosol vertical profiles in the remote region. The cloud-resolving WRF sensitivity experiments with distinctive aerosol profiles suggest that the transported aerosols and MBL cloud interactions (ACIs) require not only aerosol plumes to get close to the marine-boundary-layer top but also large cloud top height variations. Based on those criteria, the observations show that the occurrence of ACIs involving the transport of aerosol over the eastern North Atlantic (ENA) is about 62% in summer. For the case with noticeable long-range-transport aerosol effects on MBL clouds, the susceptibilities of droplet effective radius and liquid water content are ?0.11 and +0.14, respectively. When varying by a similar magnitude, aerosols originating from the boundary layer exert larger microphysical influence on MBL clouds than those entrained from the free troposphere.
机译:气溶胶的垂直曲线在气候模型中观察到并且在气候模型中表示差,有助于当前与气溶胶云相互作用相关的大不确定性。美国能源部(DOE)大气辐射测量(ARM)气溶胶和云实验在亚洲群岛附近的东北大西洋(ACE-ENA)飞机场活动提供了充分的气溶胶和云属性的垂直分布观察。在这里,我们利用ACE-ENA和地面遥感数据的原位飞机测量以及气溶胶感知的天气研究和预测(WRF)模型,以表征由于远程区域的远程运输而在于气溶胶评估他们对海洋边界层(MBL)云的影响。在ACE-ENA广告系列期间通过飞机测量的气溶胶和云属性的垂直曲线提供了详细的信息,揭示了运输的气溶胶和MBL云之间的物理接触。欧洲的中等地区天气预报中心预测哥白尼大气监测服务(ECMWF-CAMS)气溶胶再分析数据可以再现偏远地区气溶胶垂直轮廓的关键特征。具有独特的气溶胶型材的云解析WRF敏感性实验表明,运输的气溶胶和MBL云相互作用(ACIS)不仅需要气溶胶羽毛以接近海洋边界层顶部,而且需要大的云顶部高度变化。根据这些标准,观察结果表明,夏季,涉及东北大西洋(ENA)在东部大西洋(ENA)上运输气溶胶的ACIS的发生约为62%。对于对MBL云进行明显的远程运输气溶胶效应的情况,液滴有效半径和液体含量的敏感性分别为0.11和+ 0.14。当通过类似的幅度变化时,来自边界层的气溶胶对MBL云产生更大的微妙影响,而不是自由对流层的那些。

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