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首页> 外文期刊>Atmospheric chemistry and physics >Droplet inhomogeneity in shallow cumuli: the effects of in-cloud location and aerosol number concentration
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Droplet inhomogeneity in shallow cumuli: the effects of in-cloud location and aerosol number concentration

机译:浅层水液中的液滴不均匀性:云中位置和气溶胶数浓度的影响

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摘要

Aerosol–cloud interactions are complex, including albedo and lifetime effects that cause modifications to cloud characteristics. With most cloud–aerosol interactions focused on the previously stated phenomena, there have been no in situ studies that focus explicitly on how aerosols can affect large-scale (centimeters to tens of meters) droplet inhomogeneities within clouds. This research therefore aims to gain a better understanding of how droplet inhomogeneities within cumulus clouds can be influenced by in-cloud droplet location (cloud edge vs. center) and the surrounding environmental aerosol number concentration. The pair-correlation function (PCF) is used to identify the magnitude of droplet inhomogeneity from data collected on board the Center for Interdisciplinary Remotely Piloted Aircraft Studies (CIRPAS) Twin Otter aircraft, flown during the 2006 Gulf of Mexico Atmospheric Composition and Climate Study (Go- MACCS). Time stamps (at 10~(-4) m spatial resolution) of cloud droplet arrival times were measured by the Artium Flight phase-Doppler interferometer (PDI). Using four complete days of data with 81 non-precipitating cloud penetrations organized into two flights of low-pollution (L1, L2) and high-pollution (H1, H2) data shows enhanced inhomogeneities near cloud edge as compared to cloud center for all four cases. Low-pollution clouds are shown to have enhanced overall inhomogeneity, with flight L2 being solely responsible for this enhanced inhomogeneity. Analysis suggests cloud age plays a larger role in the amount of inhomogeneity experienced than the aerosol number concentration, with dissipating clouds showing increased inhomogeneities as compared to growing or mature clouds. Results using a single, vertically developed cumulus cloud demonstrate enhanced droplet inhomogeneity near cloud top as compared to cloud base.
机译:气溶胶云相互作用是复杂的,包括对云特征的修改的反照和寿命效应。对于大多数云气溶胶相互作用,专注于先前陈述的现象,没有原位研究,明确关注气溶胶如何影响大规模(厘米到数十米)云层内的液滴不均匀性。因此,这项研究旨在更好地了解云云中的液压内的液滴失质性如何受到云中的液滴位置(云边缘与中心)和周围环境气溶胶数浓度的影响。该对相关函数(PCF)用于识别从跨学科远程飞行员研究(CIRPAS)双水獭飞机的中央中心收集的数据的液滴不均匀程度,在2006年墨西哥大气组成和气候研究中飞行( GO-MACCS)。云液滴到达时间的时间戳(在10〜(-4)米空间分辨率)由Artium飞行相位多普勒干涉仪(PDI)测量。使用四个完整的数据数据,其中81个非沉淀的云穿透组织成两种飞行的低污染(L1,L2)和高污染(H1,H2)数据显示,与所有四个的云中心相比,云边缘附近的增强的不均匀性。案件。低污染云显示出具有增强的整体不均匀性,飞行L2仅对这种增强的不均匀性负责。分析表明云年龄在比气溶胶数量浓度的不均匀性的量起到更大的作用,而与生长或成熟的云相比,散热云显示出增加的不均匀性。与云底座相比,使用单个垂直显影的积云云显示云顶附近的增强液滴不均匀性。

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