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The Influence of Aerosols on the Shortwave Cloud Radiative Forcing from North Pacific Oceanic Clouds: Results from the Cloud Indirect Forcing Experiment (CIFEX)

机译:气溶胶对北太平洋大洋云短波云辐射强迫的影响:云间接强迫实验(CIFEX)的结果

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摘要

Aerosols over the Northeastern Pacific Ocean enhance the cloud drop number concentration and reduce the drop size for marine stratocumulus and cumulus clouds. These microphysical effects result in brighter clouds, as evidenced by a combination of aircraft and satellite observations. In-situ measurements from the Cloud Indirect Forcing Experiment (CIFEX) indicate that the mean cloud drop number concentration in low clouds over the polluted marine boundary layer is greater by 53/cu cm compared to clean clouds, and the mean cloud drop effective radius is smaller by 4 microns. We link these in-situ measurements of cloud modification by aerosols, for the first time, with collocated satellite broadband radiative flux observations from the Clouds and the Earth's Radiant Energy System (CERES) to show that these microphysical effects of aerosols enhance the top-of-atmosphere cooling by -9.9+/-4.3 W/sq m for overcast conditions.
机译:东北太平洋上空的气溶胶提高了云滴数的浓度,并减小了海洋平流层积云和积云的液滴大小。这些微物理效应会导致云层变亮,如飞机和卫星观测结果所证明的那样。来自云间接强迫实验(CIFEX)的现场测量表明,与被污染的海洋边界层相比,被污染的海洋边界层上低云中的平均云滴数浓度比清洁云高53 / cu cm,并且平均云滴有效半径为缩小4微米。我们首次将这些由气溶胶引起的云变质的原位测量与来自云和地球辐射能系统(CERES)的卫星宽带辐射通量观测并置在一起,以表明这些气溶胶的微物理效应增强了-在阴天条件下,大气冷却速度为-9.9 +/- 4.3 W / sq m。

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