论文标题

基于船舶的评估高估了人为气溶胶的冷却效果

Ship-track-based assessments overestimate the cooling effect of anthropogenic aerosol

论文作者

Glassmeier, Franziska, Hoffmann, Fabian, Johnson, Jill S., Yamaguchi, Takanobu, Carslaw, Ken S., Feingold, Graham

论文摘要

人为气溶胶对云量变化的云层甲板反射率的影响是气候投影的主要不确定性。这项研究的重点是经常发生的非沉积层。在此制度中,通过云增强的云顶混合可以减少云量。该效应的气候相关性是有争议的,因为船舶排气似乎并没有产生这些云的数量的重大变化。通过与卫星数据相比,通过对详细数值模拟的新分析,我们表明,船舶轨道研究的结果无法推广以估计人为气溶胶的气候强迫。我们特别发现,非沉积层流对气溶胶的辐射效应的衍生敏感性高于其冷却效应高达200%。如果我们要限制层状纤维的辐射强迫,则需要考虑这种抵消变暖效果。

The effect of anthropogenic aerosol on the reflectivity of stratocumulus cloud decks through changes in cloud amount is a major uncertainty in climate projections. The focus of this study is the frequently occurring non-precipitating stratocumulus. In this regime, cloud amount can decrease through aerosol-enhanced cloud-top mixing. The climatological relevance of this effect is debated because ship exhaust does not appear to generate significant change in the amount of these clouds. Through a novel analysis of detailed numerical simulations in comparison to satellite data, we show that results from ship-track studies cannot be generalized to estimate the climatological forcing of anthropogenic aerosol. We specifically find that the ship-track-derived sensitivity of the radiative effect of non-precipitating stratocumulus to aerosol overestimates their cooling effect by up to 200%. This offsetting warming effect needs to be taken into account if we are to constrain the aerosol-cloud radiative forcing of stratocumulus.

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