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Space lidar observations constrain longwave cloud feedback

机译:太空激光雷达观测约束长波云反馈

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摘要

Some of the most challenging questions in atmospheric science relate to how clouds will respond as the climate warms. On centennial scales, the response of clouds could either weaken or enhance the warming due to greenhouse gas emissions. Here we use space lidar observations to quantify changes in cloud altitude, cover, and opacity over the oceans between 2008 and 2014, together with a climate model with a lidar simulator to also simulate these changes in the present-day climate and in a future, warmer climate. We find that the longwave cloud altitude feedback, found to be robustly positive in simulations since the early climate models and backed up by physical explanations, is not the dominant longwave feedback term in the observations, although it is in the model we have used. These results suggest that the enhanced longwave warming due to clouds might be overestimated in climate models. These results highlight the importance of developing a long-term active sensor satellite record to reduce uncertainties in cloud feedbacks and prediction of future climate.
机译:大气科学中一些最具挑战性的问题涉及随着气候变暖云将如何响应。在百年尺度上,由于温室气体的排放,云的反应可能会减弱或加剧变暖。在这里,我们使用太空激光雷达观测来量化2008年至2014年之间海洋上空的云层高度,覆盖率和不透明度的变化,并结合带有激光雷达模拟器的气候模型来模拟当今和未来的气候变化,气候变暖。我们发现,长波云高度反馈自从早期的气候模型以来就在模拟中被证明具有正的积极性,并得到了物理解释的支持,尽管在我们使用的模型中,它并不是观测中占主导地位的长波反馈项。这些结果表明,在气候模型中,由于云而引起的长波变暖可能被高估了。这些结果突出了开发长期的有源传感器卫星记录以减少云反馈和未来气候预测中不确定性的重要性。

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