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Strong Dependence of Atmospheric Feedbacks on Mixed‐Phase Microphysics and Aerosol‐Cloud Interactions in HadGEM3

机译:HadGEM3中大气反馈对混合相微物理学和气溶胶-云相互作用的强烈依赖性

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摘要

We analyze the atmospheric processes that explain the large changes in radiative feedbacks between the two latest climate configurations of the Hadley Centre Global Environmental model. We use a large set of atmosphere‐only climate change simulations (amip and amip‐p4K) to separate the contributions to the differences in feedback parameter from all the atmospheric model developments between the two latest model configurations. We show that the differences are mostly driven by changes in the shortwave cloud radiative feedback in the midlatitudes, mainly over the Southern Ocean. Two new schemes explain most of the differences: the introduction of a new aerosol scheme and the development of a new mixed‐phase cloud scheme. Both schemes reduce the strength of the preexisting shortwave negative cloud feedback in the midlatitudes. The new aerosol scheme dampens a strong aerosol‐cloud interaction, and it also suppresses a negative clear‐sky shortwave feedback. The mixed‐phase scheme increases the amount of cloud liquid water path (LWP) in the present day and reduces the increase in LWP with warming. Both changes contribute to reducing the negative radiative feedback of the increase of LWP in the warmer climate. The mixed‐phase scheme also enhances a strong, preexisting, positive cloud fraction feedback. We assess the realism of the changes by comparing present‐day simulations against observations and discuss avenues that could help constrain the relevant processes.
机译:我们分析了解释哈德利中心全球环境模型的两个最新气候配置之间的辐射反馈变化的大气过程。我们使用大量的仅大气气候变化模拟(amip和amip-p4K)将反馈参数差异的贡献与两种最新模型配置之间所有大气模型的发展分开。我们表明,差异主要是由中纬度地区(主要是南大洋)的短波云辐射反馈的变化驱动的。两种新方案解释了大多数差异:引入了新的气溶胶方案和开发了新的混合相云方案。两种方案都降低了中纬度地区先前存在的短波负云反馈的强度。新的气溶胶方案抑制了强烈的气溶胶-云相互作用,并且还抑制了晴空短波负反馈。如今,混合方案增加了云水路径(LWP)的数量,并随着变暖而减少了LWP的增加。在温暖的气候下,这两种变化都有助于减少LWP升高带来的负面辐射反馈。混合阶段方案还可以增强强大的,预先存在的正云分数反馈。我们通过将当前的模拟与观察结果进行比较来评估变化的现实性,并讨论有助于约束相关过程的途径。

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