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On the compensation between cloud feedback and cloud adjustment in climate models

机译:气候模型中云反馈与云调整之间的补偿

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Intermodel compensation between cloud feedback and rapid cloud adjustment has important implications for the range of model-inferred climate sensitivity. Although this negative intermodel correlation exists in both realistic (e.g., coupled ocean-atmosphere models) and idealized (e.g., aqua-planet) model configurations, the compensation appears to be stronger in the latter. The cause of the compensation between feedback and adjustment, and its dependence on model configuration remain poorly understood. In this study, we examine the characteristics of the cloud feedback and adjustment in model simulations with differing complexity, and analyze the causes responsible for their compensation. We show that in all model configurations, the intermodel compensation between cloud feedback and cloud adjustment largely results from offsetting changes in marine boundary-layer clouds. The greater prevalence of these cloud types in aqua-planet models is a likely contributor to the larger correlation between feedback and adjustment in those configurations. It is also shown that differing circulation changes in the aqua-planet configuration of some models act to amplify the intermodel range and sensitivity of the cloud radiative response by about a factor of 2.
机译:云层反馈和快速云层调整之间的模型间补偿对于模型推断的气候敏感性范围具有重要意义。尽管这种负的模型间相关性既存在于现实模型(例如,海洋与大气耦合模型)中,也存在于理想模型(例如,水行星模型)中,但在后者中补偿似乎更强。反馈和调整之间的补偿原因及其对模型配置的依赖性仍然知之甚少。在这项研究中,我们检查了具有不同复杂性的模型仿真中云反馈和调整的特征,并分析了造成云补偿的原因。我们表明,在所有模型配置中,云层反馈和云层调整之间的模型间补偿主要是由抵消海洋边界层云层的变化引起的。这些水类型在水行星模型中的流行程度较高,可能是导致这些配置中的反馈与调整之间的相关性更大的原因。还显示出某些模型的水行星构造中不同的环流变化可将模型间范围和云辐射响应的灵敏度放大约2倍。

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