Dagan Guy, Stier Philip, Dingley Beth, Williams Andrew I L
Fredy and Nadine Herrmann Institute of Earth Sciences Hebrew University Jerusalem Israel.
Department of Physics, Atmospheric, Oceanic and Planetary Physics University of Oxford Oxford UK.
J Adv Model Earth Syst. 2022 Jun;14(6):e2021MS002951. doi: 10.1029/2021MS002951. Epub 2022 Jun 4.
Clouds are a key player in the global climate system, affecting the atmospheric water and energy budgets, and they are strongly coupled to the large-scale atmospheric circulation. Here, we examine the co-variability of the atmospheric energy and water budget imbalances in three different global model configurations-radiative-convective equilibrium, aqua-planet, and global simulations with land. The gradual increase in the level of complexity of the model configuration enables an investigation of the effects of rotation, meridional temperature gradient, land-sea contrast, and seasonal cycle on the co-variability of the water and energy imbalances. We demonstrate how this co-variability is linked to both the large-scale tropical atmospheric circulation and to cloud properties. Hence, we propose a co-variability-based framework that connects cloud properties to the large-scale tropical circulation and climate system and is directly linked to the top-down constrains on the system-the water and energy budgets. In addition, we examine how the water and energy budget imbalances co-variability depends on the temporal averaging scale, and explain its dependency on how stationary the circulation is in the different model configurations. Finally, we demonstrate the effect of an idealized global warming and convective aggregation on this co-variability.
云是全球气候系统中的关键要素,影响着大气水和能量收支,并且与大尺度大气环流紧密相连。在此,我们研究了三种不同全球模式配置下——辐射对流平衡、水星球以及包含陆地的全球模拟——大气能量和水平衡失衡的协变性。模式配置复杂度的逐步增加,使得我们能够探究自转、经向温度梯度、海陆对比以及季节循环对水和能量失衡协变性的影响。我们展示了这种协变性如何与大尺度热带大气环流以及云的特性相关联。因此,我们提出了一个基于协变性的框架,该框架将云的特性与大尺度热带环流及气候系统联系起来,并且直接与系统的自上而下的约束条件——水和能量收支相关。此外,我们研究了水和能量收支失衡协变性如何依赖于时间平均尺度,并解释其对不同模式配置中环流稳定性的依赖性。最后,我们展示了理想化的全球变暖和对流聚合对这种协变性的影响。