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The role of ice nuclei recycling in the maintenance of cloud ice in Arctic mixed-phase stratocumulus

机译:冰核回收在北极混合相层积云云冰维持中的作用

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摘要

This study investigates the maintenance of cloud ice production in Arctic mixed-phase stratocumulus in large eddy simulations that include a prognostic ice nuclei (IN) formulation and a diurnal cycle. Balances derived from a mixed-layer model and phase analyses are used to provide insight into buffering mechanisms that maintain ice in these cloud systems. We find that, for the case under investigation, IN recycling through subcloud sublimation considerably prolongs ice production over a multi-day integration. This effective source of IN to the cloud dominates over mixing sources from above or below the cloud-driven mixed layer. Competing feedbacks between dynamical mixing and recycling are found to slow the rate of ice lost from the mixed layer when a diurnal cycle is simulated. The results of this study have important implications for maintaining phase partitioning of cloud ice and liquid that determine the radiative forcing of Arctic mixed-phase clouds.
机译:这项研究在大型涡流模拟中研究了北极混合相平流层积云的产冰维持情况,该模拟包括预测冰核(IN)的形成和昼夜周期。从混合层模型和阶段分析得出的平衡可用于深入了解在这些云系统中维护冰层的缓冲机制。我们发现,对于正在调查的案例,通过亚云升华进行的IN回收在多天的整合过程中大大延长了制冰时间。这种有效的云IN源在云驱动混合层上方或下方的混合源中占主导地位。当模拟昼夜循环时,发现动态混合和循环利用之间的竞争性反馈会减缓混合层冰的流失速度。这项研究的结果对于维持确定冰混合相和云的辐射强迫的云冰和液体的相分配具有重要意义。

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