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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Global simulations of ice nucleation and ice supersaturation with an improved cloud scheme in the Community Atmosphere Model
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Global simulations of ice nucleation and ice supersaturation with an improved cloud scheme in the Community Atmosphere Model

机译:全球模拟冰成核和冰过度饱和的一种改进的云计划社区大气模型

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摘要

A process-based treatment of ice supersaturation and ice nucleation is implemented in the National Center for Atmospheric Research Community Atmosphere Model (CAM), The new scheme is designed to allow (1) supersaturation with respect to ice, (2) ice nucleation by aerosol particles, and (3) ice cloud cover consistent with ice microphysics. The scheme is implemented with a two-moment microphysics code and is used to evaluate ice cloud nucleation mechanisms and supersaturation in CAM. The new model is able to reproduce field observations of ice mass and mixed phase cloud occurrence better than previous versions. The model is able to reproduce observed patterns and frequency of ice supersaturation. Simulations indicate homogeneous freezing of sulfate and heterogeneous freezing on dust are both important ice nucleation mechanisms, in different regions. Simulated cloud forcing and climate is sensitive to different formulations of the ice microphysics. Arctic surface radiative fluxes are sensitive to the parameterization of ice clouds. These results indicate that ice clouds are potentially an important part of understanding cloud forcing and potential cloud feedbacks, particularly in the Arctic.
机译:基于流程的处理冰过度饱和和冰成核是在全国实现的大气研究中心的社区大气模型(CAM),新方案允许(1)过度饱和冰,冰成核(2)气溶胶粒子,和(3)冰云层一致与冰粒子物理学。与two-moment微观物理学代码和使用冰云成核机制和评估在凸轮过度饱和。野外观察冰块和繁殖混合相云发生比以前更好版本。模式和冰过度饱和的频率。模拟表明均匀冻结硫酸和异构冻结在尘埃冰成核机制重要的不同的地区。对不同配方的气候敏感冰粒子物理学。通量参数化的很敏感冰云。云是潜在的一个重要组成部分理解云强迫和潜在的云反馈,特别是在北极。

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