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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >The Role of Secondary Ice Processes in Midlatitude Continental Clouds
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The Role of Secondary Ice Processes in Midlatitude Continental Clouds

机译:二次在中间纬度冰过程的作用大陆的云

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摘要

Clouds contribute very large uncertainties to our understanding of Earth’s climate system. This is partly attributed to the insufficient predictive abilities of ice formation processes in clouds and the ramifications for the hydrological cycle and climate. To improve predictions of ice particle concentrations in clouds, a better understanding of the relative contributions of ice nucleating particles and secondary ice processes (SIPs) is needed. To address this challenging question, we combine ice nucleation measurements via immersion freezing of particles filtered from rainwater, with satellite-retrieved cloud top glaciation temperatures (T_g) of the same clouds, while considering the chemical composition of the rainwater, the particles, and the particles’ mass loads. In addition, laboratory-derived ice nucleation parameterization of K-feldspar was implemented in an ice nucleation model in order to reconstruct T_g considering primary ice nucleation only. We show that the observed T_g does not correlate with the median freezing temperature of the drops from the laboratory measurements froze (T_(50)), and are significantly warmer than the model prediction. This suggests that SIP play a major role in glaciating the investigated clouds system. Furthermore, we show that the difference between T_g and T_(50) best correlates with the size of the cloud droplets at -5 °C, indicating that SIP is controlled by cloud droplet sizes. Hence, our results suggest that the effect of SIP on T_g, and therefore on Earth’s radiation budget, may be significant.
机译:云为我们贡献很大的不确定性对地球的气候系统的理解。部分归因于预测不足能力的冰云形成过程和水分循环的影响和气候。在云粒子浓度,更好的相对贡献的理解冰核粒子和次要的冰流程(口)是必要的。具有挑战性的问题,我们结合冰成核测量通过浸渍冻结的粒子从雨水过滤,satellite-retrieved云顶冰川作用温度(T_g)同样的云,同时考虑化学雨水的组成、颗粒和粒子的质量负载。源于实验室的冰成核参数化钾长石中实现一个冰成核模型来重建T_g只考虑主要的冰核。表明,观察T_g并不相关平均冻结温度的下降从实验室测量冻结(T_(50)识别),比模型的平均气温高得多预测。的作用,使冰冻了云系统。T_g和T_(50)识别之间的最佳关联云滴的大小在5°C,指示SIP是由云滴大小。因此,我们的研究结果表明,SIP的效果T_g,因此地球上的辐射预算,可能是重要的。

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