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Theoretical model of the Bergeron-Findeisen mechanism of ice crystal growth in clouds

机译:云中冰晶生长的Bergeron-Findeisen机理的理论模型

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A numerical study of growth rate of ice particles in an array of water droplets (Bergeron-Findeisen mechanism) has used the method of electrostatic image charges to determine the vapour field in which a particle grows. Analysis of growth rate in various conditions of relevance to clouds has shown that it is proportional to liquid water content and to ice particle size, while it is inversely proportional to cloud droplet size. The results show that growth rate is enhanced by several percent relative to the usual treatment in which vapour is assumed to diffuse from infinity towards a growing ice particle. The study was performed for ice particles between 25 and 150μm radii, water droplet sizes between 6 and 20 urn diameter and a wide range of liquid water contents. A study was also made to determine the effect of reducing the vapour source at infinity so that the droplets alone provided the vapour for particle growth. A parameterisation of ice particle growth rate is given as a function of liquid water content and ice particle and droplet sizes, These studies are of importance to considerations in thunderstorm electrification processes, where the mechanism of charge transfer between ice particles and graupel could take place.
机译:对水滴阵列中冰粒的生长速率进行的数值研究(Bergeron-Findeisen机理)已使用静电图像电荷的方法确定了粒子在其中生长的蒸汽场。对与云有关的各种条件下的增长率的分析表明,它与液态水含量和冰粒大小成正比,而与云滴大小成反比。结果表明,相对于通常的处理方法(假定蒸汽从无穷大扩散到正在生长的冰粒中),其生长速度提高了百分之几。该研究是针对半径在25至150μm之间的冰粒,直径在6至20 n之间的水滴大小以及广泛的液态水含量进行的。还进行了一项研究,以确定减少无穷远处的蒸气源的效果,以使液滴单独为微粒生长提供蒸气。给出了冰粒增长率的参数化,该参数是液态水含量以及冰粒和液滴尺寸的函数。这些研究对于雷暴起电过程中的考虑非常重要,在雷电起电过程中,可能发生冰粒和gra之间的电荷转移机制。

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