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A numerical study of the effects of cloud droplets on the diffusional growth of snow crystals

机译:云滴对雪晶扩散生长影响的数值研究

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We studied the effect of supercooled cloud droplets on the diffusional growth rate of isolated ice plates and ice columns by approximating the shape of a plate as an oblate spheroid and a column as a prolate spheroid. This work is an extension of the pioneering work of Marshall and Palmer [Marshall, J.S. and Langleben, M.P., A theory of snow-crystal habit and growth, J. Met., 11, 104-120, 1954] who studied the influence of cloud droplets on the growth rate of spherical ice crystals. The vapour density field for oblate and prolate spheroids was obtained by solving Helmholtz's equation with the assumption that the vapour at the ice surface had the equilibrium value. As result, it was possible to calculate separately the temporal evolution of the axis length and the mass of the snow crystals. The results indicate that the presence of cloud droplets around the snow crystal can increase by around 10% of the ice growth rate relative to an environment free of cloud droplets. The magnitude of the growth enhancement is proportional to the liquid water content. The results also corroborate the importance of the shape and aspect ratio on the crystal growth. A general mass growth rate equation for diffusional growth was found, which incorporates effects of cloud droplets and crystal shape through the size and aspect ratio of the snow crystal.
机译:我们通过将板的形状近似为扁球形,并将柱形近似为扁球形,研究了过冷的云滴对孤立冰板和冰柱的扩散生长速率的影响。这项工作是Marshall和Palmer [Marshall,J.S。和Langleben,M.P.,《雪晶习性和生长理论,J。Met。,11,104-120,1954],他们研究了云滴对球形冰晶生长速率的影响。假设球在冰面的蒸汽具有平衡值,则通过求解亥姆霍兹方程获得扁球体和扁球体的蒸汽密度场。结果,可以分别计算轴长的时间演变和雪晶的质量。结果表明,相对于没有云滴的环境,雪晶周围云滴的存在可以使冰的生长速度增加约10%。生长增强的幅度与液态水含量成正比。结果也证实了形状和长宽比对晶体生长的重要性。发现了一个用于扩散生长的一般质量生长速率方程,该方程通过雪晶的尺寸和纵横比将云滴和晶体形状的影响结合在一起。

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