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Sensitivity of cloud droplet growth to collision and coalescence efficiencies in a parcel model

机译:宗地模型中云滴生长对碰撞和合并效率的敏感性

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The purpose of this study is to assess the relative importance of collision and coalescence efficiencies as reported in the literature in different drop size regimes for the development of precipitation via the condensation-coalescence process. The stochastic growth of cloud droplet distributions due to collection processes is studied using a detailed microphysical parcel model. The evolution of rainwater content (L-R) and the radar reflectivity factor (Z) are plotted in order to trace the progress of transfer of cloud water into rainwater and determine the importance of droplet collection in different size ranges. The results indicate that the van der Waals forces are effective in enhancing droplet collision when the droplets are small and the distributions are narrow. Wake capture is negligible for clouds forming in a continental air mass with low liquid water contents. However, it is effective when coalescence becomes the dominant growth process and rainwater content has reached high values. When nonunity coalescence efficiencies are used, the drop growth and cloud water to rainwater conversion is reduced compared to the traditional unity coalescence efficiencies used in previous modeling studies. However, the major difference between the results using nonunity and unity coalescence efficiencies is due to the extrapolation of coalescence efficiencies measured in laboratory to size domains outside the domain of the measurements. [References: 37]
机译:这项研究的目的是评估在不同液滴尺寸方案下,通过凝聚-聚结过程产生沉淀的文献中报道的碰撞和聚结效率的相对重要性。使用详细的微物理包裹模型研究了由于收集过程而产生的云滴分布的随机增长。绘制雨水含量(L-R)的演变和雷达反射率因子(Z)的曲线图,以追踪将云水转移到雨水中的过程,并确定在不同尺寸范围内收集液滴的重要性。结果表明,当液滴较小且分布较窄时,范德华力可有效增强液滴的碰撞。对于在大陆气团中形成的液态水含量低的云而言,唤醒捕获可以忽略不计。但是,当聚结成为主要的生长过程并且雨水含量达到高值时,此方法有效。与以前的建模研究中使用的传统单位合并效率相比,使用非统一合并效率时,液滴的增长和云水到雨水的转化率降低。但是,使用统一和统一合并效率的结果之间的主要差异是由于将实验室中测量的合并效率外推到了测量范围之外的大小域。 [参考:37]

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