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A numerical study of aerosol influence on mixed-phase stratiform clouds through modulation of the liquid phase

机译:气溶胶对液相调制影响混合相层状云的数值研究

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pstrongAbstract./strong Numerical simulations were carried out in a high-resolution two-dimensional framework to increase our understanding of aerosol indirect effects in mixed-phase stratiform clouds. Aerosol characteristics explored include insoluble particle type, soluble mass fraction, influence of aerosol-induced freezing point depression and influence of aerosol number concentration. Simulations were analyzed with a focus on the processes related to liquid phase microphysics, and ice formation was limited to droplet freezing. Of the aerosol properties investigated, aerosol insoluble mass type and its associated freezing efficiency was found to be most relevant to cloud lifetime. Secondary effects from aerosol soluble mass fraction and number concentration also alter cloud characteristics and lifetime. These alterations occur via various mechanisms, including changes to the amount of nucleated ice, influence on liquid phase precipitation and ice riming rates, and changes to liquid droplet nucleation and growth rates. Alteration of the aerosol properties in simulations with identical initial and boundary conditions results in large variability in simulated cloud thickness and lifetime, ranging from rapid and complete glaciation of liquid to the production of long-lived, thick stratiform mixed-phase cloud./p.
机译:> >摘要。在高分辨率二维框架内进行了数值模拟,以增进我们对混合相层状云中气溶胶间接效应的了解。探索的气溶胶特性包括不溶性颗粒类型,可溶质量分数,气溶胶引起的凝固点降低的影响以及气溶胶数量浓度的影响。分析的模拟重点放在与液相微物理学有关的过程上,并且冰的形成仅限于液滴冻结。在所研究的气溶胶特性中,发现气溶胶不溶物类型及其相关的冷冻效率与云的寿命最相关。气溶胶可溶质量分数和数量浓度的次级影响也改变了云的特性和寿命。这些变化是通过各种机制发生的,包括成核冰量的变化,对液相沉淀和结冰速率的影响以及液滴成核和生长速率的变化。在具有相同初始条件和边界条件的模拟中,气溶胶性质的改变导致模拟云的厚度和寿命变化很大,范围从液体的快速完全冰川化到长寿命,厚层状混合相云的产生。

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