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Review of experimental studies of secondary ice production

机译:二次冰产量实验研究回顾

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Secondary ice production (SIP) plays a key role in the formation of ice particles in tropospheric clouds. Future improvement of the accuracy of weather prediction and climate models relies on a proper description of SIP in numerical simulations. For now, laboratory studies remain a primary tool for developing physically based parameterizations for cloud modeling. Over the past 7?decades, six different SIP-identifying mechanisms have emerged: (1)?shattering during droplet freezing, (2)?the rime-splintering (Hallett–Mossop) process, (3)?fragmentation due to ice–ice collision, (4)?ice particle fragmentation due to thermal shock, (5)?fragmentation of sublimating ice, and (6) activation of ice-nucleating particles in transient supersaturation around freezing drops. This work presents a critical review of the laboratory studies related to secondary ice production. While some of the six mechanisms have received little research attention, for others contradictory results have been obtained by different research groups. Unfortunately, despite vast investigative efforts, the lack of consistency and the gaps in the accumulated knowledge hinder the development of quantitative descriptions of any of the six SIP mechanisms. The present work aims to identify gaps in our knowledge of SIP as well as to stimulate further laboratory studies focused on obtaining a quantitative description of efficiencies for each SIP mechanism.
机译:二次冰制作(SIP)在对流层云中形成冰颗粒的关键作用。未来的天气预报和气候模型的准确性提高依赖于SIP在数值模拟中的正确描述。目前,实验室研究仍然是用于开发基于云建模的物理参数化的主要工具。在过去的7个?几十年中,出现了六种不同的SIP识别机制:(1)?在液滴冻结期间破碎,(2)?峰值碎片(Hallett-Mossop)过程,(3)?由于冰冰而碎片碰撞,(4)?由于热休克引起的冰颗粒碎片,(5)?升华冰的碎片,(6)在冷冻液滴周围的瞬时过饱和中的冰成核颗粒的碎裂。这项工作提出了对与二次冰生产有关的实验室研究的批判性审查。虽然六种机制中的一些较少的研究注意力,但对于其他方法,矛盾的结果已经通过不同的研究组获得。不幸的是,尽管庞大的调查工作,缺乏一致性,并在积累知识的任何六个SIP机制的定量描述的阻碍发展的差距。本工作旨在识别我们对SIP知识的差距以及刺激进一步的实验室研究,该研究专注于获得每个SIP机制的效率的定量描述。

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