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An experimental apparatus for observing deterministic structure formation in plate-on-pedestal ice crystal growth

机译:用于观察平板冰晶生长中确定性结构形成的实验装置

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摘要

We describe an experimental apparatus for making detailed morphological observations of the growth of isolated plate-like ice crystals from water vapor. Each crystal develops a plate-on-pedestal (POP) geometry, in which a large, thin, plate-like crystal grows out from the top edge of an initially prismatic seed crystal resting on a substrate. With the POP geometry, the substrate is not in contact with the growing plate (except at its center), so substrate interactions do not adversely affect the crystal growth. By controlling the temperature and supersaturation around the crystal, we can manipulate the resulting ice growth behavior in predictable ways, producing morphologies spanning the full range from simple faceted hexagonal plates to complex dendritic structures. We believe that the experimental apparatus described here will allow unprecedented investigations of ice crystal growth behaviors under controlled conditions, identifying and exploring robust morphological features in detail. Such investigations will provide valuable observational inputs for developing numerical modeling techniques that can accurately reproduce the faceted and branched structures that frequently emerge during diffusion-limited crystal growth.
机译:我们描述了一种实验仪器,用于对从水蒸气中分离出的板状冰晶的生长进行详细的形态学观察。每个晶体都形成板对板(POP)几何形状,其中大的,薄的板状晶体从放置在基板上的最初棱柱形晶种的顶部边缘生长出来。对于POP几何形状,基板不与生长板接触(除了在其中心),因此基板相互作用不会对晶体生长产生不利影响。通过控制晶体周围的温度和过饱和度,我们可以以可预测的方式操纵结冰的行为,从而产生从简单的多面六边形板到复杂的树枝状结构的整个形态。我们相信,这里描述的实验设备将允许对冰晶在受控条件下的生长行为进行前所未有的研究,从而详细地确定和探索强大的形态特征。这些研究将为开发数值建模技术提供有价值的观察输入,这些数值建模技术可以准确地再现在扩散受限的晶体生长过程中经常出现的刻面和分支结构。

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    Libbrecht Kenneth G.;

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  • 年度 2015
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