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首页> 外文期刊>Atmospheric Measurement Techniques >Experimental methodology and procedure for SAPPHIRE: a Semi-automatic APParatus for High-voltage Ice nucleation REsearch
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Experimental methodology and procedure for SAPPHIRE: a Semi-automatic APParatus for High-voltage Ice nucleation REsearch

机译:蓝宝石实验方法与程序:高压冰核研究的半自动仪

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摘要

Ice nucleation is of great interest for various processes such as cloud formation in the scope of atmospheric physics, and icing of airplanes, ships, or structures. Ice nucleation research aims to improve the knowledge about the physical mechanisms and to ensure the safety and reliability of the respective applications. Several influencing factors like liquid supercooling or contamination with nucleants, as well as external disturbances such as an electric field or surface defects, affect ice nucleation. Especially for ice crystal formation in clouds and icing of high-voltage equipment, an external electric field may also have a strong impact on ice nucleation. Although ice nucleation has been widely investigated for numerous conditions, the effect of an electric field on ice nucleation is not yet completely understood; results reported in literature are even contradictory on some issues. In the present study, an advanced experimental approach for the examination of ice nucleation in water droplets exposed to an electric field is described. It comprises a method for droplet ensemble preparation and an experimental setup, which allows observation of the droplet ensemble during its exposure to well-defined thermal and electric fields, which are both variable over a wide range. The entire approach aims at maximizing the accuracy and repeatability of the experiments in order to enable examination of even the most minor influences on ice nucleation. For that purpose, the boundary conditions the droplet sample is exposed to during the experiment are examined in particular detail using experimental and numerical methods. The methodological capabilities and accuracy have been demonstrated based on several ice nucleation experiments without an electric field, indicating almost perfect repeatability.
机译:对于大气物理范围,以及飞机,船舶或结构的糖化等各种过程,冰成核是非常令人兴趣的。冰成核研究旨在提高物理机制的知识,并确保各个应用的安全性和可靠性。几种影响因素,如液体过冷或核肉污染,以及外部干扰,如电场或表面缺陷,影响冰核。特别是对于云层中的冰晶形成和高压设备结冰,外部电场也可能对冰核产生强烈影响。虽然冰成核已被广泛研究了许多条件,但尚未完全理解电场对冰核的影响;在一些问题上,文学中报告的结果甚至是矛盾的。在本研究中,描述了对暴露于电场暴露于电场的水滴中的冰成核的先进实验方法。它包括用于液滴合奏制剂的方法和实验装置,其允许在暴露于明确定义的热电场期间观察液滴整体,这在宽范围内都是可变的。整个方法旨在最大限度地提高实验的准确性和可重复性,以便甚至能够检查对冰成核的最轻微的影响。为此目的,使用实验和数值方法特别详细地检查液滴样品在实验期间暴露于实验期间的边界条件。已经基于几种没有电场的冰成核实验证明了方法论能力和准确性,表明几乎完美的可重复性。

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