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Semi-empirical approach to characterize thin water film behaviour in relation to droplet splashing in modelling aircraft icing

机译:半经验方法表征飞机结冰时与水滴飞溅有关的薄水膜行为

摘要

Modelling the ice accretion in glaze regime for the supercooled large droplets is one of the most challenging problems in the aircraft icing field. The difficulties are related to the presence of the liquid water film on the surface in the glaze regime and also the phenomena associated with SLD conditions, specifically the splashing and re-impingement. The steady improvement of simulation methods and the increasing demand for highly optimised aircraft performance, make it worthwhile to try to get beyond the current level of modelling accuracy.A semi-empirical method has been presented to characterize the thin water film in the icing problem based on both analytical and experimental approaches. The experiments have been performed at the Cranfield icing facilities. Imaging techniques have been used to observe and measure the features of the thin water film in the different conditions.A series of numerical simulations based on an inviscid VOF model have been performed to characterize the splashing process for different water film to droplet size ratios and impact angles. Based on these numerical simulations and the proposed methods to estimate the thin water film thickness, a framework has been presented to model the effects of the splashing in the icing simulation. These effects are the lost mass from the water film due to the splashing and the re-impingement of the ejected droplets.Finally, a new framework to study the solidification process of the thin water film has been explored. This framework is based on the lattice Boltzmann method and the preliminary results showed the capabilities of the method to model the dynamics, thermodynamics and the solidification of the thin water film.
机译:对于过冷的大液滴,在釉面中积冰的模型化是飞机结冰领域最具挑战性的问题之一。困难与釉料状态下在表面上存在液态水膜有关,还与与SLD条件有关的现象有关,特别是飞溅和再撞击。仿真方法的不断改进和对高度优化飞机性能的需求不断增加,因此有必要尝试超越目前的建模精度水平。提出了一种半经验方法来表征基于结冰问题的薄水膜在分析和实验方法上。实验已在Cranfield的糖衣设施进行。成像技术已被用于观察和测量不同条件下水薄膜的特性。基于无粘VOF模型进行了一系列数值模拟,以表征不同水膜与液滴尺寸比和冲击的飞溅过程。角度。基于这些数值模拟和所提出的估算薄水膜厚度的方法,提出了一个框架来模拟飞溅在结冰模拟中的影响。这些影响是由于喷出的液滴的飞溅和再撞击而导致的水膜损失质量。最后,探索了研究薄水膜凝固过程的新框架。该框架基于格子玻尔兹曼方法,初步结果表明该方法能够模拟水薄膜的动力学,热力学和凝固。

著录项

  • 作者

    Alzaili Jafar S. L.;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类
  • 入库时间 2022-08-20 20:05:44

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