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Break-up Mechanisms and Conditions for Vapour Slugs Within Mini-Channels

机译:迷你通道内气团的破裂机理和条件

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摘要

In the present investigation an enhanced Volume Of Fluid (VOF) based numerical simulation framework is applied for the conduction of parametric numerical simulations, aiming to investigate observed break-up phenomena of vapour slugs, within circular mini-channel branches of a hybrid thermosyphon / pulsating heat pipe device, during microgravity experiments. The simulation results identify three prevailing break-up regimes. The effect of fundamental controlling parameters in the resulting break-up characteristics is also examined. An entrainment of a liquid droplet at the trailing edge of the vapour slug, that is responsible for its subsequent “full” break-up, is identified from the simulations. Moreover, it is quite interesting that the value of the applied heat flux, does not seem to influence the break-up regime and its main characteristics.
机译:在本研究中,基于流体体积(VOF)的增强数值模拟框架用于进行参数数值模拟,旨在研究在混合热虹吸/脉动的圆形微型通道分支内观察到的气团的破裂现象。微重力实验中的热管装置。仿真结果确定了三种主要的分裂状态。还检查了基本控制参数对最终破裂特性的影响。从模拟中识别出液滴在蒸气团的后缘处的夹带,这导致其随后的“完全”分解。而且,非常有趣的是,所施加的热通量的值似乎不会影响破裂状态及其主要特征。

著录项

  • 作者

    Georgoulas Anastasios;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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