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首页> 外文期刊>Physics of fluids >Simulation of the spreading of a gas-propelled micro-droplet upon impact on a dry surface using a lattice-Boltzmann approach
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Simulation of the spreading of a gas-propelled micro-droplet upon impact on a dry surface using a lattice-Boltzmann approach

机译:使用格子-Boltzmann方法对干燥表面撞击时的气体推进微液的涂布

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摘要

Spray cooling is one of the most promising methods of cooling high heat flux electronics. Depending on the type of the nozzle, spray cooling can be categorized as single-phase or two-phase. In the latter, which is known to be more effective, a secondary gas is used to further pressurize the liquid and form smaller droplets at higher velocities. The gas is also assumed to assist the spreading phase by imposing normal and tangential forces on the droplet free surface which adds to the complicated hydrodynamics of the droplet impact. Moreover, the order of magnitude of droplet size in spray cooling is 10(-6) m, thereby introducing a lowWeber and Reynolds numbers' impact regime which heretofore has not been well understood. A 3D lattice Boltzmann method was implemented to simulate the impact of a single micro-droplet on a dry surface both in ambient air and under a stagnation gas flow. Two cases were closely compared and correlations were proposed for the instantaneous spreading diameter. Contrary to recent findings at higher impact Weber and Reynolds numbers, it was found that a stagnation flow only significantly affects the spreading phase for Ca* >= 0.35 but has little influence on the receding physics. Published by AIP Publishing.
机译:喷雾冷却是冷却高热量电子设备最有希望的方法之一。根据喷嘴的类型,喷雾冷却可作为单相或两相分类。在后者中,已知更有效地,次级气体用于进一步加压液体并在更高的速度下形成较小的液滴。还假设气体通过在液滴的自由表面上施加正常和切向力来帮助扩散阶段,这增加了液滴冲击的复杂流体动力学。此外,喷雾冷却中的液滴尺寸的幅度幅度为10(-6)米,从而引入迄今为止尚未得到很好地理解的低维器和雷诺数的影响状态。实施了3D格子Boltzmann方法以模拟单个微液滴在环境空气中的干燥表面上的影响,并在停滞气体流动下。比较两种病例,提出了瞬时扩散直径的相关性。与较高的影响韦伯和雷诺数的最近发现相反,发现停滞流动仅对CA *> = 0.35的扩展阶段显着影响,但对后退物理影响不大。通过AIP发布发布。

著录项

  • 来源
    《Physics of fluids 》 |2017年第7期| 共11页
  • 作者单位

    Villanova Univ Lab Adv Thermal &

    Fluid Syst Villanova PA 19085 USA;

    Villanova Univ Lab Adv Thermal &

    Fluid Syst Villanova PA 19085 USA;

    Univ Leeds Sch Mech Engn Inst Themofluids Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Sch Mech Engn Inst Themofluids Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Sch Mech Engn Inst Themofluids Leeds LS2 9JT W Yorkshire England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学 ;
  • 关键词

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