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首页> 外文期刊>Journal of electronics cooling and thermal control >Numerical Simulation of Single Bubble Deformation in Straight Duct and 90° Bend Using Lattice Boltzmann Method
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Numerical Simulation of Single Bubble Deformation in Straight Duct and 90° Bend Using Lattice Boltzmann Method

机译:格子Boltzmann方法对直管和90°弯管中单气泡变形的数值模拟

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The paper aims to give a comprehensive investigation of the two dimensional deformation of a single bubble in a straight duct and a 90° bend under the zero gravity condition. For this, the two phase flow lattice Boltzmann equation (LBE) model is used. An averaging scheme of boundary condition implementation has been applied and validated. A generalized deformation benchmark has been introduced. By presenting and analyzing the shape of the bubbles moving through the channels, the effects of the all important nondimensional numbers on the bubble deformation are examined thoroughly. It is seen that by increasing the Weber number the rate of the deformation enhances. Besides, because of the velocity dissimilarity between the particles constructing the bubble, the initial coordinates and the diameter of the bubble play a great role in the future behavior of the bubble. The density ratio has a little effect on the shape of the bubble within the assumed range of the density ratio. Moreover, as the Reynolds number or the viscosity ratio is decreased, higher rate of deformation is exhibited. Finally it is found that there is an inverse proportionality between the amplitude and frequency of the bubble deformation.
机译:本文旨在对零重力条件下直管中单个气泡的二维变形和90°弯曲进行全面研究。为此,使用了两相流格子玻尔兹曼方程(LBE)模型。边界条件实现的平均方案已被应用和验证。引入了广义变形基准。通过呈现和分析在通道中流动的气泡的形状,可以彻底检查所有重要的无量纲数字对气泡变形的影响。可以看出,通过增加韦伯数,变形率提高了。此外,由于构成气泡的颗粒之间的速度差异,气泡的初始坐标和直径在气泡的未来行为中起着重要作用。在假定的密度比范围内,密度比对气泡的形状影响很小。此外,随着雷诺数或粘度比的降低,表现出更高的变形率。最终发现,气泡变形的幅度和频率之间存在反比例关系。

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