Direct numerical simulations of gas/liquid multiphase flows

IF 1.3 4区 工程技术 Q3 MECHANICS
Gretar Tryggvason, Asghar Esmaeeli, Jiacai Lu, Souvik Biswas
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引用次数: 599

Abstract

Direct numerical simulations of bubbly flows are reviewed and recent progress is discussed. Simulations, of homogeneous bubble distribution in fully periodic domains at relatively low Reynolds numbers have already yielded considerable insight into the dynamics of such flows. Many aspects of the evolution converge rapidly with the size of the systems and results for the rise velocity, the velocity fluctuations, as well as the average relative orientation of bubble pairs have been obtained. The challenge now is to examine bubbles at higher Reynolds numbers, bubbles in channels and confined geometry, and bubble interactions with turbulent flows. We briefly review numerical methods used for direct numerical simulations of multiphase flows, with a particular emphasis on methods that use the so-called “one-field” formulation of the governing equations, and then discuss studies of bubbles in periodic domains, along with recent work on wobbly bubbles, bubbles in laminar and turbulent channel flows, and bubble formation in boiling.

气/液多相流动的直接数值模拟
对气泡流动的直接数值模拟进行了综述,并讨论了最近的研究进展。在相对低雷诺数的全周期域中均匀气泡分布的模拟已经对这种流动的动力学产生了相当大的见解。演化的许多方面随着系统的大小而迅速收敛,得到了气泡对的上升速度、速度波动和平均相对取向的结果。现在的挑战是研究更高雷诺数下的气泡,通道和受限几何中的气泡,以及气泡与湍流的相互作用。我们简要回顾了用于多相流直接数值模拟的数值方法,特别强调了使用所谓的“单场”控制方程公式的方法,然后讨论了周期域中气泡的研究,以及最近对摆动气泡,层流和湍流通道中的气泡以及沸腾中的气泡形成的研究。
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来源期刊
Fluid Dynamics Research
Fluid Dynamics Research 物理-力学
CiteScore
2.90
自引率
6.70%
发文量
37
审稿时长
5 months
期刊介绍: Fluid Dynamics Research publishes original and creative works in all fields of fluid dynamics. The scope includes theoretical, numerical and experimental studies that contribute to the fundamental understanding and/or application of fluid phenomena.
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