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首页> 外文期刊>International Journal of Theoretical and Applied Multiscale Mechanics >Hydrodynamics of oscillating slug flow inside mini channels: a state of art review
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Hydrodynamics of oscillating slug flow inside mini channels: a state of art review

机译:迷你通道内的塞流振荡的流体力学:最新进展

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摘要

Improvements in the fabrication capability have given rise to mini/micro systems for heat and mass transfer operations. The motion of uniform/oscillating menisci or air-plug/liquid slug inside such systems (i.e., capillaries/channels) is a challenging hydrodynamic problem that is relevant in many interesting practical applications. Understanding the hydrodynamics of such flows will help us in manipulating the performance parameters, which will further improve the efficiency of these systems. The present paper is an attempt to review the experimental, theoretical/analytical, and modelling methodologies applied to capillaries to predict these properties. Out of the different flow patterns inside the capillaries, oscillating slug flow has been reviewed intensely. In general, flow properties are well understood and predicted for fully formed unidirectional Taylor bubbles in circular as well as rectangular channels. However, the effect of impurities on interfacial tension cannot be fully accounted so far. In addition, there is still uncertainty about the size of bubbles and slugs, while there is little literature available for oscillating slug flows/meniscus. In view of the state of art on such flows, further recommendations have been made for future research direction to explore various hydrodynamic characteristics.
机译:制造能力的提高引起了用于传热和传质操作的微型/微型系统。这种系统(即,毛细管/通道)内部的均匀/振荡弯液面或空气塞/液体塞的运动是具有挑战性的流体力学问题,在许多有趣的实际应用中是相关的。了解此类流动的流体动力学特性将有助于我们操纵性能参数,这将进一步提高这些系统的效率。本文试图回顾应用于毛细管以预测这些特性的实验,理论/分析和建模方法。在毛细管内部的不同流动模式中,对塞团的振荡流动已经进行了深入的研究。通常,对于圆形通道和矩形通道中完全形成的单向泰勒气泡,流动特性已得到很好的理解和预测。但是,到目前为止,杂质对界面张力的影响尚不能完全解决。另外,关于气泡和团块的大小仍然不确定,而关于团块流动/弯月面的振荡的文献很少。鉴于这种流动的最新技术水平,为进一步的研究方向提出了进一步的建议,以探索各种流体动力学特征。

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