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Thermo-hydrodynamic transport phenomena in partially wetting liquid plugs moving inside micro-channels

机译:在微通道内部移动的部分润湿的液体塞中的热流体动力学传输现象

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Single-phase as well as two-phase fluid flows inside mini/micro-channels and capillary tubes are of practical importance in many miniaturized engineering systems. While several issues related to single-phase transport are fairly well understood, two-phase systems still pose challenges for engineering design. Thepresence of gas–liquid interfaces, dominance of surface forces, moving contact lines, wettability, dynamic contact angle hysteresis and flow in confined geometries are some of the unique features of two-phase systems,which manifest into complex transport phenomena. While Taylor plug/bubble flow is a fairly common flow pattern in several micro-fluidic devices operating at low Bond number, the ensuing transport characteristics are complex and still not fully discerned. This review paper aims at highlighting the nuances and features of a unit cell of a Taylor plug flow, especially focusing on partially wetting systems, which are more common in engineering applications. Emphasis is given to a ‘unit cell’ flow system consisting of an isolated liquid Taylor plug with adjacent gas phase, confined in a capillary tube. Such a seemingly simple flow condition posesconsiderable challenges for discerning and modelling local thermo-hydrodynamic transport coefficients. Relevant background information and fundamentals are carefully scrutinized while summarizing the state-of-the-art. The role of wettability and dissipation near the contact line is highlighted via available experimental andsimulation results. Local momentum and heat transfer exchange processes during the motion of an isolated plug of partially wetting liquid moving inside a capillary tube are delineated.
机译:在许多微型工程系统中,微型/微通道和毛细管内的单相和两相流体流具有实际重要性。尽管已经很好地理解了与单相传输有关的几个问题,但两相系统仍然对工程设计提出了挑战。气液界面的存在,表面力的优势,接触线的移动,润湿性,动态接触角滞后和受限几何形状中的流动是两相系统的一些独特特征,表现为复杂的传输现象。尽管泰勒塞/气泡流是在几种以低键数运行的微流控设备中相当普遍的流型,但随之而来的传输特性却很复杂,仍然无法完全辨别。这篇综述文章旨在突出泰勒塞流的晶胞的细微差别和特征,特别是侧重于部分润湿系统,这在工程应用中更为常见。重点是“单元池”流动系统,该系统由隔离的液体泰勒(Taylor)堵头和相邻的气相组成,密闭在毛细管中。这种看似简单的流动条件对于辨别和模拟局部热流体动力传递系数提出了巨大的挑战。在总结最新技术时,会仔细检查相关的背景信息和基本原理。通过可用的实验和模拟结果,可以突出接触线附近的可湿性和耗散性。描绘了在毛细管内移动的部分润湿液体的隔离塞的运动过程中的局部动量和热交换过程。

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