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Flow of two consecutive Taylor bubbles through a vertical column of stagnant liquid-A CFD study about the influence of the leading bubble on the hydrodynamics of the trailing one

机译:两个连续的泰勒气泡通过停滞液体的垂直柱流动-CFD研究前导气泡对尾随气泡的流体动力学的影响

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A detailed numerical study on the interaction between two consecutive Taylor bubbles rising through vertical columns of stagnant Newtonian liquids is reported in this work. The CFD method used is based on the VOF technique implemented in the commercial package ANSYS FLUENT. Simulations were made for a large set of flow conditions, within the laminar regime, covering a range of Morton number of 4.72×10~(-5)-104 and an interval of E?tv?s number between 15 and 575. The changes in the shape of the bubbles interface were followed throughout the approach process, and the main hydrodynamic features characterizing the liquid film and the wake region of the trailing bubble were determined as the separation distance became smaller. Numerical data on the velocity ratio between the trailing and the leading bubble are presented, and two distinct regions are identified (acceleration and deceleration) in the corresponding evolution curves. The velocity ratio curves produced for several flow conditions were fitted to equations describing the acceleration and the deceleration behaviour of the trailing bubble. These equations together with the fitting parameters obtained here can be very useful to improve simulators of continuous slug flow.
机译:在这项工作中,报告了通过停滞的牛顿液体的垂直柱上升的两个连续泰勒气泡之间相互作用的详细数值研究。使用的CFD方法基于在商业软件包ANSYS FLUENT中实现的VOF技术。针对层流范围内的大量流动条件进行了仿真,涵盖了莫顿数为4.72×10〜(-5)-104的范围以及E?tv?数在15到575之间的区间。在整个进近过程中都遵循气泡界面的形状,随着分离距离变小,确定了液膜和尾气泡尾流区域的主要流体力学特征。给出了关于尾随气泡与前导气泡之间的速度比的数值数据,并在相应的演化曲线中确定了两个不同的区域(加速和减速)。将在几种流动条件下产生的速度比曲线拟合到描述尾随气泡的加速和减速行为的方程式。这些方程式以及在此处获得的拟合参数对于改进连续团状流的模拟器非常有用。

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