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Quantitative comparison of Taylor flow simulations based on sharp-interface and diffuse-interface models

机译:基于锐界面和扩散界面模型的泰勒流动模拟的定量比较

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摘要

A pressure-driven flow of elongated bullet-shaped bubbles in a narrow channel is known as Taylor flow or bubble-train flow. This process is of relevance in various applications of chemical engineering. In this paper, we describe a typical simplified experimental setting, with surface tension, density and viscosity as prescribed input parameters. We compare a sharp-interface model based on a moving grid aligned with the bubble boundary (ALE coordinates) and a diffuse-interface model where the bubble shape is implicitly given by a phase-field function. Four independent implementations based on the two modeling approaches are introduced and described briefly. Besides the simulation of the bubble shapes, we compare some resulting quantities such as pressure difference and film widths within the implementations and to existing analytical and experimental results. The simulations were conducted in 2D and 3D (rotationally symmetric). Good accordance of the results indicate the applicability and the usability of all approaches. Differences between the models and their implementations are visible but in no contradiction to theoretical results.
机译:在狭窄通道中以压力驱动的细长的子弹形气泡流被称为泰勒流或气泡串流。该过程与化学工程的各种应用有关。在本文中,我们描述了一种典型的简化实验设置,其中表面张力,密度和粘度作为规定的输入参数。我们比较了基于与气泡边界(ALE坐标)对齐的移动网格的清晰界面模型和其中气泡形状由相场函数隐式给出的扩散界面模型。简要介绍了基于两种建模方法的四个独立实现。除了对气泡形状进行仿真之外,我们还将实现过程中的一些结果量(例如压差和膜宽)与现有的分析和实验结果进行比较。模拟以2D和3D(旋转对称)进行。结果的良好一致性表明了所有方法的适用性和可用性。这些模型及其实现之间的差异是显而易见的,但与理论结果并不矛盾。

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