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Numerical predictions of bubble growth in viscoelastic stretching filaments

机译:粘弹性拉伸丝中气泡生长的数值预测

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摘要

In this study, we investigate the growth of bubbles within predominately extensional-deformation flows of thin film stretching form. This involves more than one free-surface to the flow (multiple surfaces), typically as inner (bubble) and outer (filament) boundaries that introduces fluid–gas interfacial treatment. Various bubble initial states and locations may be considered. The problem is discretised in space–time through a hybrid-finite element/volume pressure-correction formulation, coupled with an arbitrary Lagrangian–Eulerian (ALE) coupled with VOF scheme to track domain-mesh and free-surface movement. We contrast these results against the results from a complete ALE algorithm. Various fluid-filament materials have been considered, covering such properties as constant viscosity fluids (Newtonian), low-polymeric/high-solvent viscosity Boger-type (Oldroyd-B) fluids and high-polymeric/low-solvent viscosity elastic-type fluids (Oldroyd-B and Phan-Thien/Tanner). Numerical solutions are presented in terms of comparison between algorithms (ALE versus hybrid ALE/VOF), shapes (bubble shapes, filament shapes), contours of extra-stress (magnitude and location), mid-filament radius and extensional viscosity.
机译:在这项研究中,我们调查了薄膜拉伸形式中主要在拉伸变形流中气泡的生长。这涉及到流体的多个自由表面(多个表面),通常作为内部(气泡)和外部(细丝)边界引入流体-气体界面处理。可以考虑各种气泡的初始状态和位置。通过混合有限元/体积压力校正公式,再加上任意的拉格朗日-欧拉(ALE)以及VOF方案,可以跟踪时域网格和自由表面运动,从而在时空上离散该问题。我们将这些结果与完整ALE算法的结果进行对比。已经考虑了各种流体丝材料,包括诸如恒粘度流体(牛顿),低聚合物/高溶剂粘度的博格型(Oldroyd-B)流体和高聚合物/低溶剂粘度的弹性型流体的性质。 (Oldroyd-B和Phan-Thien / Tanner)。根据算法(ALE与混合ALE / VOF),形状(气泡形状,细丝形状),超应力轮廓(大小和位置),中丝半径和拉伸粘度之间的比较,给出了数值解决方案。

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