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首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >Numerical predictions of bubble growth in viscoelastic stretching filaments
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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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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是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),通常作为引入流体-气体界面处理的内部(气泡)边界和外部(丝状)边界。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)和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Boger型(Oldroyd-B)流体和高聚合物/低溶剂粘度的弹性型流体等性质。 (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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