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A comparison of viscoelastic stress wakes for two-dimensional and three-dimensional Newtonian drop deformations in a viscoelastic matrix under shear

机译:剪切作用下粘弹性基体中二维和三维牛顿滴变形的粘弹性应力尾迹的比较

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摘要

A recent experimental study of a Newtonian drop suspended in a viscoelastic matrix undergoing simple shear displays a transient overshoot in drop deformation which is qualitatively similar to two-dimensional (2D) numerical simulation results. Despite the similarity, an interpretation in light of the 2D result is misleading because the overshoot is absent in the fully three-dimensional (3D) simulation. This motivates a study of regimes where qualitatively different and interesting features such as overshoots in deformation occur for a 2D drop but not for a 3D drop. The influence of viscoelastic "wakes" that emanate from the drop tips is reported. The viscoelastic wakes are larger and of higher magnitude in 3D than in 2D, and lead to more deformation in 3D. During drop evolution, the less deformed drop is found to be aligned more with the flow direction. As the drop-to-matrix viscosity ratio increases from 1 to past 3, drop rotation is promoted, with accompanying retraction when the capillary number is sufficiently high. Thus, a 3D overshoot in deformation is promoted with increasing viscosity ratio.
机译:最近对悬浮在粘弹性基体中进行简单剪切的牛顿液滴的实验研究表明,液滴变形具有瞬时过冲,其质量定性类似于二维(2D)数值模拟结果。尽管有相似之处,但由于在完全三维(3D)模拟中不存在过冲现象,因此根据2D结果进行的解释具有误导性。这激发了对状态的研究,其中对于2D下降而不是3D下降,会发生质上不同且有趣的特征(例如变形过冲)。据报道,由液滴尖端产生的粘弹性“唤醒”的影响。 3D中的粘弹性尾流比2D中的更大,并且强度更高,并导致3D中的变形更大。在液滴演变过程中,发现变形程度较小的液滴与流向更加对齐。随着液滴与基质的粘度比从1增加到过去3,当毛细管数足够高时,液滴旋转得到促进,并伴随着缩回。因此,随着粘度比的增加,变形的3D过冲被促进。

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