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Autores principales: Gu, Diandian, Wylie, Jonathan J., He, Dongdong, Stokes, Yvonne M.
Formato: Preprint
Publicado: 2024
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Acceso en línea:https://arxiv.org/abs/2411.18117
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author Gu, Diandian
Wylie, Jonathan J.
He, Dongdong
Stokes, Yvonne M.
author_facet Gu, Diandian
Wylie, Jonathan J.
He, Dongdong
Stokes, Yvonne M.
contents We explore the drawing of an axisymmetric viscoelastic tube subject to inertial and surface tension effects. We adopt the Giesekus constitutive model and derive asymptotic long-wave equations for weakly viscoelastic effects. Intuitively, one might imagine that the elastic stresses should act to prevent hole closure during the drawing process. Surprisingly, our results show that the hole closure at the outlet is enhanced by elastic effects for most parameter values. However, the opposite is true if the tube has a very large hole size at the inlet of the device or if the axial stretching is very weak. We explain the physical mechanism underlying this phenomenon by examining how the second normal stress difference induced by elastic effects modifies the hole evolution process. We also determine how viscoelasticity affects the stability of the drawing process and show that elastic effects are always destabilizing for negligible inertia. This is in direct contrast to the case of a thread without a hole for which elastic effects are always stabilizing. On the other hand, our results show that if the inertia is non-zero, elastic effects can be either stabilizing or destabilizing depending on the parameters.
format Preprint
id arxiv_https___arxiv_org_abs_2411_18117
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Drawing of Weakly Viscoelastic Fluid Tubes
Gu, Diandian
Wylie, Jonathan J.
He, Dongdong
Stokes, Yvonne M.
Fluid Dynamics
We explore the drawing of an axisymmetric viscoelastic tube subject to inertial and surface tension effects. We adopt the Giesekus constitutive model and derive asymptotic long-wave equations for weakly viscoelastic effects. Intuitively, one might imagine that the elastic stresses should act to prevent hole closure during the drawing process. Surprisingly, our results show that the hole closure at the outlet is enhanced by elastic effects for most parameter values. However, the opposite is true if the tube has a very large hole size at the inlet of the device or if the axial stretching is very weak. We explain the physical mechanism underlying this phenomenon by examining how the second normal stress difference induced by elastic effects modifies the hole evolution process. We also determine how viscoelasticity affects the stability of the drawing process and show that elastic effects are always destabilizing for negligible inertia. This is in direct contrast to the case of a thread without a hole for which elastic effects are always stabilizing. On the other hand, our results show that if the inertia is non-zero, elastic effects can be either stabilizing or destabilizing depending on the parameters.
title Drawing of Weakly Viscoelastic Fluid Tubes
topic Fluid Dynamics
url https://arxiv.org/abs/2411.18117