A phase diagram of the pinch-off behavior of impulsively-induced viscoelastic liquid jets

Fuente: arXiv
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Autores principales: Hosokawa, Asuka, Kamamoto, Kyota, Watanabe, Hiroya, Kusuno, Hiroaki, Kobayashi, Kazuya U., Tagawa, Yoshiyuki
Formato: Preprint
Publicado: 2023
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author Hosokawa, Asuka
Kamamoto, Kyota
Watanabe, Hiroya
Kusuno, Hiroaki
Kobayashi, Kazuya U.
Tagawa, Yoshiyuki
author_facet Hosokawa, Asuka
Kamamoto, Kyota
Watanabe, Hiroya
Kusuno, Hiroaki
Kobayashi, Kazuya U.
Tagawa, Yoshiyuki
contents In this study, we systematically investigate the behaviors of viscoelastic liquid jets using an impulsive force, particularly in the high velocity and high elasticity regimes. The resulting jets are categorized into two types: (i) pinch-off jets, which break up during elongation after ejection, and (ii) no-pinch-off jets, which either retract to the nozzle after maximum elongation, known as `bungee-jumper jets' or return without elongation after ejection. We then propose criteria to delineate these regions using Reynolds number $Re$ and Weissenberg number $Wi$, reflecting the initial conditions at the jet ejection and the solution's rheological properties, respectively. We find that pinch-off jets occur at $Re \gtrsim 23.4Wi$ in high elasticity regimes ($Wi \gtrsim 10$), and at $Re \gtrsim 250$ in low elasticity regimes ($Wi \lesssim 10$). In addition, we demonstrate that the phase diagram of these behaviors can be rationalized through the focused jet modeling using the finitely extensible non-linear elastic dumbbell model with the Chilcott-Rallison closure approximation (FENE-CR).
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id arxiv_https___arxiv_org_abs_2309_01364
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle A phase diagram of the pinch-off behavior of impulsively-induced viscoelastic liquid jets
Hosokawa, Asuka
Kamamoto, Kyota
Watanabe, Hiroya
Kusuno, Hiroaki
Kobayashi, Kazuya U.
Tagawa, Yoshiyuki
Fluid Dynamics
In this study, we systematically investigate the behaviors of viscoelastic liquid jets using an impulsive force, particularly in the high velocity and high elasticity regimes. The resulting jets are categorized into two types: (i) pinch-off jets, which break up during elongation after ejection, and (ii) no-pinch-off jets, which either retract to the nozzle after maximum elongation, known as `bungee-jumper jets' or return without elongation after ejection. We then propose criteria to delineate these regions using Reynolds number $Re$ and Weissenberg number $Wi$, reflecting the initial conditions at the jet ejection and the solution's rheological properties, respectively. We find that pinch-off jets occur at $Re \gtrsim 23.4Wi$ in high elasticity regimes ($Wi \gtrsim 10$), and at $Re \gtrsim 250$ in low elasticity regimes ($Wi \lesssim 10$). In addition, we demonstrate that the phase diagram of these behaviors can be rationalized through the focused jet modeling using the finitely extensible non-linear elastic dumbbell model with the Chilcott-Rallison closure approximation (FENE-CR).
title A phase diagram of the pinch-off behavior of impulsively-induced viscoelastic liquid jets
topic Fluid Dynamics
url https://arxiv.org/abs/2309.01364