Centrifugal stability of a viscoplastic fluid interface and the amplitude threshold for yielding

The linear stability of the interface between a Newtonian inner fluid and a Bingham outer fluid under centrifugal body force is analysed. A Papanastasiou regularisation of the yield-stress term yields a single damped-oscillator dispersion relation σ 2 + 2 β n σ + ω n 2 = 0 , parametrised by the regularisation parameter M . The inviscid, Newtonian, and strict Bingham regimes emerge as limits of this expression, with the strict limit consistent with the Frigaard–Nouar ordering criterion. A one-dimensional axisymmetric nonlinear calculation confirms that the slow-fast decay structure identified at linear order extends to finite amplitude and approaches the finite-time-decay envelope of the strict yield-stress problem as the regularisation parameter is increased. For liquid egg white the physical point lies deep in the overdamped regime, identifying the yield stress as the dominant stabilisation mechanism.

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Publication Details

Journal
Journal of Non-Newtonian Fluid Mechanics
Published
2026-09-17
DOI
https://doi.org/10.1016/j.jnnfm.2026.105656
Primary Topic
Fluid Dynamics and Thin Films
Type
article
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article

Centrifugal stability of a viscoplastic fluid interface and the amplitude threshold for yielding

J. Lee
Journal of Non-Newtonian Fluid Mechanics
Fluid Dynamics and Thin Films
article

Centrifugal stability of a viscoplastic fluid interface and the amplitude threshold for yielding

J. Lee
article en

Abstract

The linear stability of the interface between a Newtonian inner fluid and a Bingham outer fluid under centrifugal body force is analysed. A Papanastasiou regularisation of the yield-stress term yields a single damped-oscillator dispersion relation σ 2 + 2 β n σ + ω n 2 = 0 , parametrised by the regularisation parameter M . The inviscid, Newtonian, and strict Bingham regimes emerge as limits of this expression, with the strict limit consistent with the Frigaard–Nouar ordering criterion. A one-dimensional axisymmetric nonlinear calculation confirms that the slow-fast decay structure identified at linear order extends to finite amplitude and approaches the finite-time-decay envelope of the strict yield-stress problem as the regularisation parameter is increased. For liquid egg white the physical point lies deep in the overdamped regime, identifying the yield stress as the dominant stabilisation mechanism.

Journal of Non-Newtonian Fluid MechanicsVol. 351
Inha Technical College (KR)
Openalex Percentile: Top 14%
Fluid Dynamics and Thin Films
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Centrifugal stability of a viscoplastic fluid interface and the amplitude threshold for yielding — J. Lee · Journal of Non-Newtonian Fluid Mechanics (2026) | TGRS Research Map | TGRS