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  • Letter

Follow the curvature of viscoelastic stress: Insights into the steady arrowhead structure

Pierre-Yves Goffin1, Yves Dubief2, and Vincent E. Terrapon1,*

  • *Contact author: vincent.terrapon@uliege.be

Phys. Rev. Fluids 11, L061301 – Published 12 June, 2026

DOI: https://doi.org/10.1103/lf9h-xcl3

Abstract

Focusing on simulated dilute polymer solutions, this letter investigates the interactions between flow structures and organized polymer stress sheets for the steady arrowhead coherent structure in a two-dimensional periodic channel flow. Formulating the problem in a frame of reference moving with the arrowhead, in which streamlines are also pathlines, enables the identification of two distinct topological regions linked to two stagnation points. The streamlines help connect the spatial distribution of polymer stress within the sheets and the dynamics of polymers transported by the flow. Using stresslines, lines parallel to the eigenvectors of polymer stress, we propose a formulation of the viscoelastic stress term in the momentum equation, which provides a more intuitive interpretation of the relation between the curvature of the stresslines, and the variation of stress along these lines, with the local flow topology. An approximation of this formulation is shown to explain the pressure jump observed in the arrowhead structure as a function of the local curvature of the polymer stress sheet.

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