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Fully three-dimensional, time-dependent numerical simulations of Newtonian and viscoelastic swirling flows in a confined cylinder. I: Method and steady flows - MaRDI portal

Fully three-dimensional, time-dependent numerical simulations of Newtonian and viscoelastic swirling flows in a confined cylinder. I: Method and steady flows (Q1818686)

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scientific article; zbMATH DE number 1384190
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English
Fully three-dimensional, time-dependent numerical simulations of Newtonian and viscoelastic swirling flows in a confined cylinder. I: Method and steady flows
scientific article; zbMATH DE number 1384190

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    Fully three-dimensional, time-dependent numerical simulations of Newtonian and viscoelastic swirling flows in a confined cylinder. I: Method and steady flows (English)
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    27 January 2000
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    The authors study numerically three-dimensional time-dependent complex viscoelastic flows. A fully three-dimensional implicit finite volume method is developed in cylindrical coordinates. The investigation is focused on well-known swirling flows in a confined cylinder with rotating bottom. Through careful comparisons with available experimental data, the authors estimate the suitability of various constitutive models for viscoelastic fluids.
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    three-dimensional implicit finite volume method
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    viscoelastic flows
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    cylindrical coordinates
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    swirling flows
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    confined cylinder
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    rotating bottom
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    constitutive models
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