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Pattern formations in particle laden drum flows and Taylor–Couette flows with co-rotating cylinders

Brockmann, P. ; Tvarozek, M. ; Lausch, M. ; Hussong, Jeanette (2023)
Pattern formations in particle laden drum flows and Taylor–Couette flows with co-rotating cylinders.
In: Physics of Fluids, 35 (8)
doi: 10.1063/5.0159908
Artikel, Bibliographie

Kurzbeschreibung (Abstract)

In this work, previously undescribed particle patterns are reported for suspensions of initially uniform dispersed non-Brownian particles in completely filled rotating drum flows and in completely filled co-rotating Taylor–Couette (TC) flows under the influence of gravity. Extending previous studies, a thorough phase mapping is performed for the drum flow with a low viscosity working liquid (1 cP) and dp ≈ 500μm glass beads at a solid volume fraction of Φ = 0.11%. A wide range of cylinder radii is covered (⁠R₀ = 7-145mm⁠), and for the first time, a phase mapping is performed for a co-rotating TC flow for varying radius ratios. A total of 55 different geometrical combinations have been considered within the experiments. For both the drum and the TC flow, a series of clearly distinguishable patterns are observed including three different types of axial band structures as well as azimuthal band structures. The experiments indicate that in the case of the drum flow, the pattern formation strongly depends on the outer cylinder diameter, whereas in the case of the Taylor–Couette flow, the gap height has a strong effect on the pattern formation. In the TC case, it is observed that the wavelength of all band patterns shows a striking dependence on the cylinder radius and the curvature of the system.

Typ des Eintrags: Artikel
Erschienen: 2023
Autor(en): Brockmann, P. ; Tvarozek, M. ; Lausch, M. ; Hussong, Jeanette
Art des Eintrags: Bibliographie
Titel: Pattern formations in particle laden drum flows and Taylor–Couette flows with co-rotating cylinders
Sprache: Englisch
Publikationsjahr: 2023
Ort: Melville, NY
Verlag: AIP Publishing
Titel der Zeitschrift, Zeitung oder Schriftenreihe: Physics of Fluids
Jahrgang/Volume einer Zeitschrift: 35
(Heft-)Nummer: 8
DOI: 10.1063/5.0159908
URL / URN: https://pubs.aip.org/aip/pof/article/35/8/083304/2905149/Pat...
Kurzbeschreibung (Abstract):

In this work, previously undescribed particle patterns are reported for suspensions of initially uniform dispersed non-Brownian particles in completely filled rotating drum flows and in completely filled co-rotating Taylor–Couette (TC) flows under the influence of gravity. Extending previous studies, a thorough phase mapping is performed for the drum flow with a low viscosity working liquid (1 cP) and dp ≈ 500μm glass beads at a solid volume fraction of Φ = 0.11%. A wide range of cylinder radii is covered (⁠R₀ = 7-145mm⁠), and for the first time, a phase mapping is performed for a co-rotating TC flow for varying radius ratios. A total of 55 different geometrical combinations have been considered within the experiments. For both the drum and the TC flow, a series of clearly distinguishable patterns are observed including three different types of axial band structures as well as azimuthal band structures. The experiments indicate that in the case of the drum flow, the pattern formation strongly depends on the outer cylinder diameter, whereas in the case of the Taylor–Couette flow, the gap height has a strong effect on the pattern formation. In the TC case, it is observed that the wavelength of all band patterns shows a striking dependence on the cylinder radius and the curvature of the system.

Zusätzliche Informationen:

Artikel-ID: 083304

Fachbereich(e)/-gebiet(e): DFG-Sonderforschungsbereiche (inkl. Transregio)
DFG-Sonderforschungsbereiche (inkl. Transregio) > Sonderforschungsbereiche
DFG-Sonderforschungsbereiche (inkl. Transregio) > Sonderforschungsbereiche > SFB 1194: Wechselseitige Beeinflussung von Transport- und Benetzungsvorgängen
DFG-Sonderforschungsbereiche (inkl. Transregio) > Sonderforschungsbereiche > SFB 1194: Wechselseitige Beeinflussung von Transport- und Benetzungsvorgängen > Projektbereich A: Generische Experimente
DFG-Sonderforschungsbereiche (inkl. Transregio) > Sonderforschungsbereiche > SFB 1194: Wechselseitige Beeinflussung von Transport- und Benetzungsvorgängen > Projektbereich A: Generische Experimente > A03: Untersuchung der schnellen erzwungenen Entnetzung von Substraten mit komplexer Oberflächenmorphologie
Hinterlegungsdatum: 07 Dez 2023 14:28
Letzte Änderung: 07 Dez 2023 14:28
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