TY - JOUR
T1 - The wake structure and transition process of a flow past a sphere affected by a streamwise magnetic field
AU - Pan, Jun Hua
AU - Zhang, Nian Mei
AU - Ni, Ming Jiu
N1 - Publisher Copyright:
© 2018 Cambridge University Press.
PY - 2018/5/10
Y1 - 2018/5/10
N2 - The wake structure and transition process of an incompressible viscous fluid flow past a sphere affected by an imposed streamwise magnetic field are investigated numerically over flow regimes that include steady and unsteady laminar flows at Reynolds numbers up to 300. For cases without a magnetic field, a subregion with the existence of a limit cycle is found in the range 210 < Re < 270. The point of division is between Re = 220 and Re = 230. For cases with a streamwise magnetic field, five wake patterns are the steady axisymmetric wake with an attached separation bubble, the steady plane symmetric wake with a small spiral dismissed, the steady plane symmetric wake with a limit cycle, the steady plane symmetric wake with a small spiral fed by the upstream fluid and the unsteady plane symmetric wake with a wave-like oscillation or vortex shedding. Under the influence of an imposed streamwise magnetic field, the wake will be transitioned to various patterns. An interesting 'reversion phenomenon', which describes the topological structure behind a sphere with a higher Reynolds number and a certain interaction parameter which corresponds to a lower Reynolds number case with a certain interaction parameter or a much lower Reynolds number case without a magnetic field, is also found. The principal results of the present work are summarized in a map of regimes in the {N, Re} plane.
AB - The wake structure and transition process of an incompressible viscous fluid flow past a sphere affected by an imposed streamwise magnetic field are investigated numerically over flow regimes that include steady and unsteady laminar flows at Reynolds numbers up to 300. For cases without a magnetic field, a subregion with the existence of a limit cycle is found in the range 210 < Re < 270. The point of division is between Re = 220 and Re = 230. For cases with a streamwise magnetic field, five wake patterns are the steady axisymmetric wake with an attached separation bubble, the steady plane symmetric wake with a small spiral dismissed, the steady plane symmetric wake with a limit cycle, the steady plane symmetric wake with a small spiral fed by the upstream fluid and the unsteady plane symmetric wake with a wave-like oscillation or vortex shedding. Under the influence of an imposed streamwise magnetic field, the wake will be transitioned to various patterns. An interesting 'reversion phenomenon', which describes the topological structure behind a sphere with a higher Reynolds number and a certain interaction parameter which corresponds to a lower Reynolds number case with a certain interaction parameter or a much lower Reynolds number case without a magnetic field, is also found. The principal results of the present work are summarized in a map of regimes in the {N, Re} plane.
KW - magnetohydrodynamics
KW - materials processing flows
KW - vortex flows
UR - https://www.scopus.com/pages/publications/85042905147
U2 - 10.1017/jfm.2018.133
DO - 10.1017/jfm.2018.133
M3 - 文章
AN - SCOPUS:85042905147
SN - 0022-1120
VL - 842
SP - 248
EP - 272
JO - Journal of Fluid Mechanics
JF - Journal of Fluid Mechanics
ER -