TY - JOUR
T1 - Analysis of laminar magnetohydrodynamic flow in the wake past a spheroid
AU - Liu, Tong Tong
AU - Pan, Jun Hua
AU - Ni, Ming Jiu
N1 - Publisher Copyright:
© The Author(s), 2025. Published by Cambridge University Press.
PY - 2025/8/26
Y1 - 2025/8/26
N2 - This study employs a direct numerical simulation method to investigate the wake pattern evolutions of flows past an insulated spheroid and provides expressions of force and torque coefficients influenced by a streamwise magnetic field in an incompressible, conducting, viscous fluid. A total of 1150 cases are examined covering a parameter range of Reynolds number, aspect ratio, inclination angle, and interaction parameter, where and, respectively, reflect the anisotropy of the spheroid and the strength of magnetic field. Nine wake patterns are classified based on wake structure features and summarised in three maps of regimes according to the inclination angle. The transition mechanisms among these wake patterns are also investigated under the influence of a streamwise magnetic field. Furthermore, expressions for drag, lift and torque coefficients are derived with the help of three fundamental physical criteria. Results indicate that the force and torque expressions give a good prediction within the present parameter space.
AB - This study employs a direct numerical simulation method to investigate the wake pattern evolutions of flows past an insulated spheroid and provides expressions of force and torque coefficients influenced by a streamwise magnetic field in an incompressible, conducting, viscous fluid. A total of 1150 cases are examined covering a parameter range of Reynolds number, aspect ratio, inclination angle, and interaction parameter, where and, respectively, reflect the anisotropy of the spheroid and the strength of magnetic field. Nine wake patterns are classified based on wake structure features and summarised in three maps of regimes according to the inclination angle. The transition mechanisms among these wake patterns are also investigated under the influence of a streamwise magnetic field. Furthermore, expressions for drag, lift and torque coefficients are derived with the help of three fundamental physical criteria. Results indicate that the force and torque expressions give a good prediction within the present parameter space.
KW - MHD and electrohydrodynamics
KW - particle/fluid flow
UR - https://www.scopus.com/pages/publications/105014197289
U2 - 10.1017/jfm.2025.10482
DO - 10.1017/jfm.2025.10482
M3 - 文章
AN - SCOPUS:105014197289
SN - 0022-1120
VL - 1017
JO - Journal of Fluid Mechanics
JF - Journal of Fluid Mechanics
M1 - A43
ER -