Altmeyer S, Leschhorn A, Hoffmann Ch, Lücke M
Max Planck Institute for Dynamics and Self-Organization, 37073 Göttingen, Germany.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 May;87(5):053010. doi: 10.1103/PhysRevE.87.053010. Epub 2013 May 16.
The growth behavior of stationary axisymmetric vortices and of oscillatory, nonaxisymmetric spiral vortices in Taylor-Couette flow of a ferrofluid in between differentially rotating cylinders is analyzed using a numerical linear stability analysis. The investigation is done as a function of the inner and outer cylinder's rotation rates, the axial wave number of the vortex flows, and the magnitude of an applied homogeneous axial magnetic field. In particular, the consequences of incorporating elongational flow effects in the magnetization balance equation on the marginal control parameters that separate growth from decay behavior are determined. That is done for several values of the transport coefficient that measures the strength of these effects.
利用数值线性稳定性分析,研究了在不同旋转圆柱之间的铁磁流体泰勒 - 库埃特流中,定常轴对称涡旋以及振荡非轴对称螺旋涡旋的生长行为。该研究是作为内、外圆柱旋转速率、涡旋流的轴向波数以及外加均匀轴向磁场大小的函数进行的。特别地,确定了在磁化平衡方程中纳入伸长流效应后,对区分生长与衰减行为的临界控制参数的影响。针对测量这些效应强度的输运系数的几个值进行了上述研究。