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首页> 外文期刊>Journal of Fluid Mechanics >Dynamics of flow structures and surface shapes in the surface switching of rotating fluid
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Dynamics of flow structures and surface shapes in the surface switching of rotating fluid

机译:旋转流体表面转换中流动结构和表面形状的动力学

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We present a study of the dynamics of the free-surface shape of a flow in a cylinder driven by a rotating bottom. Near the critical Reynolds number of the laminar-turbulent transition of the boundary layer, the free surface exhibits irregular surface switching between axisymmetric and non-axisymmetric shapes, and the switching often occurs with a significant change in the free-surface height. Although such surface deformation is known to be caused by the flow structures, the detailed flow structures of a rotating fluid with a large surface deformation have yet to be analysed. We thus investigate the velocity distribution and surface shape dynamics and show that the flow field during the loss of its axisymmetry is similar to that predicted by the theory of Tophoj et al. (Phys. Rev. Lett., vol. 110, 2013, 194502). The slight difference observed by quantitative comparison is caused by the fact that the basic flow of our study contains a weak rigid-body rotation in addition to the potential flow assumed by the theory. Furthermore, the observed non-axisymmetric surface shape, which has an elliptic horizontal cross-section, is generally associated with a quadrupole vortex structure. It is also found that the relative position between the free surface and the flow structure changes before and after the detachment of the free surface from the bottom. The change just after the detachment is drastic and occurs via a transient dipole-like vortex structure.
机译:我们目前对由旋转底部驱动的圆柱体中流体自由表面形状的动力学进行研究。在边界层的层流湍流过渡的临界雷诺数附近,自由表面在轴对称和非轴对称形状之间显示不规则的表面切换,并且切换通常发生在自由表面高度发生显着变化的情况下。尽管已知这种表面变形是由流动结构引起的,但是尚未分析具有较大表面变形的旋转流体的详细流动结构。因此,我们研究了速度分布和表面形状动力学,并表明在失去其轴对称性的过程中,流场与Tophoj等人的理论所预测的相似。 (Phys.Rev.Lett。,vol.110,2013,194502)。通过定量比较观察到的细微差异是由于以下事实造成的:我们研究的基本流程除理论假设的潜在流量外,还包含较弱的刚体旋转。此外,观察到的具有椭圆形水平横截面的非轴对称表面形状通常与四极涡旋结构相关。还发现自由表面与流动结构之间的相对位置在自由表面从底部分离之前和之后发生变化。分离之后的变化是剧烈的,并且通过瞬态偶极子状的涡旋结构发生。

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