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Direct numerical simulation of rotating fluid flow in a closed cylinder

机译:闭式圆筒内旋转流体流动的直接数值模拟

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摘要

Present numerical simulations of the transition scenario of a rotating fluid flow in a closed cylinder are presented, where the motion is created by a rotating lid. The numerical algorithm, which is based on a finite-difference discretization of the axisymmetric Navier-Stokes equations, is validated against experimental visualizations of both transient and stable periodic flows. The complexity of the flow problem is illuminated numerically by injecting flow tracers into the flow domain and following their evolution in time. The vortex dynamics appears as stretching, folding and squeezing of flow structures which wave along the contour of a central vortex core. The main purpose of the study is to clarify the mechanisms of the transition scenario and relate these to experiences known from other dynamical systems and bifurcation theory. The dynamical system was observed to exhibit up to three multiple solutions for the same Reynolds number, and to contain four discernible branches. The transition to strange attractor behavior was identified as a nontrivial Ruelle-Takens transition through a transient torus. The various solution branches of the rotating flow problem are illustrated by phase portraits and summarized on a frequency diagram. ©1995 American Institute of Physics.
机译:提出了在封闭的圆柱体中旋转流体流动的过渡情况的当前数值模拟,其中运动是由旋转盖产生的。该数值算法基于轴对称Navier-Stokes方程的有限差分离散化,并针对瞬态和稳定周期流动的实验可视化进行了验证。通过将流动示踪剂注入流域并跟踪其随时间的变化,从数字上阐明了流动问题的复杂性。涡流动力学表现为沿中心涡流芯轮廓波动的流动结构的拉伸,折叠和挤压。该研究的主要目的是阐明过渡情景的机制,并将其与其他动力系统和分叉理论中已知的经验联系起来。对于相同的雷诺数,观察到该动力学系统最多显示三个多重解,并且包含四个可辨别的分支。向奇异的吸引子行为的过渡被确定为通过短暂的圆环的非平凡的Ruelle-Takens过渡。相位流图说明了旋转流问题的各种解决方案分支,并在频率图上进行了总结。 ©1995美国物理研究所。

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