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On the origin of spin-up processes in decaying two-dimensional turbulence

机译:关于衰减二维湍流中自旋过程的起源

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A remarkable feature of two-dimensional turbulence in a square container with no-slip walls is the spontaneous production of angular momentum due to flow-wall interactions, also known as spontaneous spin-up of the flow. In this paper we address the statistics of spin-up and discuss its likely origin. A signature of the spontaneous production of angular momentum is the development of a large-scale circulation cell. It is found that the global turnover time of the flow guides the spin-up process, which can be considered as a relaxation process of the macroscopic flow to an angular momentum containing state. The high turnover rate of the small-scale vortical structures emerging from the no-slip walls apparently has no significant effect on the spin-up rate. The presented data on the spin-up process strongly suggest that spin-up is not the net result of isolated vortex-wall interactions, with its associated pressure fluctuations on the domain boundaries, alone. The rapid spin-up of the flow clearly suggests the attraction to an angular momentum containing state.
机译:在带有防滑壁的方形容器中,二维湍流的显着特征是由于流-壁相互作用而自发产生角动量,也称为流的自发向上旋转。在本文中,我们讨论了加速的统计数据,并讨论了其可能的起源。角动量自发产生的标志是大规模循环池的发展。发现流动的总周转时间引导旋转加速过程,其可以被认为是宏观流动到包含角动量的状态的松弛过程。从防滑墙冒出来的小规模涡旋结构的高周转率显然对自旋率没有显着影响。所呈现的关于自旋过程的数据有力地表明,自旋不是孤立的涡旋-壁相互作用的最终结果,其相关的压力波动仅在区域边界上。流动的快速旋转清楚地表明了对包含角动量的状态的吸引。

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