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The interaction of skewed vortex pairs: a model for blow-up of the Navier-Stokes equations

机译:偏涡对的相互作用:Navier-Stokes方程爆炸的模型

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The interaction of two propagating vortex pairs is considered, each pair being initially aligned along the positive principal axis of strain associated with the other. As a preliminary, the action of accelerating strain on a Burgers vortex is considered and the conditions for a finite-time singularity (or 'blow-up') are determined. The asymptotic high Reynolds number behaviour of such a vortex under non-axisymmetric strain, and the corresponding behaviour of a vortex pair, are described. This leads naturally to consideration of the interaction of the two vortex pairs, and identifies a mechanism by which blow-up may occur through self-similar evolution in an interaction zone where scale decreases in proportion to (t* - t)(1/2), where t* is the singularity time. The relevance of Leray scaling in this interaction zone is discussed. [References: 16]
机译:考虑了两个传播涡流对的相互作用,每个涡流对最初沿彼此相关的正应变主轴线对齐。首先,考虑了在Burgers涡上加速应变的作用,并确定了有限时间奇异性(或“爆炸”)的条件。描述了在非轴对称应变下这种旋涡的渐近高雷诺数行为,以及旋涡对的相应行为。这自然导致考虑了两个涡对的相互作用,并确定了一种机制,通过该机制,在尺度与(t *-t)(1/2 ),其中t *是奇异时间。讨论了Leray缩放在此交互区域中的相关性。 [参考:16]

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