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Ghost manifolds in slow-fast systems, with applications to unsteady fluid flow separation

机译:慢速系统中的重影歧管,适用于不稳定的流体分离

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摘要

Consider a structurally stable nonhyperbolic critical manifold in a nonautonomous dynamical system. Despite the lack of hyperbolicity and slow dynamics, sharp moving spikes can develop and move along this critical manifold. An important physical example of this phenomenon is moving separation behind a cylinder in accelerating crossflow. Using a combination of analytic and numerical methods, we uncover the geometric structure responsible for moving spikes. This structure, a ghost manifold, turns out to have a footprint on the critical manifold even though the two manifolds are separated by a boundary layer. We illustrate our results on analytical and numerical examples of off-wall fluid flow separation.
机译:考虑非自治动力系统中结构稳定的非双曲临界流形。尽管缺乏双曲线和缓慢的动力,但尖锐的移动尖峰仍会沿此关键流形发展并移动。这种现象的一个重要的物理示例是,在加速错流时,将分离移动到了圆柱体的后面。结合分析和数值方法,我们发现了导致移动峰值的几何结构。即使两个歧管被边界层分开,这种结构(重影歧管)在关键歧管上也具有覆盖区。我们将通过离壁流体流动分离的分析和数值示例来说明我们的结果。

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