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Numerical simulations of the transition from laminar to chaotic behaviour of the planar vortex flow past a circular cylinder

机译:流经圆柱的平面涡流从层流到混沌行为过渡的数值模拟

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In the present paper the study of the two-dimensional flow field past a circular cylinder for Reynolds number up to 5 center dot 10(5) is addressed. A Lagrangian particle method approach has been exploited and the simulations have been performed with high spatial resolutions in order to resolve all the main vortical scales. Long simulation time evolutions have been performed in order to get the vortex shedding dynamics as well as the Fourier analysis of the loads. The adopted numerical method allows to discuss both local (boundary layer and near wake dynamics) and global (far wake dynamics) aspects of the problem. The fundamental aspects related to the different identified flow states as well as the drag crisis mechanism are investigated.(C) 2016 Elsevier B.V. All rights reserved.
机译:在本文中,研究了通过圆柱的二维流场的雷诺数直到5个中心点10(5)的研究。拉格朗日粒子法已被采用,并且模拟已经以高空间分辨率进行,以解决所有主要涡旋尺度。为了获得涡旋脱落动力学以及载荷的傅立叶分析,已经进行了长时间的仿真。所采用的数值方法可以同时讨论问题的局部(边界层和近尾动力学)和全局(远尾动力学)方面。 (C)2016 Elsevier B.V.保留所有权利。

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