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Analysis of the wake dynamics of stiff and flexible cantilever beams using POD and DMD

机译:使用POD和DMD分析刚性和柔性悬臂梁的尾流动力学

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摘要

The wake flow behind a cantilever beam of quadratic cross-section at a Reynolds number of 50,000 is investigated using detailed simulations. Two cases are considered, the first one using a stiff beam and the second one with a beam allowing for elastic deformation due to the hydrodynamic forces. The flow is simulated using an implicit large eddy simulation (ILES) approach in OpenFOAM and the structural deformation of the beam is found from a non-linear finite element approach using OOFEM. The motion of the fluid mesh due to the structural deformation is handled by an ALE method. The wake structures are investigated using proper orthogonal decomposition (POD) and dynamic mode decomposition (DMD) of the flow field. The results show that apart from the wake structures originating from the vortex shedding there is also a low frequency mode, which is an oscillatory motion in the stream-wise direction, present.
机译:使用详细的模拟研究了雷诺数为50,000的二次截面悬臂梁后面的尾流。考虑了两种情况,第一种情况使用刚性梁,第二种情况使用梁,以允许由于流体动力而产生弹性变形。在OpenFOAM中使用隐式大涡模拟(ILES)方法对流进行了模拟,并通过使用OOFEM的非线性有限元方法找到了梁的结构变形。由于结构变形而导致的流体网格的运动通过ALE方法进行处理。使用流场的适当正交分解(POD)和动态模式分解(DMD)研究尾流结构。结果表明,除了源自涡旋脱落的尾波结构外,还存在低频模式,该低频模式是沿流方向的振荡运动。

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