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A STRONG FSI COUPLING SCHEME TO INVESTIGATE THE ONSET OF RESONANCE OF CYLINDERS IN TANDEM ARRANGEMENT

机译:研究串联中圆柱共振的强FSI耦合方案

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This paper considers numerical simulations of two-dimensional viscous flow past oscillating cylinders using an efficient, oscillation-free, Cartesian grid based Immersed Boundary Method (IBM). The direct forcing approach originally developed by Uhlmann for fixed and moving boundaries is employed. The IBM utilizes an improved smoothing technique for the discrete delta function and a solid-domain forcing strategy. A strong-coupling scheme is employed in which both, fluid and structure, are treated as linked components of a single dynamical system and all governing equations are iterated until convergence within the same time step. The accuracy, validity and efficiency of the utilized IBM are demonstrated by a series of validation cases including Vortex Induced Vibration (VIV) of an elastically mounted single cylinder and VIV assessment of a pair of cylinders in tandem arrangement. The method provides a good estimation of the single cylinder vortex lock in regime and fairly accurate predictions of the wake interference effect on the onset of resonance in flows involving multiple cylinders in an in-line arrangement.
机译:本文考虑了使用有效的,无振荡的,基于笛卡尔网格的浸入边界方法(IBM)对经过振荡圆柱的二维粘性流进行数值模拟的方法。使用了由Uhlmann最初为固定边界和移动边界开发的直接强制方法。 IBM利用改进的平滑技术来实现离散增量功能和固态域强制策略。采用强耦合方案,其中流体和结构都被视为单个动力学系统的链接组件,并且迭代所有控制方程,直到在同一时间步长内收敛为止。通过一系列验证案例,包括弹性安装的单缸的涡激振动(VIV)和串联布置的一对缸的VIV评估,证明了所使用IBM的准确性,有效性和效率。该方法可以很好地估计单缸涡流状态,并可以精确地预测尾流干扰对串联布置中涉及多个缸的流中共振开始的影响。

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    《》|2014年|V002T08A056.1-V002T08A056.10|共10页
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