首页> 外文会议>International Conference on Offshore Mechanics and Arctic Engineering >INVESTIGATION OF THE FLOW AROUND TWO-CIRCULAR CYLINDERS EMPLOYING THE SPECTRAL ELEMENT METHOD WITH MODAL DECOMPOSITION
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INVESTIGATION OF THE FLOW AROUND TWO-CIRCULAR CYLINDERS EMPLOYING THE SPECTRAL ELEMENT METHOD WITH MODAL DECOMPOSITION

机译:用模态分解采用光谱元素法的双圆柱围绕双圆柱体的流动研究

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Flow induced vibrations play an important role in the process of fatigue in cylindrical elements of offshore platforms. One of the main sources of vibration is due to vortex shedding. Such vortices are originated from the separation of the boundary layer and the low-pressure regions cause the hydrodynamic forces to oscillate. This kind of vibration is known in literature as vortex-induced vibration (VIV), and it has some points that are not well understood yet. When a circular cross section is considered, the point of separation changes with the Reynolds number, increasing the complexity of the phenomena. Additionally, when two bluff bodies are disposed near each other, the vortices shed by one of them can reach the other, interfering with the vortex formation close to the later, and constituting another source of vibration. This work is an effort to provide a better comprehension of the vortex-induced vibration phenomena in a flow around groups of cylinders. In this paper, a detailed computational study of the flow around two rigid cylinders in a tandem arrangement is carried out. The spectral/hp element method is used in the simulations, with a modal decomposition in the span direction. The three-dimensional structures in the wake are analysed, and the level of synchronization of the flow along the span is verified for a gap of five diameters between the cylinders.
机译:流动诱导的振动在海上平台圆柱形元件中的疲劳过程中起重要作用。其中一个主要的振动来源是由于涡旋脱落。这种涡流源于边界层的分离,低压区域导致流体动力力振荡。这种振动在文献中是已知的,作为涡流诱导的振动(VIV),它有一些不太了解的点。当考虑圆形横截面时,分离点随着雷诺数而改变,增加了现象的复杂性。另外,当两个虚布体彼此附近设置时,其中一个凹陷的涡流可以到达另一个,干扰靠近后方的涡流形成,并构成另一个振动源。这项工作是一种努力在圆柱体组的流动中更好地理解涡旋诱导的振动现象。在本文中,进行了在串联布置中的两个刚性圆筒周围的流动的详细计算研究。频谱/ HP元素方法用于模拟中,在跨度方向上具有模态分解。分析了尾术中的三维结构,并且沿着跨度沿着跨度的流动的同步水平被验证在气缸之间的五个直径的间隙。

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