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VORTEX-INDUCED MOTION OF A SQUARE CYLINDER AT MODERATE REYNOLDS NUMBERS

机译:中雷诺数下方形圆柱体的涡激运动

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Bluff body structures exposed to ocean current can undergo vortex-induced motion (VIM) for certain geometric and physical conditions. Recently, the study of VIM has been gaining attention for many engineering applications, in particular offshore structures such as buoys, FPSOs, semi-submersibles, Spars and TLPs. The present work is a part of a systematic effort to investigate the VIM response of multi-columns floating platform. In real sea condition, floating platforms are in high Reynolds numbers region and flow patterns around structures are turbulent in nature. For the purpose of investigating and simulating accurately the nonlinear dynamic processes of vortex shedding, transport and wake interactions with the bluff body, the fundamental study of VIM around a square column at moderate Reynolds numbers (1500 ≤ Re ≤ 14000) is firstly investigated. In the present work, the transient flow pattern around a free vibrating square cylinder at moderate Reynolds numbers is numerically investigated by an open source CFD toolbox, OpenFOAM. Good consistency and agreement are found between the present numerical findings and that of experiments. The cylinder, with a blockage area of 4.2%, is mounted on an elastic support for free vibration in the transverse direction. Hybrid RANS-LES turbulence models are considered here for accurate prediction of massively separated turbulent wake flow while maintaining the reasonable computational cost. Three hybrid turbulence models, the DDES (Delayed Detached Eddy Simulation, the k-ω SST-DES (Detached Eddy Simulation), and the k-ω SST-SAS (Scale Adaptive Simulation), are studied and their results are compared with the reported experimental measurements. It is shown that the result of simulation with the k-ω SST-SAS model is closer to the reported literature than the other two and therefore, subsequently adopted for all the simulations of our study in this paper. The scaling effect of cylinder length in the spanwise direction is also studied with the objective to reduce the computational cost. From the comparison with the recent experimental measurements, the discrepancy between the present simulations of reducing cylinder length and the experiment increases only when Re ≥ 4000. This might stem from the increase in wavelength of some vortex shedding modes and turbulence intensity variation in the spanwise direction near the cylinder as Re ≥ 4000. The detailed flow patterns, 3D vortex structures (based on Q-criterion) and vortex-shedding modes are presented in this work as well.
机译:暴露于洋流的虚张声势的身体结构在某些几何和物理条件下会经历涡旋运动(VIM)。最近,VIM的研究已在许多工程应用中得到关注,尤其是海上结构,例如浮标,FPSO,半潜式潜水器,稀疏和TLP。本工作是研究多列浮动平台的VIM响应的系统工作的一部分。在真实的海洋条件下,浮动平台位于雷诺数较高的区域,并且结构周围的流动模式本质上是湍流的。为了准确地研究和模拟涡旋脱落,传输和尾流与阻流体相互作用的非线性动力学过程,首先研究了中雷诺数(1500≤Re≤14000)的方柱周围VIM的基础研究。在当前的工作中,通过开源CFD工具箱OpenFOAM对自由振动的方形圆柱体在雷诺数适中周围的瞬态流动模式进行了数值研究。在目前的数字发现和实验之间发现了良好的一致性和一致性。气缸的阻塞面积为4.2%,该气缸安装在弹性支撑上,可在横向自由振动。此处考虑混合RANS-LES湍流模型,以精确预测大规模分离的湍流尾流,同时保持合理的计算成本。研究了三种混合湍流模型:DDES(延迟分离涡流仿真,k-ωSST-DES(分离涡流仿真)和k-ωSST-SAS(比例自适应仿真),并将其结果与已报道的结果进行了比较。实验测量结果表明,用k-ωSST-SAS模型进行仿真的结果比其他两种方法更接近已报道的文献,因此,本文随后将其用于本研究的所有仿真中。为了减少计算量,还研究了翼展方向上的气瓶长度,从与最近的实验测量结果的比较来看,目前的减小气瓶长度的模拟与实验之间的差异仅在Re≥4000时才增加。从某些涡旋脱落模式的波长增加和圆柱附近的翼展方向湍流强度变化为Re≥4000得出。详细的流动模式,3D涡旋这项工作还介绍了基于Q准则的结构和降涡模式。

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