首页> 外文会议>ASME Pressure Vessels and Piping conference >A NUMERICAL INVESTIGATION OF THE FLUIDELASTIC COUPLING FOR A CELL OF FLEXIBLE TUBES IN A SQUARE-IN-LINE BUNDLE SUBJECT TO WATER CROSS-FLOW
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A NUMERICAL INVESTIGATION OF THE FLUIDELASTIC COUPLING FOR A CELL OF FLEXIBLE TUBES IN A SQUARE-IN-LINE BUNDLE SUBJECT TO WATER CROSS-FLOW

机译:直角管束中的柔性管胞在水流作用下的流固耦合数值研究

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The unsteady flow motions and the force distribution in a normal square tube array subject to cross-flow induced vibrations are investigated by means of large-eddy simulations. The flow configuration and the operating conditions are taken from the experiments of Gosse et al. (PVP Conference, 2001). The set-up is made of 63 (9 rows and 7 columns) straight tube bundle. The tubes are arranged in a square in line pattern, and a cell of 9 flexible tubes, located in the middle of the bundle, may translate in the drag and lift directions. The LES of cross-flow induced vibrations of a cell of 9 flexible tubes in a normal square tube array is performed. A fully-coupled fluid-structure calculation is hence achieved using CodeSaturne, an open source CFD tool. Turbulence modeling is achieved using the large-eddy simulation framework based on the so-called classical Smagorinsky model. The tube dynamics is modeled by simple mass-spring-damper systems, and the motions of the fluid domain is accounted for by a moving mesh technique (Arbitrary-Lagrangian-Eulerian formulation). The consistency of the calculations is demonstrated by comparing the numerical data to the experiments of Gosse et al. (PVP Conference, 2001) in terms of tube amplitude and flow-induced force spectra, for various gap velocities. Investigation of the spectra of the flow-induced forces then shows that the tube motions ignite the emergence of flow phenomena at constant Strouhal numbers. The fluid-structure interactions are also responsible for the existence of a series of tones at rather constant frequencies, corresponding to the vibrational modes of the flexible cell.
机译:通过大涡模拟研究了法向方管阵列中受横流引起的振动的非定常运动和力分布。流量配置和运行条件取自Gosse等人的实验。 (PVP会议,2001年)。该装置由63个(9行和7列)直管束组成。这些管以正方形线型排列,并且位于管束中间的9个挠性管组成的单元可以在拖动和提升方向上平移。对正常方管阵列中的9个挠性管的单元进行横流引起的振动的LES。因此,使用开源CFD工具CodeSaturne可以实现完全耦合的流体结构计算。湍流建模是使用基于所谓的经典Smagorinsky模型的大涡模拟框架实现的。管动力学通过简单的质量弹簧阻尼器系统进行建模,而流体域的运动则通过移动网格技术(任意拉格朗日欧拉公式)进行解释。通过将数值数据与Gosse等人的实验进行比较,证明了计算的一致性。 (PVP Conference,2001),适用于各种间隙速度的管振幅和流致力谱。对流动引起的力谱的研究表明,管的运动在恒定的Strouhal数下点燃了流动现象的出现。流体-结构相互作用还负责以相当恒定的频率存在一系列音调,这与柔性单元的振动模式相对应。

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