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首页> 外文期刊>Journal of Computational Physics >Generalized thick strip modelling for vortex-induced vibration of long flexible cylinders
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Generalized thick strip modelling for vortex-induced vibration of long flexible cylinders

机译:长条形柔性圆柱体涡激振动的广义厚带建模

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摘要

We propose a generalized strip modelling method that is computationally efficient for the VIV prediction of long flexible cylinders in three-dimensional incompressible flow. In order to overcome the shortcomings of conventional strip-theory-based 2D models, the fluid domain is divided into "thick" strips, which are sufficiently thick to locally resolve the small scale turbulence effects and three dimensionality of the flow around the cylinder. An attractive feature of the model is that we independently construct a three-dimensional scale resolving model for individual strips, which have local spanwise scale along the cylinder's axial direction and are only coupled through the structural model of the cylinder. Therefore, this approach is able to cover the full spectrum for fully resolved 3D modelling to 2D strip theory. The connection between these strips is achieved through the calculation of a tensioned beam equation, which is used to represent the dynamics of the flexible body. In the limit, however, a single "thick" strip would fill the full 3D domain. A parallel Fourier spectral/hp element method is employed to solve the 3D flow dynamics in the strip-domain, and then the VIV response prediction is achieved through the strip-structure interactions. Numerical tests on both laminar and turbulent flows as well as the comparison against the fully resolved DNS are presented to demonstrate the applicability of this approach. (C) 2016 Published by Elsevier Inc.
机译:我们提出了一种通用的带状建模方法,该方法对于三维不可压缩流中的长柔性圆柱体的VIV预测具有计算效率。为了克服常规基于条带理论的2D模型的缺点,将流体域划分为“厚”条带,其厚度足够大,可以局部解决小规模的湍流效应和围绕圆柱体的三维流动。该模型的一个吸引人的特征是,我们为单个钢带独立构建了一个三维比例尺解析模型,该模型沿圆柱体的轴向具有局部的展向比例,并且仅通过圆柱体的结构模型进行耦合。因此,这种方法能够涵盖将2D条形理论完全解析的3D建模的全部范围。这些条之间的连接是通过计算张紧梁方程来实现的,该方程用于表示柔性体的动力学。但是,在限制范围内,单个“厚”带将填充整个3D域。采用并行傅立叶谱/ hp单元法求解带状区域中的3D流动动力学,然后通过带状结构相互作用实现VIV响应预测。提出了层流和湍流的数值测试,以及与完全解析的DNS的比较,以证明此方法的适用性。 (C)2016由Elsevier Inc.发布

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