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首页> 外文期刊>Journal of Fluids and Structures >Numerical scheme for riser motion calculation during 3-D VIV simulation
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Numerical scheme for riser motion calculation during 3-D VIV simulation

机译:3-D VIV仿真期间立管运动计算的数值方案

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摘要

This paper presents a numerical scheme for riser motion calculation and its application to riser VIV simulations. The discretisation of the governing differential equation is studied first The top tensioned risers are simplified as tensioned beams. A centered space and forward time finite difference scheme is derived from the governing equations of motion. Then an implicit method is adopted for better numerical stability. The method meets von Neumann criteria and is shown to be unconditionally stable. The discretized linear algebraic equations are solved using a LU decomposition method. This approach is then applied to a series of benchmark cases with known solutions. The comparisons show good agreement. Finally the method is applied to practical riser VIV simulations. The studied cases cover a wide range of riser VIV problems, i.e. different riser outer diameter, length, tensioning conditions, and current profiles. Reasonable agreement is obtained between the numerical simulations and experimental data on riser motions and cross-flow VIV a/D. These validations and comparisons confirm that the present numerical scheme for riser motion calculation is valid and effective for long riser VIV simulation.
机译:本文提出了一种用于冒口运动计算的数值方案,并将其应用于冒口VIV仿真。首先研究控制微分方程的离散化。顶部受拉立管简化为受拉梁。从运动的控制方程式导出了一个中心空间和正向时间有限差分方案。然后采用隐式方法以获得更好的数值稳定性。该方法符合冯·诺依曼(von Neumann)标准,并且证明是无条件稳定的。离散线性代数方程使用LU分解法求解。然后将该方法应用于具有已知解决方案的一系列基准案例。比较显示出良好的一致性。最后,该方法被应用于实际的立管VIV仿真。研究的案例涵盖了广泛的立管VIV问题,即不同的立管外径,长度,张紧条件和电流曲线。在立管运动和横流VIV a / D的数值模拟与实验数据之间获得了合理的一致性。这些验证和比较证实,用于立管运动计算的当前数值方案对于长立管VIV仿真是有效的。

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