首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2009 >PREDICTION OF VIV RESPONSE OF A FLEXIBLE PIPE BY COUPLING A VISCOUS FLOW SOLVER AND A BEAM FINITE ELEMENT SOLVER
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PREDICTION OF VIV RESPONSE OF A FLEXIBLE PIPE BY COUPLING A VISCOUS FLOW SOLVER AND A BEAM FINITE ELEMENT SOLVER

机译:通过将粘性流动求解器与梁有限元求解器耦合来预测柔性管的活体响应

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The paper describes a fluid-structure interaction (FSI) modeling approach to predict the VIV response of a flexible pipe by coupling a three-dimensional viscous incompressible Navier-Stokes solver with a beam finite element solver - in time domain. The flexible pipe is modeled as an Euler-Bernoulli beam subject to instantaneous flow-induced forces and solved using Cl conforming finite element basis functions in space and an unconditionally stable Newmark-type discretization scheme in time. At each time step the instantaneous incremental displacement is fed back to the fluid flow solver, where the position of the pipe is updated to compute the resulting instantaneous flow field and associated flow-induced forces. Numerical predictions from the FSI model are compared to experimental measurements of a flexible pipe subject to uniform free-stream currents.
机译:本文介绍了一种流固耦合建模方法,通过在时域中将三维粘性不可压缩Navier-Stokes解算器与梁有限元解算器耦合来预测挠性管的VIV响应。将该柔性管建模为承受瞬时流感应力的Euler-Bernoulli梁,并使用空间中符合Cl的有限元基本函数和无条件稳定的Newmark型离散化方案进行求解。在每个时间步长处,瞬时增量位移都将反馈到流体流动求解器,在该处流体的位置更新,以计算所得的瞬时流场和相关的流体感应力。将FSI模型的数值预测结果与在均匀的自由流作用下的挠性管的实验测量结果进行比较。

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