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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Verification of fluid-structure-interaction algorithms through the method of manufactured solutions for actuator-line applications

机译:APS -70TH流体动力学APS划分的年会 - 事件 - 通过用于执行器线应用的制造解决方案的方法验证流体结构 - 交互算法

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Demonstrating expected convergence rates with spatial- and temporal-grid refinement is the ``gold standard'' of code and algorithm verification. However, the lack of analytical solutions and generating manufactured solutions presents challenges for verifying codes for complex systems. The application of the method of manufactured solutions (MMS) for verification for coupled multi-physics phenomena like fluid-structure interaction (FSI) has only seen recent investigation. While many FSI algorithms for aeroelastic phenomena have focused on boundary-resolved CFD simulations, the actuator-line representation of the structure is widely used for FSI simulations in wind-energy research. In this work, we demonstrate the verification of an FSI algorithm using MMS for actuator-line CFD simulations with a simplified structural model. We use a manufactured solution for the fluid velocity field and the displacement of the SMD system. We demonstrate the convergence of both the fluid and structural solver to second-order accuracy with grid and time-step refinement.
机译:用空间和时间网格精炼展示预期的收敛速率是代码和算法验证的“黄金标准”。然而,缺乏分析解决方案和生成制造的解决方案对复杂系统验证码的挑战具有挑战。制造解决方案(MMS)方法的应用仅仅看到了近期调查的耦合多物理现象等耦合多物理现象。虽然适用于空气弹性现象的许多FSI算法集中在界限附近的CFD仿真上,但是该结构的致动机线表示广泛用于风能研究中的FSI模拟。在这项工作中,我们通过简化的结构模型展示了使用MMS进行执行器线CFD模拟的FSI算法的验证。我们使用用于流体速度场的制造解决方案和SMD系统的位移。我们展示了流体和结构求解器的收敛性与网格和时间步进改进的二阶精度。

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