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Modelling fluid structure interaction using one-way coupling and proper orthogonal decomposition (POD)

机译:使用单向耦合和适当的正交分解(POD)建模流体结构相互作用

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Fluid structure interaction (FSI) problems are becoming highly complex as FSI has vast applications, which help to model many real life problems. Here, a one-way coupling strategy has been proposed for the FSI problem, where fluid has been modelled in computational fluid dynamics (CFD) and its interface with the solid structure has been modelled with a no-slip no-penetration boundary condition. Using Abaqus CFD simulations, the calculated interface pressure has been applied on the POD modes of the solid structure domain to obtain the displacement field. Here, we assumed that the motion of the flexible solid structure has no effects on the fluid flow as it is a one-way coupling. This assumption is well governed for the less flexible structure. However, it has been noted that this shows good predictions for flexible structures too. The benefit of this approach is that for the same interface boundary of the FSI domain, we can change the structural material properties and predict the results without going for the complete FSI simulation problem. Here, we solved a case study problem example for the fluid flow over a flexible beam and results are validated using the Abaqus FSI Cosimulation.
机译:随着FSI具有巨大应用,流体结构相互作用(FSI)问题变得非常复杂,这有助于建模许多现实生活问题。这里,已经提出了一种用于FSI问题的单向耦合策略,其中流体已经在计算流体动力学(CFD)中进行了建模,并且其与固体结构的界面已经用无滑移无渗透边界条件进行建模。使用ABAQUS CFD模拟,已经在固体结构域的POD模式上施加了计算的界面压力以获得位移场。这里,我们假设柔性固体结构的运动对流体流动没有影响,因为它是单向耦合。这种假设对于较小的结构较小的结构很好。然而,已经注意到这表明这也显示了对柔性结构的良好预测。这种方法的好处是,对于FSI域的相同接口边界,我们可以改变结构材料属性并预测结果而不用于完整的FSI仿真问题。这里,我们解决了一种案例研究问题示例,用于柔性光束上的流体流动,并使用ABAQUS FSI Cosimulation验证结果。

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