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Numerical modeling and investigation of viscoelastic fluid-structure interaction applying an implicit partitioned coupling algorithm

机译:应用隐式分区耦合算法的粘弹性流固耦合数值模拟与研究

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We investigate the interaction between a viscoelastic Oldroyd-B fluid and an elastic structure via simulations applying an implicit partitioned coupling algorithm. Simulations are done for a flow through a channel with a flexible wall and a lid-driven cavity flow with flexible bottom. In addition, we make use of a mass-spring-dashpot prototype model to study the dynamic interaction problem. Both the simulation results and the analysis of the prototype model show that there are obvious differences in the fluid-structure interaction if the fluids are viscoelastic instead of purely viscous. These differences appear in the deformation of the solid at stationary state and in the equilibrium position, amplitude, frequency as well as phase shift of the oscillation. Moreover, we investigate the influence of numerical and physical parameters on the implicit partitioned coupling algorithm for simulation of viscoelastic fluid-structure interaction problems. (C) 2014 Elsevier Ltd. All rights reserved.
机译:我们通过应用隐式分区耦合算法的模拟研究粘弹性Oldroyd-B流体和弹性结构之间的相互作用。对通过具有柔性壁的通道的流动和具有柔性底部的盖驱动腔的流动进行了模拟。此外,我们利用质量-弹簧-缓冲器原型模型来研究动态相互作用问题。仿真结果和对原型模型的分析均表明,如果流体是粘弹性而不是纯粘性的,则流体-结构相互作用存在明显差异。这些差异出现在固体在固定状态下的变形以及平衡位置,振幅,频率以及振荡的相移中。此外,我们研究了数值和物理参数对隐式分区耦合算法的影响,以模拟粘弹性流固耦合问题。 (C)2014 Elsevier Ltd.保留所有权利。

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