Fluid Structure Interaction Simulation of a Benchmark Configuration With a Stress Blended-Eddy Simulation Model

H. P. Pratomo
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Abstract

In this work, the application of a shear stress transport based-RANS/LES turbulence modelling approach on a fluid-structure interaction (FSI) benchmark is considered after a transient computation of turbulent flow over the configuration on an LES quality mesh is to be performed. Within the unsteady decoupled simulation the scale resolving method successfully produces complex unsteady eddy sizes behind the reference test case. At a subcritical Reynolds number, a numerical Strouhal number of 0.184 which is close to a reference value of 0.18 is demonstrated by the RANS/LES turbulence model. In this scenario, a rubber added on the back part of a fixed circular cylinder is treated as a rigid thin plate during the pure flow simulation. On the LES grid resolution, the shielding function resided in the hybrid limiter of the scale resolving formulation is found to be strong to safeguard the activation of the RANS mode in the near wall region where the demarcation line between the RANS and LES modes uniquely resembles the geometry. Moreover, in the FSI simulation resolved turbulence scales interacting with moving and deforming rubber immersed in the subcritical Reynolds number-turbulent flow are successfully captured by the hybrid modelling technique coupled with a structural solver under the coupling procedure of an implicit partitioned approach. Similar with earlier studies with different scale-resolving proposals on the same FSI case, a periodic oscillating motion of the rubber that is produced from a phase-averaging method is also demonstrated in this present investigation. Nevertheless, a non-physical deformation of the rubber in the spanwise direction occurs. The new FSI result is evaluated with existing results from earlier works as a pivotal basis for further researches, such as implementations of new mesh stiffness model and filter width.
基于应力混合涡模拟模型的基准结构流固耦合仿真
在这项工作中,考虑了基于剪切应力传递的rans /LES湍流建模方法在流固耦合(FSI)基准上的应用,并在LES质量网格上进行了结构上的湍流瞬态计算。在非定常解耦模拟中,尺度分解方法成功地产生了参考测试用例后面复杂的非定常涡流尺寸。在亚临界雷诺数下,RANS/LES湍流模型的数值斯特劳哈尔数为0.184,接近参考值0.18。在这种情况下,在纯流动模拟中,在固定圆柱的后部添加橡胶作为刚性薄板。在LES网格分辨率上,发现尺度分解公式的混合限制器具有很强的屏蔽功能,可以保护RANS模式在近壁区域的激活,在近壁区域,RANS模式和LES模式之间的分界线独特地与几何形状相似。此外,在FSI模拟中,在隐式划分方法的耦合过程中,通过混合建模技术与结构求解器的耦合,成功地捕获了浸入亚临界雷诺数的运动和变形橡胶相互作用的可分辨湍流尺度。与早期在相同FSI情况下采用不同尺度解决方案的研究类似,本研究也证明了由相位平均方法产生的橡胶的周期性振荡运动。然而,橡胶在展向上发生非物理变形。新的FSI结果与早期工作的现有结果进行评估,作为进一步研究的关键基础,例如新的网格刚度模型和滤波器宽度的实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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