We present a new approach for the mechanically consistent modelling and simulation of fluid-structure interactions with contact. The fundamental idea consists of combining a relaxed contact formulation with the modelling of seepage through a porous layer of co-dimension 1 during contact. For the latter, a Darcy model is considered in a thin porous layer attached to a solid boundary in the limit of infinitesimal thickness. In combination with a relaxation of the contact conditions the computational model is both mechanically consistent and simple to implement. We analyse the approach in detailed numerical studies with both thick- and thin-walled solids, within a fully Eulerian and an immersed approach for the fluid-structure interaction and using fitted and unfitted finite element discretisations.
翻译:我们提出了一个新的方法,用于机械一致地模拟和模拟与接触的流体结构相互作用,其基本想法是,在接触期间,将放松接触的配方与渗漏的配方结合起来,通过一个多孔的共层进行渗漏的配方,对于后者而言,将Darcy模型放在一个薄的多孔层中考虑,该多孔层附着在无限厚度限度的固体边界上,同时放宽接触条件,计算模型既机械上一致,又简单,可以实施。我们通过详细的数字研究,对厚壁和薄壁固体,在完全的欧莱良和浸透的液结构相互作用方法内,以及使用适合和不合适的有限元素分解方法内,分析该方法。