We present an immersed boundary method to simulate the creeping motion of a rigid particle in a fluid described by the Stokes equations discretized thanks to a finite element strategy on unfitted meshes, called Phi-FEM, that uses the description of the solid with a level-set function. One of the advantages of our method is the use of standard finite element spaces and classical integration tools, while maintaining the optimal convergence (theoretically in the H1 norm for the velocity and L2 for pressure; numerically also in the L2 norm for the velocity).
翻译:我们提出了一个浸入式边界方法,以模拟硬质粒子在斯托克斯方程式描述的液体中的爬动运动,这种流体是离散的,其原因是对不合格的梅舍的有限元素战略(称为Phi-FEM)使用了用定级函数描述固体的描述。我们方法的一个优点是使用标准有限元素空间和经典集成工具,同时保持最佳趋同(速度的H1规范的理论上和压力的L2;速度的L2规范的数值也是这样)。