论文标题

PFEM中的广义α方案,用于不可压缩的Navier-Stokes方程的速度压力和位移压力公式

Generalized-alpha scheme in the PFEM for velocity-pressure and displacement-pressure formulations of the incompressible Navier-Stokes equations

论文作者

Fernández, Eduardo, Février, Simon, Lacroix, Martin, Boman, Romain, Ponthot, Jean-Philippe

论文摘要

尽管粒子有限元法(PFEM)在流体流量模拟和广义 - α时整合方法的杰出成功中的使用越来越多,但很少讨论的讨论被致力于其合并性能。这项工作旨在通过解决三个主要方面在这方面做出贡献。首先,它包括PFEM中广义 - α方法的详细实现分析。这项工作识别和比较了文献的不同实施方法,这些方法主要在alpha-Interpolal的术语(状态变量或动量方程的力量)和时间整合方案中压力的处理类型。其次,该工作将广义 - α方法的性能与不可压缩的Navier-Stokes方程解决方案的向后欧拉和Newmark方案进行了比较。第三,这项研究不仅要考虑经典速度压力制剂,还可以考虑到对流体结构相互作用领域引起兴趣的位移压力公式。这项工作是使用各种2D和3D基准问题进行的,例如流体倾斜,孤立波的传播,围绕圆柱体的流以及圆柱水柱的塌陷。

Despite the increasing use of the Particle Finite Element Method (PFEM) in fluid flow simulation and the outstanding success of the Generalized-alpha time integration method, very little discussion has been devoted to their combined performance. This work aims to contribute in this regard by addressing three main aspects. Firstly, it includes a detailed implementation analysis of the Generalized-alpha method in PFEM. The work recognizes and compares different implementation approaches from the literature, which differ mainly in the terms that are alpha-interpolated (state variables or forces of momentum equation) and the type of treatment for the pressure in the time integration scheme. Secondly, the work compares the performance of the Generalized-alpha method against the Backward Euler and Newmark schemes for the solution of the incompressible Navier-Stokes equations. Thirdly, the study is enriched by considering not only the classical velocity-pressure formulation but also the displacement-pressure formulation that is gaining interest in the fluid-structure interaction field. The work is carried out using various 2D and 3D benchmark problems such as the fluid sloshing, the solitary wave propagation, the flow around a cylinder, and the collapse of a cylindrical water column.

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