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Implementation of a stabilized finite element formulation for the incompressible Navier-Stokes equations based on a pressure gradient projection

机译:基于压力梯度投影的不可压缩Navier-stokes方程的稳定有限元公式的实现

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摘要

We discuss in this paper some implementation aspects of a finite element formulation for the incompressible Navier-Stokes equations which allows the use of equal order velocity-pressure interpolations. The method consists in introducing the projection of the pressure gradient and adding the difference between the pressure Laplacian and the divergence of this new field to the incompressibility equation, both multiplied by suitable algorithmic parameters. The main purpose of this paper is to discuss how to deal with the new variable in the implementation of the algorithm. Obviously, it could be treated as one extra unknown, either explicitly or as a condensed variable. However, we take for granted that the only way for the algorithm to be efficient is to uncouple it from the velocity-pressure calculation in one way or another. Here we discuss some iterative schemes to perform this uncoupling of the pressure gradient projection (PGP) from the calculation of the velocity and the pressure, both for the stationary and the transient Navier-Stokes equations. In the first case, the strategies analyzed refer to the interaction of the linearization loop and the iterative segregation of the PGP, whereas in the second the main dilemma concerns the explicit or implicit treatment of the PGP.
机译:我们在本文中讨论了不可压缩的Navier-Stokes方程的有限元公式的实现方面,该公式允许使用等阶速度-压力插值。该方法包括引入压力梯度的投影,并将压力拉普拉斯算子和该新场的发散之间的差加到不可压缩性方程中,二者均乘以适当的算法参数。本文的主要目的是讨论在算法的实现中如何处理新变量。显然,可以将其视为一个额外的未知数,无论是显式的还是浓缩的变量。但是,我们认为该算法有效的唯一方法是以一种或另一种方式将其与速度-压力计算分离。在这里,我们讨论一些迭代方案,以从稳态和瞬态Navier-Stokes方程的速度和压力计算中执行压力梯度投影(PGP)的这种解耦。在第一种情况下,所分析的策略是指线性化环与PGP的迭代隔离的相互作用,而在第二种情况下,主要的难题在于对PGP的显式或隐式处理。

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