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High-order finite element methods for a pressure Poisson equation reformulation of the Navier-Stokes equations with electric boundary conditions

机译:电气边界条件的Navier-Stokes方程的压力泊松方程重构的高阶有限元方法

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Pressure Poisson equation (PPE) reformulations of the incompressible Navier-Stokes equations (NSE) replace the incompressibility constraint by a Poisson equation for the pressure and a suitable choice of boundary conditions. This yields a time-evolution equation for the velocity field only, with the pressure gradient acting as a nonlocal operator. Thus, numerical methods based on PPE reformulations are representatives of a class of methods that have no principal limitations in achieving high order. In this paper, it is studied to what extent high-order methods for the NSE can be obtained from a specific PPE reformulation with electric boundary conditions (EBC). To that end, implicit-explicit (IMEX) time-stepping is used to decouple the pressure solve from the velocity update, while avoiding a parabolic time-step restriction; and mixed finite elements are used in space, to capture the structure imposed by the EBC. Via numerical examples, it is demonstrated that the methodology can yield at least third order accuracy in space and time. (C) 2020 Elsevier B.V. All rights reserved.
机译:Pressure Poisson equation (PPE) reformulations of the incompressible Navier-Stokes equations (NSE) replace the incompressibility constraint by a Poisson equation for the pressure and a suitable choice of boundary conditions.这仅产生速度场的时间演变方程,其压力梯度用作非识别算子。因此,基于PPE重新重整的数值方法是一类方法的代表,其在实现高阶方面没有主要限制。在本文中,研究了NSE的高阶方法可以从电动边界条件(EBC)的特定PPE重构的程度。为此,使用隐式显式(IMEX)时间梯度用于将压力从速度更新删除,同时避免抛物线时间步长限制;在空间中使用混合有限元,以捕获EBC施加的结构。通过数值示例,证明该方法可以在空间和时间内产生至少第三顺序精度。 (c)2020 Elsevier B.v.保留所有权利。

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