Shifted boundary polynomial corrections for compressible flows: high order on curved domains using linear meshes

M. Ciallella, Elena Gaburro, Marco Lorini, M. Ricchiuto
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引用次数: 1

Abstract

In this work we propose a simple but effective high order polynomial correction allowing to enhance the consistency of all kind of boundary conditions for the Euler equations (Dirichlet, characteristic far-field and slip-wall), both in 2D and 3D, preserving a high order of accuracy without the need of curved meshes. The method proposed is a simplified reformulation of the Shifted Boundary Method (SBM) and relies on a correction based on the extrapolated value of the in cell polynomial to the true geometry, thus not requiring the explicit evaluation of high order Taylor series. Moreover, this strategy could be easily implemented into any already existing finite element and finite volume code. Several validation tests are presented to prove the convergence properties up to order four for 2D and 3D simulations with curved boundaries, as well as an effective extension to flows with shocks.
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可压缩流的移边多项式修正:使用线性网格的高阶曲面域
在这项工作中,我们提出了一种简单而有效的高阶多项式校正,允许在2D和3D中增强欧拉方程(Dirichlet,特征远场和滑移壁)各种边界条件的一致性,从而在不需要曲面网格的情况下保持高阶精度。该方法是位移边界法(SBM)的简化重新表述,它依赖于基于单元多项式的外推值对真实几何的修正,因此不需要显式地计算高阶泰勒级数。此外,该策略可以很容易地实现到任何已经存在的有限元和有限体积的代码。通过若干验证试验,证明了该方法在二维和三维曲面边界模拟中的收敛性可达4阶,并对激波流动进行了有效推广。
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