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Boundary formulations for high-order finite differences on staggered meshes

机译:交错网格上高阶有限差分的边界公式

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摘要

Discretizations of the compressible flow equations with flow variables defined at different staggered positions on a regular mesh have accuracy and stability advantages over standard collocated discretization, but implementation of boundary conditions is hampered without all flow variables available at any boundary point. Boundary schemes for implementation of the boundary conditions compatible with staggered mesh discretizations are considered in this study. We focus on a combination of fourth- and fifth-order schemes near the boundary that are stable when sixth-order centered schemes are used for the interior points. Characteristics-based formulations provide a physically meaningful treatment for all the variables, avoiding the use of extrapolation. However its application on staggered meshes has not been systematically studied and its implementation is unclear since this method requires collocation of all the variables at the boundary, which is not natural for standard staggered mesh formulations. We show that including all the flow variables at the boundary can be done in a way that does not affect resolution or accuracy of the formulation. Predictions based upon analysis with model equations are verified with a staggered mesh flow solver.
机译:与在规则并置网格上的不同交错位置定义了流量变量的可压缩流量方程的离散化相比,标准的并置离散化具有精度和稳定性方面的优势,但是在没有任何边界点所有流量变量可用的情况下,边界条件的实现受到了阻碍。在这项研究中考虑了与交错网格离散化兼容的边界条件的实现边界方案。我们关注边界附近的四阶和五阶方案的组合,当将六阶居中方案用于内部点时,这些方案是稳定的。基于特征的公式化为所有变量提供了物理上有意义的处理,从而避免了外推法的使用。但是,由于其需要在边界处配置所有变量,因此对于交错网格的应用尚未进行系统的研究,尚不清楚它的实现方式,这对于标准交错网格公式来说是不自然的。我们表明,在边界处包括所有流量变量可以以不影响制剂的分辨率或准确性的方式完成。使用交错式网格流求解器验证基于模型方程分析的预测。

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