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Order of accuracy study of unstructured grid finite volume upwind schemes

机译:非结构网格有限体积迎风方案的精度研究

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A detailed numerical study is presented of the order of accuracy of some proposed cell centered, finite volume schemes used for the solution of the 2-D gasdynamic equations on triangular unstructured grids. The schemes studied are based on a MUSCL-type linear reconstruction of interface properties, which seeks to achieve 2nd-order accuracy in space. They are also nominally flux-vector splitting-type schemes, and the results here presented use Liou's AUSM+ algorithm. The basic aspects effecting the scheme's order of accuracy are the form in which the reconstruction process is designed and the form in which the limiting process is performed. Two basic concepts are tested with regard to the reconstruction process, namely the use of 1-D-type and gradient-based reconstruction. The limiter can also be constructed as a 1-D-type limiter or as a truly multi-dimensional limiter. The schemes are tested on a linear convection-like model equation and the numerical solutions are compared to the analytical solution, for different mesh sizes, in order to assess the scheme's order of accuracy. For comparison purposes, the results obtained with a centered scheme are also presented. Second-order accuracy is shown to be only obtained for the centered scheme. The nominally 2nd-order upwind algorithms lead to actual orders of accuracy, which vary from 0.9 to 1.5.
机译:给出了详细的数值研究,涉及一些提出的以单元为中心的有限体积方案的精度顺序,该方案用于求解三角非结构化网格上的二维气体动力学方程。研究的方案基于接口属性的MUSCL型线性重构,旨在实现空间的二阶精度。它们也是名义上的磁通矢量分裂式方案,此处给出的结果使用Liou的AUSM +算法。影响方案准确性顺序的基本方面是设计重构过程的形式和执行限制过程的形式。关于重建过程,测试了两个基本概念,即使用一维类型和基于梯度的重建。该限制器也可以构造为一维类型的限制器或真正的多维限制器。在线性对流模型方程上测试了该方案,并针对不同的网格尺寸将数值解与解析解进行了比较,以评估该方案的精度顺序。为了进行比较,还介绍了使用居中方案获得的结果。显示仅针对居中方案获得了二阶精度。名义上的二阶迎风算法可导致实际精度等级,从0.9到1.5不等。

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