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Flux-conserving treatment of non-conformal interfaces for finite-volume discretization of conservation laws

机译:非保形界面的通量守恒处理,用于守恒律的有限体积离散化

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We present a new flux-conserving treatment of non-conformal mesh block interfaces for the numerical solution of conservation laws by high order finite-volume schemes. An auxiliary mesh is used at the interface to establish a connectivity between non-conformal blocks. The method does not involve any flux interpolation and conservation is therefore guaranteed by construction, without enforcing additional constraints. Additionally, several gradient reconstructions across the interface have been adapted and their order of accuracy is studied analytically and numerically. Applications to two and three dimensional fluid dynamic problems are considered, and the verification of the method is provided by comparing solutions obtained on single-block grids with no interfaces. Also the accuracy and numerical stability of the interface treatment is demonstrated empirically for a variety of test cases, such as a cylinder in supersonic cross-flow, low Mach-number vortex shedding, and a transonic turbine stage. The exemplary flow simulation problems are solved using explicit and implicit time integration schemes. The obtained results successfully demonstrate the effectiveness of the proposed method for stationary non-conformal blocks domains, as well as for mesh blocks in relative motion. (C) 2015 Elsevier Ltd. All rights reserved.
机译:我们提出了一种新的非保形网格块接口的通量守恒处理方法,用于通过高阶有限体积格式对守恒律进行数值求解。在接口处使用辅助网格,以在非共形块之间建立连接。该方法不涉及任何磁通插值,因此可以通过构造保证守恒,而无需执行其他约束。此外,已经对跨界面的几个梯度重构进行了调整,并通过分析和数值研究了其精度顺序。考虑到二维和三维流体动力学问题的应用,并通过比较在无界面的单块网格上获得的解决方案来提供该方法的验证。此外,还针对各种测试案例(例如超音速横流气缸,低马赫数涡旋脱落和跨音速涡轮级)通过经验证明了界面处理的准确性和数值稳定性。使用显式和隐式时间积分方案解决了示例性的流模拟问题。获得的结果成功地证明了所提出的方法对于固定非保形块域以及相对运动的网格块的有效性。 (C)2015 Elsevier Ltd.保留所有权利。

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