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首页> 外文期刊>International journal of computational fluid dynamics >Mathematically consistent boundary conditions and turbulence matching at block interfaces for computational aeroacoustics
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Mathematically consistent boundary conditions and turbulence matching at block interfaces for computational aeroacoustics

机译:数学上一致的边界条件和块接口处的湍流匹配,用于计算航空声学

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摘要

The method of characteristics is used to implement the various boundary conditions (e.g. wall and interface) in a high-order computational aeroacoustic (CAA) code developed by the first author. Most characteristic methods do not satisfy Pfaff’s condition (which needs to be satisfied for any mathematical relation to be valid). A mathematically consistent and valid method is used in this work to derive the characteristic boundary conditions. Also, a robust and efficient approach for the matching of turbulence quantities at multi-block interfaces is proposed. Various numerical simulation cases were run to validate the concepts. The computed results show that the proposed method is accurate, robust and is in excellent agreement with experimental data. The results also indicate that the matching of turbulence quantities is essential for accurate turbulent flow calculations.
机译:特征方法用于在第一作者开发的高阶计算航空声(CAA)代码中实现各种边界条件(例如,墙壁和界面)。大多数特征方法不满足Pfaff的条件(要使任何数学关系有效,都必须满足该条件)。在这项工作中使用了数学上一致且有效的方法来得出特征边界条件。此外,提出了一种鲁棒而高效的方法,用于在多块接口处匹配湍流量。运行各种数值模拟案例以验证这些概念。计算结果表明,该方法准确,鲁棒,与实验数据吻合良好。结果还表明,湍流量的匹配对于精确的湍流计算至关重要。

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