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Optimization of Spatial and Minimum Storage RK Schemes for Computational Acoustics

机译:计算声学空间和最小存储RK方案的优化

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In this paper, new finite difference schemes for the spatial discretization and time advancing RK schemes for the numerical simulation of Computational Aero-Acoustic problems are derived. The new schemes are designed taking into account not only the standard accuracy and stability properties but also the dissipation and dispersion properties for a given interval of wavenumbers that are essential for the simulation of these waves in long time intervals. The schemes developed are composed by a fourth-order accurate space discretization and also in time with six explicit low-memory stages that minimize the total dispersion and dissipation errors arising in the spatial and temporal discretization process. The numerical results obtained indicate an important improvement in accuracy and in efficiency when they are compared with other low dispersive and dissipative explicit schemes recently published in the last years.
机译:在本文中,推导了用于计算航空声问题数值模拟的空间离散化和时间推进RK方案的新有限差分方案。不仅设计了新的方案,不仅考虑了标准精度和稳定性,而且还考虑了对于长时间间隔模拟这些波的给定间隔的耗散和色散性能。开发的方案由四阶准确的空间离散化和六个明确的低存储器级组成,最小化空间和时间离散化过程中产生的总色散和耗散误差。获得的数值结果表明,当与过去几年最近发表的其他低声波分散性和耗散明确计划进行比较时,表明准确性和效率的重要性。

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