High-Order Optimized Numerical Schemes for Computational Aeroacoustics

S. Zheng, M. Zhuang
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Abstract

This paper presents a new optimization approach for the high-order finite difference schemes. Due to the fact that it is common for a sound field to consist of several dominant wavenumbers, the proposed numerical schemes are optimized at these dominant wavenumbers instead of over a range of wavenumber. These optimized multi-component schemes, as referred to in this paper, give very accurate solutions if used to predict an acoustic wave traveling with these dominant wavenumbers. In addition, for broadband waves, it is shown that the performance of the optimized upwind multi-component scheme is comparable to that of the optimized upwind broadband scheme, which is optimized over a range of wavenumber. The results of the Fourier analysis also show that the optimized central multi-component schemes are at least comparable to if not better than the optimized central broadband schemes when solving broadband waves.
计算气动声学的高阶优化数值格式
本文提出了一种新的高阶有限差分格式优化方法。由于声场通常由几个主要波数组成,因此所提出的数值方案在这些主要波数上进行优化,而不是在波数范围内进行优化。本文提到的这些优化的多分量方案,如果用来预测以这些主导波数传播的声波,就会给出非常精确的解。此外,对于宽带波,优化后的逆风多分量方案的性能与优化后的逆风宽带方案相当,且在一定波数范围内进行了优化。傅里叶分析结果还表明,在求解宽频波时,优化后的中心多分量方案至少与优化后的中心宽带方案相当。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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