A spectral element-based reduced order model for thermoacoustic stability analysis in waveguides

IF 4.3 2区 工程技术 Q1 ACOUSTICS
Dario Passato , Danilo Beli , Ines Lopez Arteaga
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引用次数: 0

Abstract

A novel approach to perform linear stability analysis using a spectral element-based reduced order model is proposed, thereby facilitating the comprehensive study of (thermo)acoustic (in)stability across complex waveguide configurations. Providing a generalization of a wave-based method (e.g. spectral element method) to the Laplace domain, this study is offering not only a new methodology for analyzing thermoacoustic systems but also expanding the application of the spectral element method and other wave-based techniques to a broader class of problems. By solving the wave equation in the Laplace domain, spectral elementary matrices can be defined in the complex plane in both wavenumber and frequency domains, allowing for an examination of system stability. This technique supports a wide range of waveguide investigations, whether using an analytical description to get the spectral matrix or a numerical method to determine the dispersion curves and eigenvectors in the cross-section. Additionally, the proposed method simplifies the implementation of parametric optimization procedures due to its low computational cost, thus offering significant advancements in the study of waveguide behavior of thermoacoustic systems.
基于谱元的波导热声稳定性分析降阶模型
提出了一种使用基于谱元的降阶模型进行线性稳定性分析的新方法,从而促进了跨复杂波导结构(热)声(in)稳定性的全面研究。本研究将基于波的方法(如谱元方法)推广到拉普拉斯域,不仅为热声系统分析提供了一种新的方法,而且将谱元方法和其他基于波的技术的应用扩展到更广泛的问题类别。通过在拉普拉斯域中求解波动方程,可以在波数域和频域的复平面上定义谱初等矩阵,从而允许对系统稳定性进行检查。该技术支持广泛的波导研究,无论是使用解析描述来获得光谱矩阵,还是使用数值方法来确定截面中的色散曲线和特征向量。此外,由于计算成本低,该方法简化了参数优化过程的实现,从而在热声系统波导行为的研究中取得了重大进展。
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来源期刊
Journal of Sound and Vibration
Journal of Sound and Vibration 工程技术-工程:机械
CiteScore
9.10
自引率
10.60%
发文量
551
审稿时长
69 days
期刊介绍: The Journal of Sound and Vibration (JSV) is an independent journal devoted to the prompt publication of original papers, both theoretical and experimental, that provide new information on any aspect of sound or vibration. There is an emphasis on fundamental work that has potential for practical application. JSV was founded and operates on the premise that the subject of sound and vibration requires a journal that publishes papers of a high technical standard across the various subdisciplines, thus facilitating awareness of techniques and discoveries in one area that may be applicable in others.
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