Single domain Chebyshev spectral method for analyses of the vibroacoustic characteristics of baffled irregularly shaped plates

IF 4.3 2区 工程技术 Q1 ACOUSTICS
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引用次数: 0

Abstract

In this study a Chebyshev spectral method is introduced to analyse the vibroacoustic characteristics of plates with arbitrary shape. This approach involves a unique expansion of the governing equations for plate displacements using Chebyshev polynomials, coupled with Gauss-Chebyshev-Lobatto sampling. A significant advancement in computational efficiency is the use of a tensor product configuration. To manage irregular shapes, the elements of the inner product matrix corresponding to the open regions were set to zero. For precise shape representation, a substantial number of Chebyshev-Gauss-Lobatto points, surpassing the polynomial truncation count, are carefully selected. the elastic boundary conditions of the plate were simulated by applying artificial spring techniques at different points. The prediction accuracy of the vibroacoustic phenomena, including those of the mean square velocity and sound power, were rigorously confirmed through comprehensive comparisons with results from previous studies and those obtained using the finite element method. Furthermore, the accuracy and versatility of the method are demonstrated through a variety of numerical examples encompassing plates with geometries shaped like rectangules, triangules, clouds, and pigs geometries, and different boundary conditions.

用于分析不规则形状障板振动声学特性的单域切比雪夫频谱法
本研究采用切比雪夫频谱法分析任意形状板材的振动声学特性。这种方法涉及使用切比雪夫多项式对板块位移的控制方程进行独特的展开,并结合高斯-切比雪夫-洛巴图采样。张量乘积配置的使用大大提高了计算效率。为了管理不规则形状,与开放区域相对应的内积矩阵元素被设为零。为了精确地表示形状,精心选择了大量的切比雪夫-高斯-洛巴托点,其数量超过了多项式截断数。通过与以往研究结果和使用有限元方法获得的结果进行综合比较,严格确认了振动声学现象(包括均方速度和声功率)的预测精度。此外,通过各种数值示例,包括矩形、三角形、云形、猪形等几何形状的板以及不同的边界条件,证明了该方法的准确性和通用性。
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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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