A semi-analytical method using auxiliary sine series for vibration and sound radiation of a rectangular plate with elastic edges

Guoming Deng, Xian Wu, Changxiao Shao, Songlin Zheng, Jianwang Shao
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Abstract

This paper proposes an efficient semi-analytical method using auxiliary sine series for transverse vibration and sound radiation of a thin rectangular plate with edges elastically restrained against translation and rotation. The formulation, constructed by two-dimensional sine and/or cosine series, can approximately express the bending displacement, and calculate vibration and sound radiation under excitation of point force, arbitrary-angle plane wave, or diffuse acoustic field with acceptable accuracy. It is also applied for baffled or unbaffled conditions. A post-process program is developed to predict vibrating frequencies and modes, mean square velocity spectrum, and sound transmission loss via reduced-order integrals of radiation impedances. The method is validated by experiment and simulation results, demonstrating accurate and efficient computation using a single program for transverse vibration and sound radiation of a plate under different elastic boundary conditions and different excitations. Formulas given in this paper provide a basis for the code development on transverse vibration and sound radiation analysis of thin plates.
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利用辅助正弦级数的半解析法研究带弹性边缘的矩形板的振动和声辐射
本文提出了一种使用辅助正弦序列的高效半解析方法,用于计算边缘受到弹性约束、可平移和旋转的薄矩形板的横向振动和声辐射。该公式由二维正弦和/或余弦级数构成,可近似表示弯曲位移,并以可接受的精度计算点力、任意角度平面波和漫反射声场激励下的振动和声辐射。它还适用于有障板或无障板条件。开发了一个后处理程序,通过辐射阻抗的降阶积分来预测振动频率和模态、均方速度频谱和传声损耗。实验和模拟结果对该方法进行了验证,证明了在不同的弹性边界条件和不同的激励下,使用单一程序对板的横向振动和声辐射进行了精确而高效的计算。本文给出的公式为薄板横向振动和声辐射分析的代码开发提供了基础。
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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