The vibroacoustic characteristic of beam-plate coupled structure in similitude

Fengxia He, Zhong Luo, Huaitao Shi, Changshuai Yu, Lei Li
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Abstract

Similitude theory can be used to extrapolate the experimental data of a small, inexpensive, and easily tested model into design information for a large prototype. Scaling laws provide the relationship between a full-scale structure and its scale models. However, one challenging issue is the similitude of complex structure. To address the problem, an energy similarity method is presented based on the principle of conservation of power flow. The emphasis is to predict the vibroacoustic characteristic of beam-plate coupled structure in an effective and convenient way. The vibration response and radiated sound are investigated on the beam-plate coupled structure under random excitation. Numerical simulation and model test are both implemented, which validate the effectiveness and efficiency of the proposed method. Both aluminum and honeycomb materials are considered in beam-plate coupled structures. In addition, the comparison between the classic similitude method and the presented method (energy similarity) is illustrated. The results show that the energy similarity presented in this study can achieve a better performance in reproducing the vibroacoustic characteristic of beam-plate coupled structure than the classic similarity method.
模拟梁-板耦合结构的振动声学特性
模拟理论可用于将小型、廉价且易于测试的模型的实验数据推断为大型原型的设计信息。比例定律提供了全尺寸结构与其比例模型之间的关系。然而,复杂结构的相似性是一个具有挑战性的问题。为了解决这个问题,提出了一种基于功率流守恒原理的能量相似性方法。重点是以有效、便捷的方式预测梁板耦合结构的振动声学特性。研究了随机激励下梁-板耦合结构的振动响应和辐射声。通过数值模拟和模型试验,验证了所提方法的有效性和高效性。在梁板耦合结构中考虑了铝和蜂窝材料。此外,还比较了经典模拟方法和所提出的方法(能量相似性)。结果表明,与经典相似性方法相比,本研究提出的能量相似性方法能更好地再现梁-板耦合结构的振动声学特性。
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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