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首页> 外文期刊>Journal of Sound and Vibration >Tuning of vibration absorbers and Helmholtz resonators based on modal density/overlap parameters of distributed mechanical and acoustic systems
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Tuning of vibration absorbers and Helmholtz resonators based on modal density/overlap parameters of distributed mechanical and acoustic systems

机译:基于模态密度/重叠参数的分布式机械和声学系统的振动吸收器和亥姆霍兹谐振器调谐

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This paper presents a study on the tuning of vibration absorbers and Helmholtz resonators used to control at target resonance frequencies respectively the flexural response of lightly damped distributed structures and the acoustic response of lightly damped cavities subject to broadband stochastic excitations. The vibration and acoustic control effects of these two devices are assessed considering the broadband flexural response and acoustic response of typical structures and enclosures encountered in practical applications, that is: beam, thin plate and thin walled cylinder structures and one-dimensional duct, two-dimensional slender volume, three-dimensional volume enclosures. The herein proposed multi-mode tuning approaches are based on the H-2 cost functions of the total flexural kinetic energy of the three structures and of the total acoustic potential energy of the three enclosures. The H-2 cost functions are defined within finite frequency bands centred at the target structural or acoustic resonance frequencies respectively. A comprehensive overview of the modal density and modal overlap functions for the flexural response of the three structures and for the acoustic response of the three enclosures is also presented to provide physical interpretations and practical guidelines on the performance and applicability of classical single-mode and the proposed multi-mode tuning approaches. The study shows that classical tuning laws can be straightforwardly employed to control the response at low resonance frequencies such that the modal overlap is not greater than one, whereas to control the response at higher resonance frequencies, where the modal overlap is significantly greater than one, the proposed multi-mode tuning approach should be adopted. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文呈现在目标共振频率分别稍微衰减的分布的结构的弯曲响应和小阻尼腔主体的声学响应宽带随机激励用于控制上的振动吸收器和亥姆霍兹共振器的调谐的研究报告。这两个设备的振动和声学控制的效果进行评估考虑宽带挠曲响应和典型的结构和在实际应用中遇到的罩声学响应,即:光束,薄板和薄壁圆筒结构和一维管道,双维体积细长,三维体积的外壳。这里所提出的多模式调谐方法是基于和三个外壳的总声势能的三种结构的合计弯曲动能的H-2的成本函数。所述H-2的成本函数分别结构或声共振频率在目标中心有限频带内定义。的三个结构的弯曲响应和三个外壳的声学响应的模态密度和模态重叠功能的全面概述还给出提供有关性能和古典单模的适用性和物理解释和实际的准则建议多模式调节方法。研究表明,传统调谐法律可以被直接用来控制在低谐振频率处的响应,以使模态重叠不大于一,而控制在更高的共振频率,其中,所述模态重叠小于一个显著更大的反应,建议多模调整方式应予采纳。 (c)2019 Elsevier Ltd.保留所有权利。

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