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首页> 外文期刊>Journal of Sound and Vibration >Control of sound and vibration of fluid-filled cylindrical shells via periodic design and active control
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Control of sound and vibration of fluid-filled cylindrical shells via periodic design and active control

机译:通过周期性设计和主动控制来控制充满流体的圆柱壳的声音和振动

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摘要

The wave propagation, vibration transmission and acoustic emission characteristics in the passive and the active periodic shell systems are investigated. A finite element method (FEM) is utilised to conduct the investigation. In the passive periodic shell, two pivotal frequencies (i.e., the cut-off frequency of the periodic shell, and the resonant frequency of flexural vibration of shell ring), which are existed in an arbitrarily high circumferential mode, are found; the frequency range is divided into three regions by these two frequencies. Various band formation mechanisms and the dynamic properties within the three frequency regions are illustrated, with the aid of a series of vibration deformations. Furthermore, an active periodic shell is constructed. Several control methods, such as inverted displacement-, velocity- and acceleration-feedback control strategies, are explored for the active shell. Under these control strategies, the effects of negative stiffness, damping coefficient and mass modulation, can be produced, thus enabling the band gap generable and its characteristics, such as their bandwidth, location and attenuation coefficient, adjustable. The pressure level of the structure-borne sound is also suppressed along the shell within the band gaps.
机译:研究了被动和主动周期壳系统中的波传播,振动传播和声发射特性。利用有限元方法(FEM)进行调查。在无源周期壳中,发现了以任意高圆周模式存在的两个枢轴频率(即周期壳的截止频率和壳环弯曲振动的共振频率)。频率范围被这两个频率分为三个区域。借助于一系列振动变形,说明了在三个频率区域内的各种带形成机理和动态特性。此外,构造了活动的周期性壳。探索了主动壳的几种控制方法,例如反向位移,速度和加速度反馈控制策略。在这些控制策略下,可以产生负刚度,阻尼系数和质量调制的影响,从而使可生成的带隙及其带宽,位置和衰减系数等特性可调。在带隙内,沿着壳体的固体声的压力水平也受到抑制。

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