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首页> 外文期刊>Journal of Sound and Vibration >Control of multi-span beam vibration by a random wave reflector
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Control of multi-span beam vibration by a random wave reflector

机译:用随机波反射器控制多跨光束的振动

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In this paper, a new wave reflector called random wave reflector (RWR) is introduced for the control of transverse vibration and wave propagation in an infinite, multi-span, simple-support beam. In order to illustrate the theory, RWR is first tested in a simple configuration of controlling plane wave propagation through layers of gas media. Results demonstrate that RWR has great advantages over other types of noise abatement methods. RWR is then applied to control the vibration of the multi-span beam in which the support locations are given in a random manner. Two types of external excitations, an incident vibration wave and an external point force, are considered separately. Transmission loss, localization factor, mode shape and input power flow are used to investigate the effectiveness of RWR. The results show that no vibrational power flow can be tapped into or propagate through a random system at any frequency. The passbands, which always exist in traditional systems, are eliminated in a random system for which much better performance is obtained over a broad frequency range. (C) 2002 Elsevier Science Ltd. [References: 29]
机译:在本文中,介绍了一种称为随机波反射器(RWR)的新型波反射器,用于控制无限大跨度简单支撑梁中的横向振动和波传播。为了说明该理论,首先在控制平面波通过气体介质层传播的简单配置中对RWR进行了测试。结果表明,RWR与其他类型的噪声消除方法相比具有很大的优势。然后应用RWR来控制多跨度梁的振动,其中以随机方式给出支撑位置。分别考虑两种类型的外部激励,即入射振动波和外部点力。利用传输损耗,定位因子,模式形状和输入功率流来研究RWR的有效性。结果表明,在任何频率下都无法将振动功率流引入或传播到随机系统中。传统系统中始终存在的通带在随机系统中被消除,该系统在较宽的频率范围内可获得更好的性能。 (C)2002 Elsevier Science Ltd. [参考:29]

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