移动式与固定式被动阻尼器在减轻梁振动方面的效果对比研究

IF 2.3 3区 工程技术 Q2 MECHANICS
Georgios I. Dadoulis, George D. Manolis
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引用次数: 0

摘要

这项研究比较了两类被动阻尼器(即固定式和移动式调谐质量阻尼器 (TMD))对以简单支撑均匀梁为模型的桥梁振动运动的影响。假设移动车辆的悬挂系统具有类似 TMD 的性能,通过将其与放置在桥跨特定位置的相同系统的性能进行对比,研究其对梁上各点振动运动的影响。在这两种情况下,车辆悬架都被模拟为具有质量、刚度和阻尼元素的单自由度 (SDOF) 系统。具体来说,我们首先研究了由桥梁、移动质量和 TMD 组成的组合结构系统的特征问题,计算出频谱图,显示固定和移动 TMD 情况下特征频率的时频演变。随后,我们检查了靠近横梁中心跨度处的振动,并生成了能量测量值,以对比固定 TMD 和移动 TMD 的有效性,由于 TMD 会随时间发生变化,因此无法生成具体的测量值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A comparative study on the effectiveness of a moving versus a fixed passive damper in beam vibration mitigation

A comparative study on the effectiveness of a moving versus a fixed passive damper in beam vibration mitigation

This work compares the effect that two categories of passive dampers have on the vibratory motion of a bridge modeled as simply supported uniform beam, namely the fixed versus the moving tuned mass damper (TMD). Assuming that the suspension system of the moving vehicle performs like a TMD, its effect on the vibratory motion at points on the beam is studied by juxtaposing it with the performance of the same system placed at a specific location on the bridge span. In both cases, the vehicle suspension is modeled as a single degree-of freedom (SDOF) system with a mass, a stiffness and a damping element. Specifically, we first examine the eigenproblem of this combined structural system comprising the bridge, the moving mass and the TMD, to compute spectrograms that show the time–frequency evolution of the eigenfrequencies for both fixed and moving TMD cases. Subsequently, we examine vibrations at a point close to center span of the beam and produce energy measures to contrast fixed versus moving TMD effectiveness, which changes over time thus making it impossible to produce a concrete measure.

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来源期刊
Acta Mechanica
Acta Mechanica 物理-力学
CiteScore
4.30
自引率
14.80%
发文量
292
审稿时长
6.9 months
期刊介绍: Since 1965, the international journal Acta Mechanica has been among the leading journals in the field of theoretical and applied mechanics. In addition to the classical fields such as elasticity, plasticity, vibrations, rigid body dynamics, hydrodynamics, and gasdynamics, it also gives special attention to recently developed areas such as non-Newtonian fluid dynamics, micro/nano mechanics, smart materials and structures, and issues at the interface of mechanics and materials. The journal further publishes papers in such related fields as rheology, thermodynamics, and electromagnetic interactions with fluids and solids. In addition, articles in applied mathematics dealing with significant mechanics problems are also welcome.
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