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首页> 外文期刊>Journal of Sound and Vibration >Tuned vibration absorbers with nonlinear viscous damping for damped structures under random load
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Tuned vibration absorbers with nonlinear viscous damping for damped structures under random load

机译:具有非线性粘性阻尼的调谐减振器,用于随机载荷下的阻尼结构

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摘要

The classical problem for the application of a tuned vibration absorber is to minimize the response of a structural system, such as displacement, velocity, acceleration or to maximize the energy dissipated by tuned vibration absorber. The development of explicit optimal absorber parameters is challenging for a clamped structural system since the fixed points no longer exist in the frequency response curve. This paper aims at deriving a set of simple design formula of tuned vibration absorber with nonlinear viscous damping based on the frequency tuning for harmonic load for a damped structural system under white noise excitation. The vibration absorbers being considered include tuned mass damper (TMD) and liquid column vibration absorber (LCVA). Simple approximate expression for the standard deviation velocity response of tuned vibration absorber for damped primary structure is also derived in this study to facilitate the estimation of the damping coefficient of TMD with nonlinear viscous damping and the head loss coefficient of LCVA. The derived results indicate that the higher the structural inherent damping the smaller the supplementary damping provided by a tuned vibration absorber. Furthermore, the optimal damping of tuned vibration absorber is shown to be independent of structural damping when it is tuned using the frequency tuning for harmonic load. Finally, the derived closed form expressions are demonstrated to be capable of predicting the optimal parameters of tuned vibration absorbers with sufficient accuracy for preliminary design of tuned vibration absorbers with nonlinear viscous damping for a damped primary structure. (C) 2015 Elsevier Ltd. All rights reserved.
机译:调谐减震器的应用的经典问题是最小化结构系统的响应,例如位移,速度,加速度,或者使调谐减震器消散的能量最大化。明确的最佳吸收器参数的发展对于固定结构系统是具有挑战性的,因为固定点不再存在于频率响应曲线中。本文旨在基于白噪声激励下阻尼结构系统的谐波载荷频率调谐,推导一套具有非线性粘滞阻尼的调谐减振器的简单设计公式。考虑的减震器包括调谐质量阻尼器(TMD)和液柱减震器(LCVA)。该研究还推导了阻尼初级结构调谐减振器的标准偏差速度响应的简单近似表达式,以便于估算具有非线性粘性阻尼的TMD阻尼系数和LCVA的水头损失系数。得出的结果表明,结构固有阻尼越高,调谐减振器提供的附加阻尼越小。此外,当使用谐波负载的频率调谐对其进行调谐时,调谐减振器的最佳阻尼与结构阻尼无关。最终,证明了导出的闭合形式表达式能够以足够的精度预测调谐减震器的最佳参数,从而可以对带有阻尼初级结构的非线性粘性阻尼的调谐减震器进行初步设计。 (C)2015 Elsevier Ltd.保留所有权利。

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