Modal Analysis for Localization in Multiple Nonlinear Tuned Mass Dampers Installed on a Structure

非线性系统 情态动词 正常模式 物理 调谐质量阻尼器 有限元模态分析 运动方程 广义坐标 阻尼器 模态分析 激发 正交坐标 振动 谐波 坐标系 数学分析 经典力学 模态试验 数学 声学 几何学 量子力学 材料科学 热力学 高分子化学
作者
Yuji HARATA,Takashi IKEDA,Shinya Matsuura
出处
期刊:Journal of Computational and Nonlinear Dynamics [ASM International]
卷期号:: 1-26
标识
DOI:10.1115/1.4067582
摘要

Abstract Localization may occur in systems where multiple nonlinear units are coupled with each other. Additionally, localization may occur in multiple nonlinear tuned mass dampers (TMDs) installed on a structure subjected to harmonic excitation. This paper clarifies the cause of localization via modal analysis. First, the equations of motion for a structure with multiple nonlinear TMDs, which are expressed in physical coordinates, are transformed to equations in modal coordinates. When identical TMDs are used, the lowest and highest modes are decoupled in the linear terms to the other modes; however, all these modes are nonlinearly coupled with each other. In addition, the lowest and highest modes are directly excited by an external force, but the other modes are not directly excited. Therefore, the modal equations of motion form an autoparametric system. Van der Pol?s method is employed to determine the frequency response curves (FRCs) for harmonic vibrations in modal coordinates. The FRCs and time histories in modal coordinates are calculated when two or three TMDs are installed on the structure; subsequently, those in physical coordinates are determined via coordinate transformation. Numerical results indicate that localization may occur when more than two modes appear simultaneously. Furthermore, the excitation frequency range where localization occurs is theoretically clarified based on backbone curves.

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