Modal analysis and vibration control of a vertical cable with dual tuned mass dampers

Author:

Zhang Xin12ORCID,Hu Shuaitao23,Zhang Shixiang3,Zhu Huaxin4,Cao Maosen2,Wang Qiang5,Sumarac Dragoslav16

Affiliation:

1. Anhui International Joint Research Center on Bridge Structures, Chuzhou University, Chuzhou, China

2. Department of Engineering Mechanics, Hohai University, Nanjing, China

3. Jiangsu Key Laboratory of Intelligent Perception and Control of Integrated Transportation, China Design Group Co., Ltd., Nanjing, China

4. Jiangsu Zhongji Engineering Technology Research Co., Ltd., Nantong, China

5. College of Automation and Artificial Intelligence, Nanjing University of Posts and Telecommunications, Nanjing, China

6. Faculty of Civil Engineering, University of Belgrade, Belgrade, Serbia

Abstract

This paper proposes a vibration model for modal analysis and vibration control of a vertical cable-dual tuned mass damper (C-DTMD) coupled system. The proposed model introduces several non-dimensional parameters to describe the in-plane vibration of the coupled system. Moreover, the phenomenon of modal split is comprehensively studied to present the complex vibration modes. Parameter analysis is conducted to show the influence of length ratio, mass ratio, damping ratio, and frequency ratio on vibration reduction. In addition, the theoretical model is verified using finite element methods. A practical vertical cable in Jiangyin Bridge with designed wind loads is chosen as a numerical example. The results show that DTMD devices can effectively reduce the modal vibration and have great potential for multi-mode vibration control of vertical cables in suspension bridges. The proposed model can accurately describe the in-plane vibration modes of C-DTMD systems and provides a basis for the optimal design of damper parameters.

Funder

Anhui Provincial Department of Education

Anhui International Joint Research Center of Data Diagnosis and Smart Maintenance on Bridge Structures

Nantong Science and Technology Bureau

Nanjing Science and Technology Bureau

Publisher

SAGE Publications

Subject

Mechanical Engineering,Geophysics,Mechanics of Materials,Acoustics and Ultrasonics,Building and Construction,Civil and Structural Engineering

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