2011•Journal of Disaster Prevention and Mitigation EngineeringRequires access

Study on Seismic Response and Structural Control of a Large Complex Structure

Xin Chen, Aiqun Li

Open publisher page 0 citations

Abstract

In this paper,the seismic response and its control strategy of a large complex structure are studied. Firstly,a finite element model of the structure is established,and the vibration properties are studied by using Ritz vector method.Then the damping ratio of the complex structure is obtained using weighted average potential method.Secondly,the mechanical properties of viscous energy dissipation braces of different types and the calculation model are studied.Lastly,the structural control plans for this structure are designed,and the reduction performance of different plans is analyzed.The results shows that the seismic response can be reduced effectively by configuring energy dissipation device and at the same time the architecture modeling does not need changing.Also it can be concluded that compared to the diagonalbraces, using chevron-braces is much more economical.The study of this paper can provide an important refcrence for the analysis of the structural control of large complex structures.

About this research paper

What this paper is about

In this paper,the seismic response and its control strategy of a large complex structure are studied. Firstly,a finite element model of the structure is established,and the vibration properties are studied by using Ritz vector method.Then the damping ratio of the complex structure is obtained using weighted average potential method.Secondly,the mechanical properties of viscous energy dissipation braces of different types and the calculation model are studied.Lastly,the structural control plans for this structure are designed,and the reduction performance of different plans is analyzed.The results shows that the seismic response can be reduced effectively by configuring energy dissipation device and at the same time the architecture modeling does not need changing.Also it can be concluded that compared to the diagonalbraces, using chevron-braces is much more economical.The study of this paper can provide an important refcrence for the analysis of the structural control of large complex structures.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In this paper,the seismic response and its control strategy of a large complex structure are studied. Firstly,a finite element model of the structure is established,and the vibration properties are studied by using Ritz vector method.Then the damping ratio of the complex structure is obtained using weighted average potential method.Secondly,the mechanical properties of viscous energy dissipation braces of different types and the calculation model are studied.Lastly,the structural control plans for this structure are designed,and the reduction performance of different plans is analyzed.The results shows that the seismic response can be reduced effectively by configuring energy dissipation device and at the same time the architecture modeling does not need changing.Also it can be concluded that compared to the diagonalbraces, using chevron-braces is much more economical.The study of this paper can provide an important refcrence for the analysis of the structural control of large complex structures.

Key concepts: Dissipation, Structural engineering, Finite element method, Reduction (mathematics), Vibration control, Vibration, Seismic energy, Energy (signal processing)

Related papers

Back to paper searchBrowse research topicsOriginal source
Study on Seismic Response and Structural Control of a Large Complex Structure — Research Paper | ScholarLens