Title :
TMD control analysis of suspension bridge flutter based on mode space
Author :
Mingxiang, Zhang ; Jianguo, Wang ; Quan, Wang
Author_Institution :
Sch. of Civil & Hydraulic Eng., Hefei Univ. of Technol., Hefei, China
Abstract :
This paper deals with the TMD (tuned mass damper) control of a suspension bridge considering multimode-coupled flutter based on modal coordinates. The differential equations governing the motion of the structure with TMDs are established, in which the effects of aerodynamic self-excited force are taken into account. The revised automatic analysis for multimode-coupled flutter, which is the single parameter searching method without iterations, is adapted for the flutter control analysis of structure-TMDs system. Taking a three-tower suspension bridge being built crossing the Yangtze River for a numerical example, both flutter analysis of the original bridge and flutter control analysis of bridge-TMDs system are performed. The TMD parameters, which include the mass, the damping ratio, the frequence of TMDs and the install location, are discussed to enhance the flutter critical wind speed expressed by the parameter of flutter control efficiency. The numerical results show that the revised automatic analysis method has the remarkable capability of flutter control analysis and for the control of bridge flutter. The TMD parameter design has an important role for flutter control of long-span bridges.
Keywords :
bridges (structures); damping; differential equations; search problems; shock absorbers; structural engineering; vibration control; TMD control analysis; Yangtze River; aerodynamic self excited force; flutter control analysis; flutter critical wind speed; multimode coupled flutter; revised automatic analysis method; single parameter searching method; suspension bridge flutter; tuned mass damper; Automatic control; Bridges; Control system analysis; Control systems; Damping; Differential equations; Performance analysis; Shock absorbers; Structural panels; Weight control; Aerodynamics; Flutter; Mode space; Suspension Bridge; TMD; Vibration Control;
Conference_Titel :
Mechanic Automation and Control Engineering (MACE), 2010 International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-7737-1
DOI :
10.1109/MACE.2010.5536666