Title :
Effect of tether sag on vortex-induced vibration of tether in submerged floating tunnels
Author :
Su, Zhibin ; Sun, Shengnan
Author_Institution :
Sch. of Archit. & Civil Eng., Liaocheng Univ., Liaocheng, China
Abstract :
To study the effect of tether sag on vortex-induced vibration of tether in submerged floating tunnels, the nonlinear vortex-induced vibration equation of submerged floating tunnel tether is set up whether the sag effect is considered or not. Subsequently, an approximate numerical solution of planning submerged floating tunnel tether is obtained by applying Galerkin method and Runge-kutta method. Effect of tether sag on mid-span displacement and axial force of tether is analyzed when the vortex-induced resonance and parametric resonance takes place. The results show that, mid-span displacement and axial force of tether increases dramatically when the vortex induced resonance and parametric resonance takes place; the tether sag results in the asymmetry of tether vibration amplitude; taking sag effect into account makes the mid-span displacement and axial force of tether larger; tether sag makes the parametric vibration of tether be induced in a shorter time.
Keywords :
Galerkin method; Runge-Kutta methods; nonlinear equations; tunnels; vibrations; vortices; Galerkin method; Runge-Kutta method; axial force; mid-span displacement; nonlinear vortex-induced vibration equation; parametric resonance; parametric vibration; submerged floating tunnels; tether sag effect; tether vibration amplitude; vortex-induced resonance; Dynamics; Force; Moment methods; Oceans; Presses; Sun; Vibrations; Galerkin method; Ronge-Kutta method; parametric vibration; sag; submerged floating tunnel; tether; vortex-induced vibration;
Conference_Titel :
Electric Technology and Civil Engineering (ICETCE), 2011 International Conference on
Conference_Location :
Lushan
Print_ISBN :
978-1-4577-0289-1
DOI :
10.1109/ICETCE.2011.5774396