The dynamic response of anchor cables of a submerged floating tunnel under the combined action of earthquake and hydrodynamic force was studied. The anchor cable of the submerged floating tunnel was simplified as Euler beam model and the motion equation of anchor cables of the submerged floating tunnel subjected to earthquake and hydrodynamic vibration was established. The motion equation was simplified by separating variables and Galerkin method,and the displacement response of anchor cables was solved by a fourth-order Runge-Kutta method. The dynamic behavior of cables under hydrodynamic action was obtained by displacement power spectrum analysis. Artificial seismic waves were generated by means of the triangular series method and three famous seismograms were adopted. The key structural parameters of the submerged floating tunnel under different seismic excitation were numerically analyzed. The results show that:(1)The increase of seismic acceleration will cause the motion response of anchor cables to become more intense,resulting in greater displacement and energy. The time and magnitude of peak acceleration of seismic wave also have certain influence on the peak amplitude of anchor cables.(2)Parameter frequency and damping ratio have important effects on the displacement of anchor cables and the influence degree is different under different earthquake action. The damage effect of earthquake on anchor cables and the overall structure of suspension tunnel can be reduced,by controlling parameter frequency and damping ratio.
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