The snap tension of small-sagged marine cables operating in alternating taut-slack conditions is considered in this paper. The marine cable is suspended at the two ends on the same level. One of the two ends is fixed, while the other is subjected to horizontal excitation. A single non-linear equation of vertical motion of the cable is derived and solved by the Galerkin method. It is found that only the symmetric modes with respect to the mid-span need to be considered. Numerical examples are given and comparisons are made between numerical and experimental results which help to demonstrate the validity of the present method
A numerical approach for predicting motion and tension of marine cables during laying operations in ...
In this study, the 3D nonlinear equations of motion of the suspended cable with moving mass are obta...
The dynamic response of suspended cables has been explored in literature using several analytical an...
The snap tension of small-sagged marine cables operating in alternating taut-slack conditions is con...
This paper presents a model formulation that can be used for analyzing the three-dimensional vibrati...
The lumped-mass-and-spring model is employed to predict the snap loading of marine cables operating ...
A numerical approach for predicting motion and tension of extensible marine cables during laying ope...
A theoretical model is presented that describes the three-dimensional nonlinear motion of a sagged c...
A numerical approach for predicting the snap loading of marine cables operating in alternating taut-...
A theoretical model is presented which describes the three-dimensional nonlinear motion of a sagged ...
A numerical approach for predicting motion and tension of marine cables during laying operations in ...
A simple mechanical model is proposed to describe the dynamics system of the taut inclined cable exc...
AbstractAn efficient procedure for analyzing in-plane vibrations of flat-sag suspended cables carryi...
Graduation date: 1983The nonlinear dynamic analysis of cable and cable-large\ud body systems subject...
A non-linear mechanical model of non-shallow linearly elastic suspended cables is employed to invest...
A numerical approach for predicting motion and tension of marine cables during laying operations in ...
In this study, the 3D nonlinear equations of motion of the suspended cable with moving mass are obta...
The dynamic response of suspended cables has been explored in literature using several analytical an...
The snap tension of small-sagged marine cables operating in alternating taut-slack conditions is con...
This paper presents a model formulation that can be used for analyzing the three-dimensional vibrati...
The lumped-mass-and-spring model is employed to predict the snap loading of marine cables operating ...
A numerical approach for predicting motion and tension of extensible marine cables during laying ope...
A theoretical model is presented that describes the three-dimensional nonlinear motion of a sagged c...
A numerical approach for predicting the snap loading of marine cables operating in alternating taut-...
A theoretical model is presented which describes the three-dimensional nonlinear motion of a sagged ...
A numerical approach for predicting motion and tension of marine cables during laying operations in ...
A simple mechanical model is proposed to describe the dynamics system of the taut inclined cable exc...
AbstractAn efficient procedure for analyzing in-plane vibrations of flat-sag suspended cables carryi...
Graduation date: 1983The nonlinear dynamic analysis of cable and cable-large\ud body systems subject...
A non-linear mechanical model of non-shallow linearly elastic suspended cables is employed to invest...
A numerical approach for predicting motion and tension of marine cables during laying operations in ...
In this study, the 3D nonlinear equations of motion of the suspended cable with moving mass are obta...
The dynamic response of suspended cables has been explored in literature using several analytical an...