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Dynamics calculation for variable-length underwater cable with geometrically nonlinear motion
Ocean Engineering ( IF 5 ) Pub Date : 2020-09-01 , DOI: 10.1016/j.oceaneng.2020.107695
Weicai Quan , Qingqing Chang , Qifeng Zhang , Jun Gong

Abstract A new finite element model of the variable-length underwater cable with geometrically nonlinear motion is presented in this paper.This model accounts for the effects of axial load, shear, bending, and torsion completely.First, a set of nonlinear, time-varying differential equations is derived from the theorem of linear and angular momentum, and its weak formulation is obtained by the principle of D’Alembert–Lagrange correspondingly.Through a series of consistent linearization with the Frechet derivative and discretization with the isoparametric interpolation, the governing finite element model for this variable-length cable is established.Second, the corresponding Newmark implicit time integration formulation is derived, and a scheme of adaptive step size is proposed to avoid convergence difficulty during the numerical calculation, and the way of mesh rediscretization is also illustrated to show the process of cable deployment.Third, after comparing with the results of two validation examples, the performance of the proposed approaches is further assessed with four numerical cases, which take consideration of the top alternating excitation, the terminal follower forces, and the sea current along the cable, since these terms are found to have a significant impact on the motion of variable-length underwater cable. Finally, some conclusions are drawn.

中文翻译:

具有几何非线性运动的变长水下电缆动力学计算

第三,在与两个验证示例的结果进行比较后,通过四个数值案例进一步评估了所提出方法的性能,这些案例考虑了顶部交替激励、终端跟随力和沿电缆的海流,因为这些项被发现对可变长度水下电缆的运动有显着影响。最后,得出一些结论。终端跟随力和沿电缆的海流,因为这些项被发现对可变长度水下电缆的运动有显着影响。最后,得出一些结论。终端跟随力和沿电缆的海流,因为这些项被发现对可变长度水下电缆的运动有显着影响。最后,得出一些结论。
更新日期:2020-09-01
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