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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Effects of nonlinear FK (Froude- Krylov) and hydrostatic restoring forces on arctic-spar motions in waves
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Effects of nonlinear FK (Froude- Krylov) and hydrostatic restoring forces on arctic-spar motions in waves

机译:非线性FK(Froude-Krylov)和静水恢复力对波浪中北极族运动的影响

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An Arctic Spar is characterized by its conical shape near the waterline. In this case, the nonlinear effects from its irregular hull shape would be significant if there is either a large amplitude floater motion or steep wave conditions. Therefore, in this paper, the nonlinear effects of an Arctic Spar are numerically investigated by introducing a weakly nonlinear time-domain model that considers the time dependent hydrostatic restoring stiffness and Froude-Krylov forces. Through numerical simulations under multiple regular and irregular wave conditions, the nonlinear behavior of the Arctic Spar is clearly observed, but it is not shown in the linear analysis. In particular, it is found that the nonlinear Froude-Krylov force plays an important role when the wave frequency is close to the heave natural frequency. In addition, the nonlinear hydrostatic restoring stiffness causes the structure's unstable motion at a half of heave natural period.
机译:北极翼梁的特征在于水线附近的圆锥形状。在这种情况下,如果存在大的振幅浮动运动或陡波条件,则其来自其不规则壳体形状的非线性效应将是显着的。因此,在本文中,通过引入弱非线性时间域模型来进行数值研究北极翼梁的非线性效应,该弱非线性时间域模型考虑了时间依赖性静水压恢复刚度和Froude-Krylov力。通过在多个规则和不规则的波条件下的数值模拟,清楚地观察到北极翼梁的非线性行为,但在线性分析中未示出。特别地,发现非线性FRoude-Krylov力在波频接近升降自然频率时起着重要作用。此外,非线性静水压恢复刚度导致结构在升降天然时期的一半处的不稳定运动。

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