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Modeling of Ship Roll Dynamics and Its Coupling with Heave and Pitch

机译:船舶横摇动力学建模及其升沉与俯仰的耦合

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In order to study the dynamic behavior of ships navigating in severe environmental conditions it is imperative to develop their governing equations of motion taking into account the inherent nonlinearity of large-amplitude ship motion. The purpose of this paper is to present the coupled nonlinear equations of motion in heave, roll, and pitch based on physical grounds. The ingredients of the formulation are comprised of three main components. These are the inertia forces and moments, restoring forces and moments, and damping forces and moments with an emphasis to the roll damping moment. In the formulation of the restoring forces and moments, the influence of large-amplitude ship motions will be considered together with ocean wave loads. The special cases of coupled roll-pitch and purely roll equations of motion are obtained from the general formulation. The paper includes an assessment of roll stochastic stability and probabilistic approaches used to estimate the probability of capsizing and parameter identification.
机译:为了研究在恶劣环境条件下航行的船舶的动态行为,必须考虑到大振幅船舶运动的固有非线性来制定其运动控制方程。本文的目的是提出基于物理基础的升沉,横摇和俯仰运动的耦合非线性运动方程。制剂的成分包括三个主要成分。这些是惯性力和力矩,恢复力和力矩以及阻尼力和力矩,重点是侧倾阻尼力矩。在制定恢复力和力矩时,将考虑大幅度船舶运动的影响以及海浪载荷。联动侧倾-俯仰和纯侧倾运动方程的特殊情况可以从一般公式中获得。本文包括对轧辊随机稳定性的评估以及用于估计倾覆和参数识别概率的概率方法。

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