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A Fully Nonlinear, Dynamically Consistent Numerical Model for Solid-Body Ship Motion. I. Ship Motion with Fixed Heading

机译:固体舰船运动的完全非线性,动态一致的数值模型。 I.航向固定的船

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摘要

In this paper, we describe the details of our numerical model for simulating ship solidbody motion in a given environment. In this model, the fully nonlinear dynamical equations governing the time-varying solid-body ship motion under the forces arising from ship wave interactions are solved with given initial conditions. The net force and moment (torque) on the ship body are directly calculated via integration of the hydrodynamic pressure over the wetted surface and the buoyancy effect from the underwater volume of the actual ship hull with a hybrid finite-difference/finite-element method. Neither empirical nor free parametrization is introduced in this model, i.e. no a priori experimental data are needed for modelling. This model is benchmarked with many experiments of various ship hulls for heave, roll and pitch motion. In addition to the benchmark cases, numerical experiments are also carried out for strongly nonlinear ship motion with a fixed heading. These new cases demonstrate clearly the importance of nonlinearities in ship motion modelling.
机译:在本文中,我们描述了在给定环境中模拟船体运动的数值模型的细节。在该模型中,在给定的初始条件下,求解了在船舶波浪相互作用力作用下控制时变固体船舶运动的全非线性动力学方程。船体上的净力和力矩(扭矩)是通过将湿表面上的水动力压力与实际船体水下体积的浮力效应进行积分而直接计算出来的,该方法采用有限差分/有限元混合法。该模型既没有引入经验参数也没有引入自由参数化,即,无需先验实验数据即可进行建模。该模型通过各种船体的升沉,横摇和俯仰运动的许多实验作为基准。除基准情况外,还针对航向固定的强非线性船舶运动进行了数值实验。这些新情况清楚地表明了非线性在船舶运动建模中的重要性。

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