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A Fully Nonlinear, Dynamically Consistent Numerical Model for Ship Maneuvering in a Seaway

机译:海上航行船舶操纵的完全非线性,动态一致的数值模型

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摘要

This is the continuation of our research on development of a fully nonlinear, dynamically consistent, numerical ship motion model (DiSSEL). In this paper we report our results on modeling ship maneuvering in arbitrary seaway that is one of the most challenging and important problems in seakeeping. In our modeling, we developed an adaptive algorithm to maintain dynamical balances numerically as the encounter frequencies (the wave frequencies as measured on the ship) varying with the ship maneuvering state. The key of this new algorithm is to evaluate the encounter frequency variation differently in the physical domain and in the frequency domain, thus effectively eliminating possible numerical dynamical imbalances. We have tested this algorithm with several well-documented maneuvering experiments, and our results agree very well with experimental data. In particular, the numerical time series of roll and pitch motions and the numerical ship tracks (i.e., surge, sway, and yaw) are nearly identical to those of experiments.
机译:这是我们对开发完全非线性,动态一致的数值船运动模型(DiSSEL)的研究的继续。在本文中,我们报告了在任意航道中对船舶操纵进行建模的结果,这是海上维护中最具挑战性和重要问题之一。在我们的建模中,我们开发了一种自适应算法,以随着遇到频率(在船上测量的波频率)随船舶操纵状态而变化时,在数值上保持动态平衡。该新算法的关键是在物理域和频域中以不同方式评估遇到的频率变化,从而有效消除可能的数值动力学失衡。我们已经通过数个有据可查的机动实验对这种算法进行了测试,我们的结果与实验数据非常吻合。尤其是,侧倾和俯仰运动的数值时间序列和船舶航迹的数字时间(即喘振,摇摆和偏航)与实验的数值时间序列几乎相同。

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  • 来源
    《Modelling and simulation in engineering》 |2011年第2期|p.21.1-21.10|共10页
  • 作者

    Ray-Qing Lin; Weijia Kuang;

  • 作者单位

    Hydromechanics Department, David Taylor Model Basin, NSWCCD, 9500 MacArthur Boulevard, West Bethesda,MD 20817-5700, USA;

    Planetary Geodynamics Laboratory, NASA Goddard Space Flight Center, Greenbelt, MD, USA;

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  • 正文语种 eng
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