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Practical maneuvering simulation method of ships considering the roll-coupling effect

机译:考虑侧倾耦合效应的船舶实用操纵仿真方法

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摘要

In this study, a practical maneuveringsimulation method is presented considering the roll-coupling effect by extending an ordinal simulation model (3D-MMG model) proposed by Yasukawa and Yoshimura (J Mar Sci Technol 20:37-52, 2015), and adding the motion equation of roll. The roll moment acting on the hull is estimated by multiplying the hull lateral force with the vertical acting point. With respect to the surge force, lateral force, and yaw moment, the derivativeexpression model is employed. Subsequently, hydrodynamic derivatives with the exception of the roll-related terms are obtained by a captive model test based on the 3D-MMG model. The roll-related derivatives and the vertical acting point of the hull lateral force are estimated by simple formulae constructed based on the experimental data of four ship models. To validate the proposed simulation method, turning simulations are conducted for a pure car carrier model with variations in the metacentric height and are compared with free-running model test results. The simulation method exhibits sufficient accuracy with respect to its practical use and is useful to conventionally predict turning motions byconsidering the roll-coupling effect.
机译:在这项研究中,通过扩展Yasukawa和Yoshimura提出的有序模拟模型(3D-MMG模型)(J Mar Sci Technol 20:37-52,2015),并考虑了滚动耦合效应,提出了一种实用的操纵模拟方法。滚动运动方程。通过将船体横向力乘以垂直作用点来估算作用在船体上的侧倾力矩。关于喘振力,横向力和偏航力矩,采用导数表达模型。随后,通过基于3D-MMG模型的俘获模型测试,获得除了侧倾相关项之外的流体力学导数。根据四个船模型的实验数据,通过简单的公式估算与侧倾有关的导数和船体横向力的垂直作用点。为了验证所提出的仿真方法,对偏心高度发生变化的纯车模型进行了转向仿真,并将其与自由行驶模型测试结果进行了比较。该模拟方法相对于其实际用途表现出足够的准确性,并且对于通过考虑滚动耦合效应来常规地预测转弯运动是有用的。

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