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Numerical simulation of ship stability for dynamic environment

机译:动态环境下船舶稳定性的数值模拟

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The prediction of ship stability during the early stages of design is very important from the point of vessel's safety. Out of the six motions of a ship, the critical motion leading to capsize of a vessel is the rolling motion. In the present study, particular attention is paid to the performance of a ship in beam sea. The linear ship response in waves is evaluated using strip theory. Critical condition in the rolling motion of a ship is when it is subjected to synchronous beam waves. In this paper, a nonlinear approach has been tried to predict the roll response of a vessel. Various representations of damping and restoring terms found in the literature are investigated. A parametric investigation is undertaken to identify the effect of a number of key parameters like wave amplitude, wave frequency, metacentric height, etc.
机译:从船舶安全的角度出发,对设计初期的船舶稳定性进行预测非常重要。在船舶的六个运动中,导致船舶倾覆的临界运动是滚动运动。在本研究中,要特别注意束海中船舶的性能。使用带状理论评估波浪中的船舶线性响应。船舶横摇运动的关键条件是受到同步光束的影响。在本文中,尝试了一种非线性方法来预测船只的侧倾响应。研究了文献中关于阻尼和恢复项的各种表示形式。进行参数研究以识别许多关键参数的影响,例如波幅,波频率,偏心高度等。

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