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Simulation of ship motion and deck-wetting due to steep random seas

机译:模拟陡峭随机海浪引起的船舶运动和甲板润湿

摘要

The extreme motion and load of ships have been assessed using a linear frequency domain method or a linear energy spectral method and RAOs, which may be too approximate to be used for estimation of ship motion in severest seas. The new technology uses simulation in the time domain to deal with the non-linear responses to the random seas. However, the current simulation technique has been successful only up to the sea state of 7 (?high seas?), defined by the significant wave height of 9 meters. The above cannot provide the extreme wave loads and motions for seas higher than the sea state 7. The ultimate goal of this work would be to develop a new technique that can simulate responses to the seas of states 8 and 9. The objective of the present study is to simulate the vertical relative motion and wave topping of a moored ship in the time domain by varying the significant wave heights. The analysis was able to predict with a fair accuracy the relative motion characteristics of a freely floating body in the head and beam sea conditions. The resonance aspects and its significance in the overall response are also analyzed.
机译:已经使用线性频域方法或线性能谱方法和RAO对船舶的极限运动和载荷进行了评估,而RAO可能过于近似而无法用于估计最恶劣海域的船舶运动。新技术使用时域仿真来处理对随机海域的非线性响应。但是,当前的模拟技术仅在海浪7米(“公海”)定义为9米的有效波高时才成功。上面的内容不能为高于海洋状态7的海洋提供极端的波浪载荷和运动。这项工作的最终目标是开发一种新的技术,该技术可以模拟对状态8和9的海洋的响应。这项研究是通过改变有效波高来模拟时域内停泊船舶的垂直相对运动和波顶。该分析能够以相当的准确度预测自由浮动物体在水头和海浪条件下的相对运动特性。还分析了共振方面及其在整体响应中的意义。

著录项

  • 作者

    Adil Adam Mohamed;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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