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Still water vertical loads during transient flooding of a tanker in full load condition with a probabilistic damage distribution

机译:在油轮全负荷工况下瞬时溢流期间,静水垂直载荷具有概率分布

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摘要

The study of the transient still water vertical loads progression, throughout the flooding process, is presented for a damaged shuttle tanker in full load condition. The vessel is damaged by box-shaped volumes following the probabilistic distribution models of their extent and position suggested by the Marine Environment Protection Committee of the International Maritime Organization (IMO). A subset of this model is considered, by taking into account only the collision cases where the centre of the damage is about the waterline. Discretization of the problem is implemented with 90 damage configurations and the flooding progression is simulated by a quasi static version of a generalized adaptive mesh pressure integration technique code for progressive flooding of floating objects. The vertical loads are determined at each time step, which provides initial, minimum, maximum and final values of bending moment and shear force, evaluated along the length of the ship, for the total simulation time. The probability and magnitude of higher intermediate loads and the main effects of the damage parameters and the factor interactions between these are determined and analysed, with and without introducing the IMO probabilistic distribution.
机译:对于在满载条件下受损的穿梭油轮,研究了整个洪水过程中瞬态静水垂直载荷变化的研究。根据国际海事组织(IMO)海洋环境保护委员会建议的程度和位置概率分布模型,船形盒状体积损坏了该船。通过仅考虑损坏中心位于水线附近的碰撞情况来考虑该模型的子集。该问题的离散化是通过90种损坏配置来实现的,并且通过对浮动对象进行渐进式泛洪的广义自适应网格压力积分技术代码的准静态版本来模拟泛洪进程。在每个时间步长确定垂直载荷,该载荷在整个模拟时间内提供沿船长评估的弯矩和剪切力的初始,最小,最大和最终值。在引入和不引入IMO概率分布的情况下,确定并分析了较高中间载荷的概率和大小以及损伤参数的主要影响以及这些参数之间的因素相互作用。

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