首页> 外文会议>35th International conference on ocean, offshore and arctic engineering 2016 >PREDICTION OF THE DAMAGE EXTENTS OF SHIP'S DOUBLE HULL SIDE STRUCTURES SUBJECTED TO LATERAL COLLISIONS
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PREDICTION OF THE DAMAGE EXTENTS OF SHIP'S DOUBLE HULL SIDE STRUCTURES SUBJECTED TO LATERAL COLLISIONS

机译:船体双侧向结构受侧向碰撞损伤程度的预测

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Lateral collision tests were conducted on two steel double-hull side structure models, models DH-3 and DH-4. The models were approximately one-seventh scale of a VLCC (Very Large Crude Carrier), and the small longitudinal stiffeners of a VLCC were smeared into the shell plates. The collision tests were performed using a car crash testing facility. The striker had a knife-edge type header and its mass was 1,350 kg. The collision velocities were 7.224 m/s and 10.0 m/s for models DH-3 and DH-4, respectively. The collision test results are briefly reported in this paper. Using a commercial FEA package, numerical collision analyses were then conducted for the two new models together with another two models of one-tenth scale, which were reported elsewhere. In the numerical analyses the strain and strain-rate hardenings were considered. The convergence test was also performed to obtain an optimal mesh size. The numerical predicted damage extents were compared with those of the experiments. The prediction errors were in the range of - 5.7 % to + 6.8 %. An analytical approach was also attempted to predict the damage extents of double-hull structures subjected to lateral collisions. Compared with the experimental and numerical predictions the analytical predictions provide acceptable accuracies for the initial design stage. For a more rational ship structural design against collision, future studies are proposed to improve the prediction accuracy and reliability.
机译:在两个钢制双壳侧面结构模型DH-3和DH-4上进行了横向碰撞测试。模型大约是VLCC(超大型原油运输船)的七分之一比例,并且VLCC的小的纵向加劲肋被涂抹到了壳板上。碰撞测试是使用汽车碰撞测试设备进行的。撞针具有刀刃式割台,质量为1,350千克。 DH-3和DH-4型的碰撞速度分别为7.224 m / s和10.0 m / s。碰撞测试结果在本文中作了简要介绍。然后使用一个商业有限元分析软件包,对这两个新模型以及另外两个十分之一的模型进行了数值碰撞分析,这些模型在其他地方都有报道。在数值分析中,考虑了应变和应变率硬化。还进行了收敛测试,以获得最佳的网格尺寸。将数值预测的破坏程度与实验结果进行了比较。预测误差在-5.7%至+ 6.8%的范围内。还尝试了一种分析方法来预测遭受侧向碰撞的双壳结构的破坏程度。与实验和数值预测相比,分析预测为初始设计阶段提供了可接受的精度。为了使船舶结构设计更加合理,以防止碰撞,提出了进一步的研究以提高预测的准确性和可靠性。

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