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Effects of the rebounding of a striking ship on structural crashworthiness during ship-ship collision

机译:撞船反弹对船舶碰撞中结构耐撞性的影响

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The purpose of this paper is to study the rebounding phenomenon of a striking ship and its effect on the structural crashworthiness of the struck ship. Pioneer works on ship collision and mathematical formulations to assess energy after collision are described to summarize the behaviour of the ship structure under collision between ships in various scenarios. A benchmark study is conducted using laboratory tests of the resistance to penetration of a stiffened plate to validate the methodology of the present work, which uses finite element methods to model a series of dynamic collision scenarios. The setting and configuration of a full-scale collision analysis is introduced, along with the configurations of the defined scenarios. External and internal ship collision parameters are considered as parameters that will affect structural behaviour prior to and after ruptures. The results of the evaluation indicate that in the event of a side collision, the striking ship can either fully stuck or rebounding phenomena. These phenomena produce significant differences in term of internal energy and crushing force, which are included as crashworthiness criteria. The type of striking ship, as well as its velocity, significantly affects the rebounding of the striking ship and behaviour of the struck ship. A notable gap between medium and high-carbon steels is not found during observations of the structural crashworthiness accounting for structure materials. Finally, other criteria for assessing the mechanisms and effects of rebounding during a collision are summarized, i.e. kinetic energy, acceleration, and extent of damage.
机译:本文的目的是研究撞船的回弹现象及其对撞船结构耐撞性的影响。 Pioneer致力于船舶碰撞,并描述了评估碰撞后能量的数学公式,以总结在各种情况下船舶之间碰撞时船舶结构的行为。使用实验室对加硬板的抗穿透性的测试来进行基准研究,以验证当前工作的方法,该方法使用有限元方法对一系列动态碰撞场景进行建模。介绍了全面碰撞分析的设置和配置,以及定义的方案的配置。船舶内部和外部碰撞参数被认为是将影响破裂前后结构行为的参数。评估结果表明,如果发生侧面碰撞,则撞船可能会完全卡住或反弹。这些现象在内部能量和压碎力方面产生了很大的差异,这些差异被包括为耐撞性标准。打击船的类型及其速度显着影响打击船的反弹和打击船的行为。在观察结构材料的结构耐撞性时,没有发现中碳钢和高碳钢之间存在明显的间隙。最后,总结了评估碰撞过程中回弹的机制和效果的其他标准,即动能,加速度和破坏程度。

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