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A Rubber Bag for Liquid Cargo to Improve Ship Collision Resistance

机译:用于液体货物的橡胶袋,可提高船体的抗撞能力

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摘要

Collisions and grounding accidents of ships, but also the failure of the hull-integrity, can lead to oil leakage. Examples are the Rena in 2011, the Hebei Spirit in 2007, and the much known accident of the Prestige in 2002. Consequently, research regarding the enhancement of the structural design to increase the safety-level of ships in case of accidents is important. In this paper, the use of a rubber bag as a second barrier is presented as an alternative concept to prevent oil leakage in case of accidents. The influence of the rubber bag is investigated using the exemplary simulation of a ship collision. A simplified tanker side structure as well as a box-shaped rubber bag is analyzed with the finite element (FE) method. The material model for the rubber bag is calibrated with tensile tests to obtain the required material parameters. The reaction forces and the associated penetration depth are analyzed. The comparison is done between the structure with and without the rubber bag. For the latter, the general behavior of an empty tank in a ship side structure is compared with the large-scale experimental results. Furthermore, an additional increase of the collision resistance of the ship due to the rubber bag without changing the common structural design is discussed.
机译:船舶的碰撞和着陆事故,以及船体完整性的故障,都可能导致漏油。例如,2011年的里纳(Rena),2007年的河北精神(Hippon Spirit),以及2002年的著名声望事故(Prestige)。因此,有关增强结构设计以提高事故发生时的船舶安全水平的研究非常重要。在本文中,提出了使用橡胶袋作为第二道屏障的替代方案,以防止发生事故时漏油。使用船舶碰撞的示例性模拟研究了橡胶袋的影响。使用有限元(FE)方法分析了简化的油轮侧面结构以及箱形橡胶袋。橡胶袋的材料模型通过拉伸测试进行校准,以获得所需的材料参数。分析了反作用力和相关的穿透深度。有橡胶袋和无橡胶袋的结构之间进行比较。对于后者,将空罐在船侧结构中的一般行为与大规模实验结果进行了比较。此外,还讨论了在不改变通用结构设计的情况下,由于采用了橡胶袋而增加了船舶的抗冲击性。

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