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Energy behavior on side structure in event of ship collision subjected to external parameters

机译:受外部参数影响的船舶碰撞时侧面结构的能量行为

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摘要

The safety of ships in regards to collisions and groundings, as well as the navigational and structural aspects of ships, has been improved and developed up to this day by technical, administrative and nautical parties. The damage resulting from collisions could be reduced through several techniques such as designing appropriate hull structures, ensuring tightness of cargo tanks as well as observation and review on structural behaviors, whilst accounting for all involved parameters. The position during a collision can be influenced by the collisions’ location and angle as these parts are included in the external dynamics of ship collisions. In this paper, the results of several collision analyses using the finite element method were used and reviewed regarding the effect of location and angle on energy characteristic. Firstly, the capabilities of the structure and its ability to resist destruction in a collision process were presented and comparisons were made to other collision cases. Three types of collisions were identified based on the relative location of contact points to each other. From the results, it was found that the estimation of internal energy by the damaged ships differed in range from 12%–24%. In the second stage, the results showed that a collision between 30 to 60 degrees produced higher level energy than a collision in the perpendicular position. Furthermore, it was concluded that striking and struck objects in collision contributed to energy and damage shape.
机译:迄今为止,技术,行政和航海方面一直在改进和发展有关碰撞和着陆以及船舶航行和结构方面的船舶安全。可以通过多种技术减少碰撞造成的损坏,例如设计适当的船体结构,确保液货舱的密封性以及观察和检查结构性能,同时考虑所有相关参数。碰撞时的位置会受到碰撞的位置和角度的影响,因为这些部分包含在船舶碰撞的外部动力学中。在本文中,使用了有限元方法进行的几次碰撞分析的结果,并对位置和角度对能量特性的影响进行了综述。首先,介绍了该结构的性能及其在碰撞过程中抵抗破坏的能力,并与其他碰撞情况进行了比较。基于接触点彼此的相对位置,确定了三种类型的碰撞。从结果可以发现,受损船舶的内部能量估算范围在12%至24%之间。在第二阶段,结果表明,与垂直位置的碰撞相比,30至60度之间的碰撞产生的能级能量更高。此外,得出的结论是,碰撞中的撞击和撞击物体会造成能量和损坏形状。

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