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On the failure behaviour to striking bow penetration of impacted marine-steel structures

机译:冲击海工钢结构撞击弓穿透的破坏行为

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Demands for water transportation modes are continuously increasing as rapid economic and industrial growths in the recent decade. Ship as representative of the water transportation is generally needed to carry various products from one location to another. Besides as product carrier, ship also acts as public facility to transport human across islands for number of reasons, such as tourism and vehicle. Considering its importance, structural damage due to accidental loads or so-called impact can cause unacceptable casualties which threat ship passenger, shipping industry and maritime environment in same time. The most frequent impact phenomena occur in forms of collision and grounding, which are targeting side structure and double bottom consecutively. However, since responses of the impacts on structure are highly nonlinear and vary due to development of ship structures, sustainable analysis as an update of pioneer calculation can be beneficial as rational reference for improving safety and navigational instruments. This work aims to assess failures of the side structures subjected to penetration of striking bow in ship-ship collision scenario. Locations of impact are idealized to happen on after-end, midsection and fore-end to provide complete assessment. Striking bow is to be deployed by varying input velocity to observe significance of the fractures on the side structure. This configuration is implemented on the designed collision scenario, and later calculated using nonlinear finite element method (NLFEM). Summary of the solution indicated that the midsection produced the highest resistance against side collision. Breaching of the inner shell was successfully avoided on the fore-end, but the critical damage to the cargo was observed during bow penetration to the after-end region. This location was recommended to be added by longitudinal framing to increase its resistance against ship collision.
机译:随着近十年来经济和工业的快速增长,对水运方式的需求不断增长。通常需要以船为代表的水路运输,以将各种产品从一个地点运送到另一地点。除了作为产品载体外,由于多种原因,例如旅游业和车辆,船舶还可以作为公共设施在岛上运送人员。考虑到它的重要性,由于意外载荷或所谓的冲击而造成的结构损坏可能会造成无法接受的人员伤亡,这同时威胁着船舶乘客,航运业和海洋环境。最常见的冲击现象以碰撞和接地的形式发生,它们依次针对侧面结构和双层底。但是,由于对结构的影响的响应是高度非线性的,并且会随着船舶结构的发展而变化,因此可持续性分析作为先驱计算的更新,可以作为改进安全性和导航仪器的合理参考。这项工作的目的是评估在船舶碰撞情况下,侧面结构受撞击弓穿透的破坏。理想的影响位置是发生在后端,中段和前端,以提供完整的评估。通过改变输入速度来布置打击弓,以观察侧结构断裂的重要性。此配置在设计的碰撞场景中实现,然后使用非线性有限元方法(NLFEM)计算。解决方案摘要表明,中间部分对侧面碰撞的抵抗力最高。在前端成功避免了内壳的破裂,但是在船首穿透到后端区域的过程中观察到了对货物的严重损坏。建议通过纵向构架增加此位置,以增加其抵抗船舶碰撞的能力。

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