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An analytical method for predicting the ship side structure response in raked bow collisions

机译:倾斜bow撞中船侧结构响应的一种预测分析方法

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As an increasing number of ships continue to sail in heavy traffic lanes, the possibility of collision between ships has become progressively higher. Therefore, it is of great importance to rapidly and accurately analyse the response and consequences of a ship's side structure subjected to large impact loads, such as collisions from supply vessels or merchant vessels. As the raked bow is a common design that has a high possibility of impacting a ship side structure, this study proposes an analytical method based on plastic mechanism equations for the rapid prediction of the response of a ship's side structure subjected to raked bow collisions. The new method includes deformation mechanisms of the side shell plating and the stiffeners attached. The deformation mechanisms of deck plating, longitudinal girders and transverse frames are also analysed. The resistance and energy dissipation of the side structure are obtained from individual components and then integrated to assess the complete crashworthiness of the side structure of the struck ship. The analytical prediction method is verified by numerical simulation. Three typical collision scenarios are defined in the numerical simulation using the code LS_DYNA, and the results obtained by the proposed analytical method and those of the numerical simulation are compared. The results correspond well, suggesting that the proposed analytical method can improve ship crashworthiness during the design phase. (C) 2015 Elsevier Ltd. All rights reserved.
机译:随着越来越多的船舶继续在繁忙的行车道上航行,船舶之间发生碰撞的可能性越来越高。因此,快速,准确地分析承受较大冲击载荷(如补给船或商船的碰撞)的船侧结构的反应和后果非常重要。由于倾斜的船首是很可能影响船舷结构的常见设计,因此本研究提出了一种基于塑性力学方程的分析方法,用于快速预测倾斜的船首碰撞时船侧结构的响应。新方法包括侧壳板的变形机理和连接的加强筋。还分析了面板,纵向大梁和横向框架的变形机理。舷侧结构的阻力和能量耗散是从各个组件中获得的,然后综合起来评估被撞船的舷侧结构的完全耐撞性。通过数值模拟验证了解析预测方法。使用代码LS_DYNA在数值模拟中定义了三种典型的碰撞场景,并比较了所提出的分析方法和数值模拟得到的结果。结果吻合得很好,表明所提出的分析方法可以在设计阶段提高船舶的耐撞性。 (C)2015 Elsevier Ltd.保留所有权利。

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