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Methodology for the simulation of a ship's damage stability and ultimate strength conditions following a collision

机译:碰撞后造型船舶损坏稳定性和极限强度条件的方法

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This paper presents a methodology called SHARC developed for the simulation and analysis of a ship's damage stability and ULS conditions following a collision. SHARC combines three types of methods: advanced nonlinear finite element simulations that simulate the collision scenario, a dynamic damage stability simulation tool called SIMCAP, and a modified Smith method for the ULS analysis of a collision-damaged ship structure. The novelty of the presented methodology is that it can be used for real-time simulations to study the ingress of water through the damage opening of a struck vessel and how it affects the ship's stability, structural integrity (ULS) and survival capability against, e.g., capsizing. The results for an intact and a damaged oil tanker under noncorroded and corroded structural conditions and various sea states are presented to demonstrate the features of SHARC.
机译:本文介绍了一种涉及夏季造型损坏稳定性和ULS条件的仿真和分析的Sharc的方法。 SHARC结合了三种类型的方法:高级非线性有限元模拟,用于模拟碰撞场景,动态损伤稳定性仿真工具,称为SIMCAP,以及用于碰撞损坏船舶结构的ULS分析的改进的史密斯方法。 呈现的方法的新颖性是它可以用于实时模拟,以研究通过撞击船的损伤开口以及它如何影响船舶稳定性,结构完整性(ULS)和生存能力的损伤,例如 ,倾覆。 提出了在非经过认可和腐蚀的结构条件下的完整和损坏的油轮的结果,以证明Sharc的特征。

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  • 来源
    《Oceanographic Literature Review》 |2021年第7期|1599-1599|共1页
  • 作者单位

    Chalmers University of Technology Department of Mechanics and Maritime Sciences Gothenburg Sweden;

    Chalmers University of Technology Department of Mechanics and Maritime Sciences Gothenburg Sweden;

    Chalmers University of Technology Department of Mechanics and Maritime Sciences Gothenburg Sweden;

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