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SHIP AND ICE COLLISION MODELING AND STRENGTH EVALUATION OF LNG SHIP STRUCTURE

机译:液化天然气船结构的海冰碰撞建模与强度评估

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A collision model has been developed for nonlinear dynamic finite element analysis on an LNG ship and a crushable ice using commercial code DYTRAN. In this modeling, a global LNG ship model has been employed as a deformable body which follows the elastic-plastic constitutive model, and an ice floe has been modeled as a crushable body including material failure. The deformation and failure of the ship structure and the ice as well as the contact force at the contact area between the ship and the ice have been determined from collision simulations. For most ship-ice interaction scenarios, the ice load applied to the ship can be considered as a quasi-static load. The loading capacity of LNG ship hull structure has been investigated applying static ice loads to a local model, which is a whole compartment of a cargo tank in the ship structure including five components such as the side shell plating, longitudinal stiffeners, stringers, web frames, and inner hull. For each ship and ice interaction scenario, loading cases at five varying locations in the local model have been investigated. Numerical results show that different loading location cases cause the structure failure at different components. FE results also indicate that large plastic deformation and buckling failure modes are found in different components of the hull structure. Finally, acceptance criteria and the complete procedure have been developed for the strength evaluation of hull structure in LNG carriers under ice loads.
机译:已经开发了一种碰撞模型,用于使用商业代码DYTRAN对LNG船和可碎冰进行非线性动态有限元分析。在此建模中,已采用了全球LNG船模型作为遵循弹塑性本构模型的可变形体,并将浮冰建模为包括材料破坏在内的可破碎体。船舶结构和冰的变形和破坏,以及船舶和冰之间接触区域的接触力已通过碰撞模拟确定。对于大多数船冰相互作用场景,施加到船上的冰荷载可以视为准静态荷载。 LNG船体结构的承载能力已通过将静态冰荷载应用于局部模型进行了研究,该模型是船体结构中货舱的整个舱室,包括五个组件,例如侧壳板,纵向加劲肋,桁条,腹板框架和内部船体。对于每种船舶与冰块的相互作用情况,已经研究了局部模型中五个不同位置的载荷情况。数值结果表明,不同的加载位置情况会导致不同构件的结构破坏。有限元结果还表明,在船体结构的不同组件中发现了较大的塑性变形和屈曲破坏模式。最后,开发了用于评估冰载荷下LNG船的船体结构强度的验收标准和完整程序。

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