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Analytical method to assess double-hull ship structures subjected to bulbous bow collision

机译:评估球茎船首碰撞的双壳船结构的分析方法

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The paper presents simplified analytical methods to assess the plastic deformation and failure of double-hull ship structures subjected to bulbous bow collision. To validate the methods, numerical simulations are conducted on double-hull tanker side structures including three frame spacings along the longitudinal direction and two stringer spacings along the vertical direction. The paper estimates the extent of damage within double hull ship structures during minor ship-to-ship collision, where the inner hull does not participate in dissipating incident energy. In the analytical methods, the nose shape of striking bulbous bow is simplified as a hemisphere or a cylinder with hemispherical ends. This equivalence is validated against the similar numerical force displacement responses using the actual bulbous bow and the simplified strikers. The analytical methods derive expressions to estimate the relation between the plastic deformation and the crushing force of the double-hull structures. The onset of fracture in the outer hull is evaluated by a simple formula based on experimental and theoretical analyses. Finally, the probabilistic structural absorbed energy until the rupture of specific struck ship with respect to the displacement of striking ship is assessed according to the statistical data of ship dimensions and the design principles of bulbous bow.
机译:本文提出了简化的分析方法来评估双壳船结构在球根船首碰撞下的塑性变形和破坏。为了验证该方法,对双壳油轮侧面结构进行了数值模拟,包括沿纵向的三个框架间距和沿垂直的两个桁架间距。本文估计了在轻微的船对船碰撞中双壳船结构内的损坏程度,其中内壳不参与耗散入射能量。在分析方法中,打击球茎弓的鼻子形状简化为半球或带有半球形末端的圆柱。使用实际的球根弓和简化的撞针针对类似的数值力位移响应验证了这种等效性。分析方法推导了用于估算双壳结构塑性变形与压溃力之间关系的表达式。通过基于实验和理论分析的简单公式,可以评估外壳破裂的发生。最后,根据船舶尺寸的统计数据和球根bow的设计原理,评估了直至特定被撞船破裂的概率结构吸收能量。

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