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Fatigue analysis of structural details of an oceangoing LPG ship

机译:远洋石油气船结构细节的疲劳分析

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Structural details of ship structures are prone to fatigue damage mainly due to high-cycle wave load and low-cycle cargo loading/unloading. Full stochastic fatigue analysis of selected structural details on an oceangoing 6500 cbm LPG ship is presented. A critical Y-joint of longitudinal bulkhead and bilobe tank shell as well as double-bottom girder details are selected due to different reasons. The eccentricity of the Y-joint, leads to significant stress concentration. Saddle supports of gas tanks cause stress concentration in ship double bottom due to weight and dynamic loads. Wave load on ship structure is calculated using linear strip theory for ship in ballast condition and full ship. Wave load is transferred to ship finite element model and notch structural stresses are determined using finite element analysis. Stochastic fatigue analysis is then performed, taking into account sailing route and other ship operational parameters. Finally, fatigue damage summation is done and results are discussed.
机译:船舶结构的结构细节容易受到疲劳破坏,这主要是由于高周波载荷和低周波货物的装卸。本文介绍了一艘航程为6500 cbm的液化石油气船上选定结构细节的完全随机疲劳分析。由于不同的原因,选择了纵向舱壁和舱室的关键Y型接头以及双底梁的细节。 Y型接头的偏心率导致明显的应力集中。气罐的鞍座支撑由于重量和动态载荷而导致船舶双底应力集中。使用线性带理论对压载状态和满载状态的船舶计算船舶结构上的波浪载荷。波浪载荷被转移到船舶有限元模型中,并使用有限元分析确定缺口结构应力。然后在考虑航行路线和其他船舶运行参数的情况下进行随机疲劳分析。最后,进行了疲劳损伤总和并讨论了结果。

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