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Investigation of hydroelastic ship responses has been brought to the attention of the scientific and engineering world for several decades. There are two kinds of high-frequency vibrations in general ship responses to a large ocean-going ship in its shipping line, so-called springing and whipping, which are important for the determination of design wave load and fatigue damage as well. Because of the huge scale of an ultra large ore carrier (ULOC), it will suffer seldom slamming events in the ocean. The resonance vibration with high frequency is springing, which is caused by continuous wave excitation. In this paper, the wave-induced vibrations of the ULOC are addressed by experimental and numerical methods according to 2D and 3D hydroelasticity theories and an elastic model under full-load and ballast conditions. The influence of loading conditions on high-frequency vibration is studied both by numerical and experimental results. Wave-induced vibrations are higher under ballast condition including the wave frequency part, the multiple frequencies part, the 2-node and the 3-node vertical bending parts of the hydroelastic responses. The predicted results from the 2D method have less accuracy than the 3D method especially under ballast condition because of the slender-body assumption in the former method. The applicability of the 2D method and the further development of nonlinear effects to 3D method in the prediction of hydroelastic responses of the ULOC are discussed.  相似文献   
2.
为了拓展主S-N曲线法,使之更好地适用于低温、极地环境下船舶与海洋工程结构物的疲劳评估,进行了EH36材料T型焊接接头的低温疲劳性能试验,收集了国内外多个焊接节点低温疲劳数据,建立了疲劳试验试件的有限元模型,运用等效结构应力法,计算焊接节点的等效结构应力,构建低温环境下焊接节点的主S-N曲线。使用该曲线,预测低温疲劳试验的寿命,并与疲劳试验结果、常温主S-N曲线、常温中值D曲线的预测结果进行了比较,结果表明,所提低温主S-N曲线预测方法具有较高精度,可用于低温环境下船舶与海洋结构物疲劳寿命的预测。  相似文献   
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