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Study on The Effect of Climate Change on Ship Responses Based on Nonlinear Simulations

机译:基于非线性模拟的气候变化对船舶响应的影响研究

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Hull girder ultimate strength, which governs sagging and hogging failures, is one of the most critical failure modes for a ship hull. The Structural Reliability Analysis (SRA) methodology has been used to develop Common Structural Rules (CRS) for tankers and bulk carriers. A linear model for bending moment in extreme weather with a nonlinear correction factor has been adopted in the analysis. It is difficult to conclude on the model uncertainty associated with nonlinear effects of bending moment as, until now, there are very limited studies addressing this topic. In this paper, the nonlinear effect on ship responses will be analyzed, and the potential effect of climate change on ship responses will be investigated with the improved 3D Rankine Panel method using nonlinear wave input. The nonlinear wave input is generated by the HOSM (Higher order Spectral Method) wave model incorporating higher order nonlinear effects, including nonlinear free-wave modulation as well as higher order bound harmonics. The North Atlantic past and projected future wave climates are considered.
机译:船体梁的极限强度决定着船体的下垂和起伏,是船体最关键的失效模式之一。结构可靠性分析(SRA)方法已用于开发油轮和散货船的通用结构规则(CRS)。分析中采用了具有非线性校正因子的极端天气中弯矩的线性模型。由于与弯矩的非线性影响相关的模型不确定性很难得出结论,因为到目前为止,针对该主题的研究非常有限。在本文中,将分析非线性对船舶响应的影响,并使用改进的3D Rankine Panel方法(使用非线性波输入)研究气候变化对船舶响应的潜在影响。非线性波输入是通过HOSM(高阶谱法)波模型生成的,该模型包含了更高阶的非线性效应,包括非线性自由波调制以及更高阶的束缚谐波。考虑了北大西洋过去和预计的未来海浪气候。

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