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Development of a Spectral Method and a Statistical Wave Model for Crack Propagation Prediction in Ship Structures

机译:舰船结构裂纹扩展的谱方法和统计波模型的发展

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As a result of the wide use of high-tensile steel and the imperfect fabrication process in ship construction as well as some uncertainties in ship fatigue design, cracks could be initiated much earlier than expected. The presence of fatigue cracks greatly affects a ship's structural safety and serviceability. To ensure structural safety and perform reliable crack inspection and maintenance planning, it is important to know how fast cracks can grow in ship structures. In the current study, the principles of fracture mechanics are used for crack propagation analysis in ships. By taking into account the special properties of a ship's stress response, an efficient spectral method is proposed and validated for the prediction of crack propagation in ship structures. In this spectral method, structural stresses are assumed to be narrow-band Gaussian processes. Furthermore, for crack inspection and maintenance planning based on crack growth, it is essential to know the wave environments encountered in a ship's future operations. Therefore, a spatiotemporal statistical wave model based on both satellite and buoy measurements is briefly introduced. It is developed to generate wave environments along arbitrary ship routes. Finally, the deck longitudinal stiffener of a 2800TEU containership is used to demonstrate the application of the spectral method and the wave model for the prediction of crack propagation in ships. The route information and operating conditions are taken from full-scale measurements of this ship. In the case study, the scatter of crack propagation associated with the wave environments encountered is also investigated. The results from this investigation indicate possible potentials of crack inspection and maintenance optimization to enable more efficient ship operation.
机译:由于高强度钢的广泛使用以及造船过程中制造工艺的不完善以及造船疲劳设计中的一些不确定性,可能比预期的更早引发裂纹。疲劳裂纹的存在极大地影响了船舶的结构安全性和可维修性。为了确保结构安全并执行可靠的裂纹检查和维护计划,了解船舶结构中裂纹的快速增长非常重要。在当前的研究中,将断裂力学原理用于船舶裂纹扩展分析。考虑到船舶应力响应的特殊性质,提出了一种有效的频谱方法,并验证了该方法在预测船舶结构中裂纹扩展方面的有效性。在这种频谱方法中,结构应力被假定为窄带高斯过程。此外,对于基于裂纹扩展的裂纹检查和维护计划,必须了解船舶未来运行中遇到的波浪环境。因此,简要介绍了基于卫星和浮标测量的时空统计波模型。它被开发来沿任意船舶路线产生波浪环境。最后,使用2800TEU集装箱船的甲板纵向加劲肋来演示光谱方法和波浪模型在预测船舶裂纹扩展中的应用。航线信息和运行条件取自该船的全面测量。在案例研究中,还研究了与遇到的波浪环境相关的裂纹扩展的散布。这项调查的结果表明,可能进行裂纹检查和维护优化以实现更高效的船舶运行。

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