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UNCERTAINTIES OF CRACK PROPAGATION ANALYSIS IN SHIP STRUCTURES

机译:舰船结构裂纹扩展分析的不确定性

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Fatigue cracks can be observed quite frequently on today's ocean crossing vessels. To ensure the safety of ship structures sailing in the sea, it is important to know the residual fatigue life of these damaged ship structures. In this case, the fracture mechanics theory is often employed to estimate how fast these cracks can propagate along ship structures. However, large uncertainties are always associated with the crack prediction and residual fatigue life analysis. In this study, two uncertainties sources will be investigated, i.e. the reliability of encountered wave environments connected with shipload determinations and different fracture estimation methods for crack propagation analysis. Firstly, different available codes based on fracture mechanic theory are used to compute the stress intensity factor related parameters for crack propagation analysis. The analysis is carried out for both 2D and 3D cases of some typical ship structural details. The comparison is presented to illustrate the uncertainties of crack propagation analysis related with different codes. Furthermore, it is assumed that the structural details will undertake dynamic loading from a containership operated in the North Atlantic. A statistical wave model is used to generate wave environments along recorded ship routes for different years. The uncertainties of crack growth analysis related with encountered weather environments is also investigated in the study. The comparison of these two uncertainties indicated the requirement of further development for the fracture mechanics theory and associated numerical codes, as well as the reliable life-cycle encountered weather environments.
机译:在当今的远洋航行船只上经常会出现疲劳裂纹。为了确保在海上航行的船舶结构的安全,重要的是要知道这些受损的船舶结构的剩余疲劳寿命。在这种情况下,通常采用断裂力学理论来估计这些裂纹可以沿船结构传播的速度。但是,裂纹预测和残余疲劳寿命分析始终伴随着很大的不确定性。在这项研究中,将研究两个不确定性来源,即与船载确定有关的波浪环境的可靠性以及用于裂纹扩展分析的不同裂缝估计方法。首先,使用基于断裂力学理论的不同可用代码来计算与应力强度因子相关的参数,以进行裂纹扩展分析。针对某些典型船舶结构细节的2D和3D情况进行了分析。进行比较以说明与不同代码有关的裂纹扩展分析的不确定性。此外,假设结构细节将承担在北大西洋运营的集装箱船的动态装载。统计波浪模型用于沿记录的船舶路线生成不同年份的波浪环境。在研究中还研究了与遇到的天气环境相关的裂纹扩展分析的不确定性。这两个不确定性的比较表明,需要进一步发展断裂力学理论和相关的数字代码,以及可靠的生命周期遇到的天气环境。

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