基于全局有限元法的多体铝船体损伤容限评估

Spencer Johnson, Boyden Williams, Christopher Palm
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摘要

随着铝制高速多壳船在尺寸、容量和运行海况方面的不断增长,人们越来越需要了解这些结构的损伤容限。本文提出了一种线性弹性断裂力学(LEFM)方法,利用水动力分析和整体有限元模型对铝船体结构进行损伤容限评估,这是一类动态加载方法(DLA)符号的一部分。采用LEFM方法计算整个模型的应力强度因子(K)和临界裂纹长度,筛选整个船体结构,识别断裂临界位置。本文还研究了使用弹塑性断裂力学来预测潜在的临界裂纹扩展位置、速率和方向。通过分析识别和可视化断裂关键位置,为船舶设计人员提供了开发耐损伤结构的工具。分析的结果也可以帮助业主和监管机构制定结构检查和维修计划。
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Damage Tolerance Assessment of Multi-Hull Aluminum Vessels Using Global Finite Element Methods
As aluminum high-speed multi-hulls continue to grow in size, capacity and operational sea state, a need is growing to understand the damage tolerance of these structures. This paper presents a Linear Elastic Fracture Mechanics (LEFM) approach to performing damage tolerance assessments of aluminum hull structures using the hydrodynamic analysis and global finite element model developed as part of a class Dynamic Loading Approach (DLA) notation. The LEFM approach is used to calculate the stress intensity factor (K) and the critical crack length throughout the model to screen the entire hull structure and identify fracture critical locations. This paper also investigates the use of elastic-plastic fracture mechanics to predict potential critical crack growth locations, rates, and directions. Fracture critical locations identified and visualized through the analysis provide the ship designer with tools to develop damage tolerant structures. The results of the analysis can also assist owners and regulatory bodies in developing structural inspection and repair plans.
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