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Optimum inspection planning for minimizing fatigue damage detection delay of ship hull structures

机译:最佳检查计划,可最大程度地减少船体结构的疲劳损伤检测延迟

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摘要

Fatigue is one of the main factors which can produce cracks, and lead to failure of ships. For these structures, damage occurrence and propagation due to fatigue are affected by the action of sea water waves and the sea environment as well as operation, fabrication, and modeling of ship structures under uncertainties. In order to efficiently maintain the safety of ship structures, an optimum inspection plan should be made by considering these uncertainties using a probabilistic approach. In this paper, such an approach is presented and applied to ship hull structures subjected to fatigue. The resulting inspection plan is the solution of an optimization problem based on the minimization of expected fatigue damage detection delay. Damage detection delay will produce the maintenance delay which, in turn, is likely to endanger the serviceability and even the survival of the structure. The formulation of the expected damage detection delay includes uncertainties associated with damage occurrence, propagation, and detection. The effects of the quality and number of inspections on the optimum inspection planning are investigated. A well-balanced inspection planning is considered as a solution of an optimization problem with two conflicting criteria. This well-balanced inspection planning provides optimum inspection types and times. Furthermore, the cost-effective inspection plans are designed to provide the optimum strategy either by considering a single type or multiple types of inspections.
机译:疲劳是可能产生裂纹并导致船舶故障的主要因素之一。对于这些结构,由于不确定性,海水浪和海洋环境的作用以及船舶结构的运行,制造和建模会影响由于疲劳引起的破坏发生和传播。为了有效地维护船舶结构的安全性,应采用概率方法考虑这些不确定因素来制定最佳的检查计划。在本文中,提出了一种方法,并将其应用于遭受疲劳的船体结构。最终的检查计划是基于最小化预期疲劳损伤检测延迟的优化问题的解决方案。损坏检测延迟将导致维护延迟,继而可能危及结构的可维修性甚至是生存。预期损坏检测延迟的公式包括与损坏发生,传播和检测相关的不确定性。研究了检查质量和检查次数对最佳检查计划的影响。均衡的检查计划被认为是具有两个冲突标准的优化问题的解决方案。这种均衡的检查计划可提供最佳的检查类型和时间。此外,具有成本效益的检查计划旨在通过考虑一种或多种检查来提供最佳策略。

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