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Fatigue design of oil tankers: A design approach.

机译:油轮的疲劳设计:一种设计方法。

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摘要

The oil tankers that operate on the Trans-Alaska Pipeline Service (TAPS) route have exhibited a large number of structural fatigue cracks. These cracks can be attributed to the increase in use of high strength steel in tanker construction and to the harsh operating environment in the Gulf of Alaska. In response to the TAPS fatigue problem, this project examines the topic of preliminary design for fatigue resistance. The TAPS tankers have previously been the target of several studies on the subject of fatigue cracking. Most of these studies have concentrated on reducing the costs and risks involved with operating the current tanker fleet. Preliminary design, however, is oriented at reducing the fatigue risk in future tanker designs. To that end, the design method outlined within concentrates on the level of analysis that is appropriate for preliminary design.; The design method consists of four steps: the specification of a wave environment, generation of a hydrodynamic model and subsequent wave loads, evaluation of cyclic stresses and an assessment of fatigue damage. A series of example calculations that is typical of preliminary design has been performed for one of the TAPS tanker classes. These calculations employed Buckley's climatic wave spectra, a 3-dimensional panel based hydrodynamics package by Lin and a Miner's rule fatigue assessment based on the S-N curves of the British Welding Institute.; The example calculations yield two important results. First, relatively inexpensive methods can yield important and accurate fatigue results; for a side shell longitudinal at the water line the example calculations predict a fatigue life of approximately 3 operating years. This corresponds quite well to the published inspection data and obviously represents insufficient fatigue life. Second, local panel pressures can have a significant contribution to, and even dominate, total fatigue damage in the side shell. This contrasts with conventional fatigue studies of ship hulls which focus on global loads; i.e., hull girder bending.
机译:在跨阿拉斯加管道服务(TAPS)路线上运行的油轮表现出大量的结构疲劳裂纹。这些裂缝可归因于油轮建造中高强度钢的使用增加以及阿拉斯加湾恶劣的作业环境。针对TAPS疲劳问题,该项目研究了抗疲劳的初步设计主题。 TAPS油轮以前一直是疲劳裂纹研究的目标。这些研究大多集中在降低运营当前油轮船队的成本和风险上。但是,初步设计旨在降低未来油轮设计中的疲劳风险。为此,概述的设计方法侧重于适合于初步设计的分析水平。设计方法包括四个步骤:波浪环境的规范,流体动力学模型的生成和随后的波浪载荷,循环应力的评估以及疲劳损伤的评估。对于一个TAPS油轮类别,已经执行了一系列初步设计中的典型计算示例。这些计算使用了Buckley的气候波谱,Lin的基于3维面板的流体力学软件包以及基于英国焊接协会的S-N曲线的Miner规则疲劳评估。示例计算得出两个重要结果。首先,相对便宜的方法可以产生重要而准确的疲劳结果。对于在水线纵向的侧壳纵向,示例计算预测了大约3个工作年的疲劳寿命。这与已发布的检查数据非常吻合,并且显然表示疲劳寿命不足。其次,局部面板压力可能会对侧壳中的整体疲劳损伤产生重大影响,甚至起主导作用。这与传统的船体疲劳研究相反,后者主要关注全球载荷。即船体梁弯曲。

著录项

  • 作者

    Franklin, Paul Allen.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Marine and Ocean.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1993
  • 页码 98 p.
  • 总页数 98
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋工程;机械、仪表工业;
  • 关键词

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