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Comparative and Uncertainty Assessment of Design Criteria for Stiffened Panels

机译:加筋板设计标准的比较和不确定性评估

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摘要

Stiffened and gross steel panels (plates) are very important components in ship and offshore structures, and therefore they should be designed for a set of failure modes that govern their strength. They form the backbone of most ships' structure, and they are by far the most commonly used element in a ship. They can be found in bottom structures, decks, side shell, and superstructures. To evaluate the strength of a stiffened or gross panel element, it is necessary to review various strength-predicting models and to study their biases, applicability, and limitations for different loading conditions acting on the element. In this paper, strength limit states for various failure modes of ship panels are presented. For each limit state, commonly used strength models were collected from many sources for evaluating their limitations and applicability and to study their biases and uncertainties. Wherever possible, the different types of biases resulting from these models were computed. The bias and uncertainty analyses for these strength models are needed for the development of load and resistance factor design (LRFD) rules for stiffened and gross panels of ship structures. The uncertainty and biases of these models were assessed and evaluated by comparing their predictions with ones that are more accurate or real values. The objective of this paper is to summarize strength prediction models of stiffened and gross panels that are suitable for LRFD development for ship structures. Monte Carlo simulation was used to assess the biases and uncertainties for these models. Recommendations for the use of the models and their biases in LRFD development are provided.
机译:加筋钢板和粗钢板(板)是船舶和近海结构中非常重要的组件,因此应针对控制其强度的一组破坏模式进行设计。它们是大多数船舶结构的骨干,并且是迄今为止船舶中最常用的元素。它们可以在底部结构,甲板,侧壳和上层建筑中找到。为了评估加劲板或粗面板元件的强度,有必要审查各种强度预测模型,并研究它们的偏差,适用性以及对作用在该元件上的不同载荷条件的限制。在本文中,给出了舰船板各种破坏模式的强度极限状态。对于每个极限状态,从许多来源收集了常用的强度模型,以评估其极限和适用性,并研究其偏差和不确定性。只要有可能,就会计算出这些模型所导致的不同类型的偏差。这些强度模型的偏差和不确定性分析对于开发船舶结构的加劲板和总板的载荷和阻力系数设计(LRFD)规则是必需的。通过将它们的预测与更准确或更真实的值进行比较,可以评估和评估这些模型的不确定性和偏差。本文的目的是总结适用于LRFD船舶结构开发的加劲板和大板的强度预测模型。蒙特卡罗模拟被用来评估这些模型的偏差和不确定性。提供了在LRFD开发中使用模型及其偏见的建议。

著录项

  • 来源
    《Journal of Ship Research》 |2004年第3期|p.231-247|共17页
  • 作者单位

    Center for Technology and Systems Management, Department of Civil and Environmental Engineering, University of Maryland, College Park, Maryland, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水路运输;
  • 关键词

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