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Influence of initial distortion of 3 mm thin superstructure decks on hull girder response for fatigue assessment

机译:3 mm薄型上部结构甲板初始变形对船体梁响应的影响,以进行疲劳评估

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摘要

This paper investigates the influence of initial distortion of 3 mm thin superstructure decks on hull girder response and fatigue assessment. Part of the traditional superstructure of a prismatic passenger ship is replaced by thin decks with initial distortion amplitude of 0,1 and 2 times the IACS limit value for thicker plates, i.e. 0, 6 and 12 mm. Both geometrically linear and nonlinear finite element (FE) analysis is used. For reference also traditional superstructure with 5 mm plate thickness is analyzed. Thin straight superstructure decks give 43% of weight reduction and carry approximately 30% less load than corresponding thick straight decks in traditional model. The load that is not carried by thin decks is divided between other traditional decks. The redistribution of forces also happens at the deck level between plates, stiffeners, girders and longitudinal bulkheads. The presence of initial distortion with the shape of one half wave between web frames and stiffeners causes an additional few percent-decrease in forces carried. The results and conclusions are similar for hogging and sagging loading conditions and differences between geometrically linear and nonlinear FE analysis are very small. This means time saving since the panel loading for fatigue assessment can be defined from geometrically linear hull girder response analysis without considering the initial distortions.
机译:本文研究了3 mm薄型上部结构甲板的初始变形对船体梁响应和疲劳评估的影响。棱柱形客船的传统上部结构的一部分由薄甲板代替,其初始变形幅度为较厚板的IACS极限值(即0、6和12 mm)的0.1和2倍。同时使用几何线性和非线性有限元(FE)分析。作为参考,还分析了板厚为5 mm的传统上部结构。与传统模型中的相应厚直甲板相比,较薄的直上层建筑甲板减轻了43%的重量,并减轻了约30%的负载。薄甲板无法承载的负载在其他传统甲板之间分配。力的重新分配也发生在板,加劲肋,大梁和纵向舱壁之间的甲板高度。腹板框架和加劲肋之间以半个波形的形式出现初始变形会导致所承受的力另外降低几个百分点。对于横摇和纵摇载荷条件,结果和结论是相似的,几何线性和非线性有限元分析之间的差异很小。这意味着节省时间,因为可以通过几何线性船体梁响应分析来定义用于疲劳评估的面板载荷,而无需考虑初始变形。

著录项

  • 来源
    《Marine Structures》 |2014年第7期|203-218|共16页
  • 作者单位

    Aalto University, School of Engineering, Department of Applied Mechanics, P.O. Box 15300, FIN-00076 Aalto, Finland;

    Aalto University, School of Engineering, Department of Applied Mechanics, P.O. Box 15300, FIN-00076 Aalto, Finland;

    Aalto University, School of Engineering, Department of Applied Mechanics, P.O. Box 15300, FIN-00076 Aalto, Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Thin deck; Initial distortion; Hull girder primary response; Fatigue assessment;

    机译:薄甲板初始失真;船体大梁的主要反应;疲劳评估;

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