首页> 外文会议>International symposium on practical design of ships and other floating structures >Optimum Design for Longitudinal Strength Members of Double Hull Tankers with Central Long'l Bulkhead Considering Buckling Thickness Requirement of Plate Panels Based on Common Structural Rules
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Optimum Design for Longitudinal Strength Members of Double Hull Tankers with Central Long'l Bulkhead Considering Buckling Thickness Requirement of Plate Panels Based on Common Structural Rules

机译:考虑基于常见结构规则的板板屈曲厚度要求,具有中央长船体纵向强度构件的最佳设计。

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The buckling assessment of plate panels described in common structural rules (CSR) is to be determined according to the buckling utilization factor with hull girder stresses calculated on net hull girder sectional properties. As the thickness requirement for the buckling assessment of plate panels is not explicitly given in CSR, a lot of time is spent to find the proper thickness of plate panels until reaching to an allowable buckling utilization factor. In this study, in order to reduce time and cost, the thickness requirement of plate panels satisfying buckling assessment was derived. The structural design system included with the thickness requirement for buckling assessment was developed. The system is called as Oil-tanker Automated Structural Investigation System (OASIS). The design result of longitudinal strength members using OASIS was verified by Nauticus Hull which is the rule scantling software of DNV. Finally, optimum design of a double hull tanker for the minimum weight using OASIS was presented.
机译:在共同的结构规则(CSR)中描述的板面板的屈曲评估应根据具有在篮网梁剖形特性上计算的壳梁应力的屈曲利用率来确定。由于在CSR中未明确给出板块的屈曲评估的屈曲评估的厚度要求,因此花费大量时间来找到板块的适当厚度,直到达到允许屈服利用率。在这项研究中,为了降低时间和成本,推导出满足屈曲评估的板块的厚度要求。开发了屈曲评估厚度要求所包括的结构设计系统。该系统被称为油轮自动化结构调查系统(绿洲)。使用OASIS的纵向强度构件的设计结果由Nauticus Hull验证,这是DNV的规则Scantling软件。最后,提出了使用绿洲的最小重量的双壳体油轮的最佳设计。

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