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Assessment of IACS-CSR Implicit Safety Level for Buckling Strength of Plate Panels for Double Hull Tankers

机译:用于双壳体油轮板块屈曲强度的IACS-CSR隐含安全水平的评估

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Structural reliability methods are increasingly being used in the design of ship structures, in particular as a tool to calibrate design formulations in order to satisfy predefined target safety levels. The present study aims at applying these methods to assess the implicit safety level of a buckling strength requirement for plate panels under uniaxial compression implemented in the IACS Common Structural Rules (CSR) for double hull oil tankers. The paper presents the procedure used to assess the implicit safety level of the plates, which includes the optimization of the scantlings so that the minimum strength requirement is satisfied. A first-order reliability formulation is adopted, and stochastic models proposed in the literature are used to quantify the uncertainty in the relevant design variables. A sample of five oil tankers representative of the range of application of the IACS-CSR design rules is considered. The effect of corrosion in the implicit safety level and the importance of each design variable through sensitivity analysis are quantified.
机译:结构可靠性方法越来越多地用于船舶结构的设计,特别是作为校准设计配方的工具,以满足预定义的目标安全水平。本研究的目的是将这些方法应用于评估下的IACS共同结构规范(CSR)为双壳油船实现单轴压缩板面板屈曲强度要求的隐式安全水平。本文提出了用于评估板的隐式安全水平的程序,包括优化扫描,从而满足最小强度要求。采用一阶可靠性配方,文献中提出的随机模型用于量化相关设计变量中的不确定性。考虑了代表IACS-CSR设计规则的应用范围的五个油轮样品。量化了通过灵敏度分析的隐性安全水平腐蚀在隐式安全水平和每个设计变量的重要性。

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