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A method based on non-linear FEM for ultimate limit state assessment of ship hull girders

机译:一种基于非线性有限元的方法,用于船体围栏的最终极限状态评估

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In this paper, a refined method for ultimate limit state assessment of ship hull girders based on non-linear finite element method is proposed. Commercial finite element analysis codes ANSYS and MSC.MARC are used to established the model and analyze the large elastoplastic deformation respectively. Firstly, the initial deflections and welding residual stresses of steel structures are considered and calculated. Secondly, the sensitivity factors of ultimate limit state are analyzed by taking box-girder, four classic-type seagoing ships and one standardtype inland-water ship as a benchmark study. Finally, the accuracy and applicability of the method in present study are presented and discussed by comparing with the results from other methods. The method is considered to be useful for ultimate limit state assessment of ship hull girders, which will promote the introduction of ultimate strength criterion to the design rules for seagoing ship or inland water ship in a sense.
机译:本文提出了一种基于非线性有限元法的船船体梁的最终极限状态评估的精细方法。 商业有限元分析代码ANSYS和MSC.MARC用于建立模型并分别分析大的弹塑性变形。 首先,考虑和计算钢结构的初始偏转和焊接残余应力。 其次,通过采用箱梁,四型经典的海船和一个标准型内陆水船作为基准研究,分析了最终极限状态的敏感因素。 最后,通过与其他方法的结果进行比较,提出和讨论了本研究中的方法的准确性和适用性。 该方法被认为是有用的船船体梁的最终限制状态评估,这将促进引入终极强度标准,以了解海船或内陆水船的设计规则。

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