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Contribution to pressure vessels design of innovative methods and comparative application with standardized rules on a realistic structure - Part I

机译:对压力容器设计的创新方法的贡献以及在现实结构上具有标准化规则的比较应用-第一部分

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摘要

Design of pressure vessels, which are subjected to various natures of loading, must prevent damage mechanisms occurrence. For a load applied or maintained with a given intensity, primary failure modes can appear, such as gross plastic deformation, plastic instability or buckling. For design-by-analysis, the reference methodology is based on an elastic stress calculation. During the last decade, studies have shown that this ingenious procedure could provide conservative design limits. They can become actually overly conservative in a context of increasing complexity of geometry and loading modelling. In parallel, technological and theoretical developments enabled limit analysis to be considered as an interesting design methodology. This is suggested in standards and codes (EN 13445, CODAP, Boiler and Pressure Vessels Code) since the early 2000('s). In this first of two companion papers, a set of standardized and innovative procedures is introduced. These approaches rely on various concepts, such as elasticity, incremental elastoplasticity, or elastic compensation (Modified Elastic Compensation Method, Linear Matching Method). Each methodology is presented on theoretical aspects, eventually adapted so as to take into account safety margins. They are then applied on a model inspired from a real industrial reactor, using Abaqus. Results are compared to reference data from codes, in terms of accuracy and computing time. A final assessment underlines practical benefits that could be expected. (C) 2015 Elsevier Ltd. All rights reserved.
机译:承受各种载荷性质的压力容器的设计必须防止损坏机构的发生。对于以给定强度施加或保持的载荷,可能会出现主要破坏模式,例如总体塑性变形,塑性不稳定性或屈曲。对于通过分析进行设计,参考方法基于弹性应力计算。在过去的十年中,研究表明,这种巧妙的程序可以提供保守的设计限制。在几何形状和载荷建模的复杂性日益增加的情况下,它们实际上可能变得过于保守。同时,技术和理论发展使极限分析被认为是一种有趣的设计方法。自2000年代初以来,这已在标准和规范(EN 13445,CODAP,锅炉和压力容器规范)中提出。在两篇配套论文的第一篇中,介绍了一组标准化和创新的程序。这些方法依赖于各种概念,例如弹性,增量弹塑性或弹性补偿(修改的弹性补偿方法,线性匹配方法)。每种方法都是从理论角度介绍的,最终经过修改以考虑安全裕度。然后将它们应用到使用Abaqus的真实工业反应堆启发的模型上。在准确性和计算时间方面,将结果与代码中的参考数据进行比较。最终评估强调了可以预期的实际收益。 (C)2015 Elsevier Ltd.保留所有权利。

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